Blog Archive

Thursday, May 22, 2008

2007 Temperatures: Arctic record 22C (71.6F) temperatures in Arctic heatwave

[BLOGGER'S NOTE: Every once in a while I like to post some older news articles in order to keep our memories fresh. For centigrade to Fahrenheit conversions, click here: http://www.wbuf.noaa.gov/tempfc.htm ]

by Steve Connor, Science Editor, The Independent, Wednesday, 3 October 2007

Parts of the Arctic have experienced an unprecedented heatwave this summer, with one research station in the Canadian High Arctic recording temperatures above 20C, about 15C higher than the long-term average. The high temperatures were accompanied by a dramatic melting of Arctic sea ice in September to the lowest levels ever recorded, a further indication of how sensitive this region of the world is to global warming. Scientists from Queen's University in Ontario watched with amazement as their thermometers touched 22C (71.6F) during their July field expedition at the High Arctic camp on Melville Island, usually one of the coldest places in North America.

"This was exceptional for a place where the normal average temperatures are about 5C. This year we frequently recorded daytime temperatures of between 10C and 15C and on some days it went as high as 22C," said Scott Lamoureux, a professor of geography at Queen's.

"Even temperatures of 15C are higher than we'd expect and yet we recorded them for between 10 and 12 days during July. We won't know the August and September recordings until next year when we go back there but it appears the region has continued to be warm through the summer."

The high temperatures on the island caused catastrophic mudslides as the permafrost on hillsides melted, Professor Lamoureux said. "The landscape was being torn to pieces, literally before our eyes."

Other parts of the Arctic also experienced higher-than-normal temperatures, which indicate that the wider polar region may have experienced its hottest summer on record, according to Walt Meir of the US National Snow and Ice Data Centre in Colorado.

"It's been warm, with temperatures about 3C or 4C above normal for June, July and August, particularly to the north of Siberia where the temperatures have reached between 4C and 5C above average," Dr Meir said.

Unusually clear skies over the Arctic this summer have caused temperatures to rise. More sunlight has exacerbated the loss of sea ice, which fell to a record low of 4.28 million square kilometres (1.65 million square miles), some 39 per cent below the long-term average for the period 1979 to 2000. Dr Meir said: "While the decline of the ice started out fairly slowly in spring and early summer, it accelerated rapidly in July. By mid-August, we had already shattered all previous records for ice extent."

An international team of scientists on board the Polar Stern, a research ship operated by the Alfred Wegener Institute in Germany, also felt the effects of an exceptionally warm Arctic summer. The scientists had anticipated that large areas of the Arctic would be covered by ice with a thickness of about two metres, but found that it had thinned to just one metre.

Instead of breaking through thicker ice at an expected speed of between 1 and 2 knots, the Polar Stern managed to cruise at 6 knots through thin ice and sometimes open water.

"We are in the midst of a phase of dramatic change in the Arctic," said Ursula Schauer, the chief scientist at the Alfred Wegener Institute, who was on board the Polar Stern expedition. "The ice cover of the North Polar Sea is dwindling, the ocean and the atmosphere are becoming steadily warmer, the ocean currents are changing," she said.

One scientist came back from the North Pole and reported that it was raining there, said David Carlson, the director of International Polar Year, the effort to highlight the climate issues of the Arctic and Antarctic. "It makes you wonder whether anyone has ever reported rain at the North Pole before."

Another team of scientists monitoring the movements of Ayles Ice Island off northern Canada reported that it had broken in two far earlier than expected, a further indication of warmer temperatures. And this summer, for the first time, an American sailing boat managed to traverse the North-west Passage from Nova Scotia to Alaska, a voyage usually made by icebreakers. Never before has a sail-powered vessel managed to get straight through the usually ice-blocked sea passage.

Inhabitants of the region are also noticing a significant change as a result of warmer summers, according to Shari Gearheard, a research scientist at the National Snow and Ice Data Centre. "People who live in the region are noticing changes in sea ice. The earlier break-up and later freeze-up affect when and where people can go hunting, as well as safety for travel," she said.

Mark Serreze of the National Snow and Ice Data Centre, said: "We may see an ice-free Arctic Ocean in summer within our lifetimes. The implications... are disturbing."

The North-west Passage: an ominous sign

The idea of a North-west Passage was born in 1493, when Pope Alexander VI divided the discovered world between Spain and Portugal, blocking England, France and Holland from a sea route to Asia. As it became clear a passage across Europe was impossible, the ambitious plan was hatched to seek out a route through north-western waters, and nations sent out explorers. When, in the 18th century, James Cook reported that Antarctic icebergs produced fresh water, the view that northern waters were not impossibly frozen was encouraged. In 1776 Cook himself was dispatched by the Admiralty with an Act promising a £20,000 prize, but he failed to push through a route north of Canada. His attempt preceded several British expeditions including a famous Victorian one by Sir John Franklin in 1845. Finally, in 1906 Roald Amundsen led the first trip across the passage to Alaska, and since then a number of fortified ships have followed. On 21 August this year, the North-west Passage was opened to ships not armed with icebreakers for the first time since records began.

Link to article: http://www.independent.co.uk/environment/climate-change/record-22c-temperatures-in-arctic-heatwave-394196.html

Tuesday, May 20, 2008

2007 Temperatures: 2007 Was Tied As Earth's Second Warmest Year

ScienceDaily (Jan. 17, 2008) — Climatologists at the NASA Goddard Institute for Space Studies (GISS) in New York City have found that 2007 tied with 1998 for Earth's second warmest year in a century. Goddard Institute researchers used temperature data from weather stations on land, satellite measurements of sea ice temperature since 1982 and data from ships for earlier years.

The greatest warming in 2007 occurred in the Arctic, and neighboring high latitude regions. Global warming has a larger affect in polar areas, as the loss of snow and ice leads to more open water, which absorbs more sunlight and warmth. Snow and ice reflect sunlight; when they disappear, so too does their ability to deflect warming rays. The large Arctic warm anomaly of 2007 is consistent with observations of record low geographic extent of Arctic sea ice in September 2007.

"As we predicted last year, 2007 was warmer than 2006, continuing the strong warming trend of the past 30 years that has been confidently attributed to the effect of increasing human-made greenhouse gases," said James Hansen, director of NASA GISS.

"It is unlikely that 2008 will be a year with truly exceptional global mean temperature," said Hansen. "Barring a large volcanic eruption, a record global temperature clearly exceeding that of 2005 can be expected within the next few years, at the time of the next El Nino, because of the background warming trend attributable to continuing increases of greenhouse gases."

The eight warmest years in the GISS record have all occurred since 1998, and the 14 warmest years in the record have all occurred since 1990.

A minor data processing error found in the GISS temperature analysis in early 2007 does not affect the present analysis (see green bars in the figure below for the changes). The data processing flaw was failure to apply NOAA adjustments to United States Historical Climatology Network stations in 2000-2006, as the records for those years were taken from a different data base (Global Historical Climatology Network). This flaw affected only 1.6% of the Earth's surface (contiguous 48 states) and only the several years in the 21st century.

The data processing flaw did not alter the ordering of the warmest years on record and the global ranks were unaffected. In the contiguous 48 states, the statistical tie among 1934, 1998 and 2005 as the warmest year(s) was unchanged. In the current analysis, in the flawed analysis, and in the published GISS analysis, 1934 is the warmest year in the contiguous states (but not globally) by an amount (magnitude of the order of 0.01°C) that is an order of magnitude smaller than the certainty.


Graph of global annual surface temperatures relative to 1951-1980 mean temperature. Air and ocean data from weather stations, ships and satellites. The 2007 point is the 11-month anomaly. (Credit: GISS)

Konrad Steffen: Results from Greenland, 2007

[BLOGGER'S NOTE: A lot of people doing google searches for Konrad Steffen get sent to this blog, so I am posting again the article from December 2007 on the Greenland Ice Sheet. The latest results on the ice sheet will not be published for many more months, so these are the most up-to-date results available, at the present time.]

Greenland Melt Accelerating, According To Climate Scientist

ScienceDaily (Dec. 12, 2007) — The 2007 melt extent on the Greenland ice sheet broke the 2005 summer melt record by 10 percent, making it the largest ever recorded there since satellite measurements began in 1979, according to a University of Colorado at Boulder climate scientist.

The melting increased by about 30 percent for the western part of Greenland from 1979 to 2006, with record melt years in 1987, 1991, 1998, 2002, 2005 and 2007, said CU-Boulder Professor Konrad Steffen, director of the Cooperative Institute for Research in Environmental Sciences. Air temperatures on the Greenland ice sheet have increased by about 7 degrees Fahrenheit since 1991, primarily a result of the build-up of greenhouse gases in Earth's atmosphere, according to scientists.

Steffen gave a presentation on his research at the fall meeting of the American Geophysical Union held in San Francisco from Dec. 10 to Dec. 14. His team used data from the Defense Meteorology Satellite Program's Special Sensor Microwave Imager aboard several military and weather satellites to chart the area of melt, including rapid thinning and acceleration of ice into the ocean at Greenland's margins.

Steffen maintains an extensive climate-monitoring network of 22 stations on the Greenland ice sheet known as the Greenland Climate Network, transmitting hourly data via satellites to CU-Boulder to study ice-sheet processes.

Although Greenland has been thickening at higher elevations due to increases in snowfall, the gain is more than offset by an accelerating mass loss, primarily from rapidly thinning and accelerating outlet glaciers, Steffen said. "The amount of ice lost by Greenland over the last year is the equivalent of two times all the ice in the Alps, or a layer of water more than one-half mile deep covering Washington, D.C."

The Jacobshavn Glacier on the west coast of the ice sheet, a major Greenland outlet glacier draining roughly 8 percent of the ice sheet, has sped up nearly twofold in the last decade, he said. Nearby glaciers showed an increase in flow velocities of up to 50 percent during the summer melt period as a result of melt water draining to the ice-sheet bed, he said.

"The more lubrication there is under the ice, the faster that ice moves to the coast," said Steffen. "Those glaciers with floating ice 'tongues' also will increase in iceberg production."

Greenland is about one-fourth the size of the United States, and about 80 percent of its surface area is covered by the massive ice sheet. Greenland hosts about one-twentieth of the world's ice -- the equivalent of about 21 feet of global sea rise. The current contribution of Greenland ice melt to global sea levels is about 0.5 millimeters annually.

The most sensitive regions for future, rapid change in Greenland's ice volume are dynamic outlet glaciers like Jacobshavn, which has a deep channel reaching far inland, he said. "Inclusion of the dynamic processes of these glaciers in models will likely demonstrate that the 2007 Intergovernmental Panel on Climate Change assessment underestimated sea-level projections for the end of the 21st century," Steffen said.

Helicopter surveys indicate there has been an increase in cylindrical, vertical shafts in Greenland's ice known as moulins, which drain melt water from surface ponds down to bedrock, he said. Moulins, which resemble huge tunnels in the ice and may run vertically for several hundred feet, switch back and forth from vertical to horizontal as they descend toward the bottom of the ice sheet, he said.

"These melt-water drains seem to allow the ice sheet to respond more rapidly than expected to temperature spikes at the beginning of the annual warm season," Steffen said. "In recent years the melting has begun earlier than normal."

Steffen and his team have been using a rotating laser and a sophisticated digital camera and high-definition camera system provided by NASA's Jet Propulsion Laboratory to map the volume and geometry of moulins on the Greenland ice sheet to a depth of more than 1,500 feet. "We know the number of moulins is increasing," said Steffen. "The bigger question is how much water is reaching the bed of the ice sheet, and how quickly it gets there."

Steffen said the ice loss trend in Greenland is somewhat similar to the trend of Arctic sea ice in recent decades. In October, CU-Boulder's National Snow and Ice Data Center reported the 2007 Arctic sea-ice extent had plummeted to the lowest levels since satellite measurements began in 1979 and was 39 percent below the long-term average tracked from 1979 to 2007.

[BLOGGER'S NOTE: there are many more articles on the Greenland Ice Sheet on the same page as the above article, at this link: http://www.sciencedaily.com/releases/2007/12/071211233433.htm ]

CIRES is a joint institute of CU-Boulder and the National Oceanic and Atmospheric Administration. For more information on Steffen's research, visit the Web site at: http://cires.colorado.edu/science/groups/steffen/.

Sunday, May 18, 2008

BBC News: Wildlife populations 'plummeting'

Friday, 16 May 2008 03:31 UK

Hammerhead shark
Over-fishing and demand for their fins as a delicacy have hit shark numbers

Between a quarter and a third of the world's wildlife has been lost since 1970, according to data compiled by the Zoological Society of London.

Populations of land-based species fell by 25%, marine by 28% and freshwater by 29%, it says.

Humans are wiping out about 1% of all other species every year, and one of the "great extinction episodes" in the Earth's history is under way, it says.

Pollution, farming and urban expansion, over-fishing and hunting are blamed.

River dolphin

The Living Planet Index, compiled by the society in partnership with the wildlife group WWF, tracks the fortunes of more than 1,400 species of fish, amphibians, reptiles, birds and mammals, using scientific publications and online databases.

DEMANDING HUMANS

It said numbers had declined by 27% in the 35 years from 1970 to 2005.

Some of the worst hit are marine species which saw their numbers plummet by 28% in just 10 years, between 1995 and 2005.

Populations of ocean birds have fallen by 30% since the mid 1990s, while land-based populations have dropped by 25%.

Reduced biodiversity means millions of people face a future where food supplies are more vulnerable to pests and disease and where water is in irregular or short supply
James Leape
Director general, WWF UK

Among the creatures most seriously affected have been African antelopes, swordfish and hammerhead sharks.

Another, the baiji - or Yangtze River Dolphin - may have been lost altogether.

The findings were released ahead of a meeting of the Convention on Biodiversity in the German city of Bonn.

The convention was signed in 1992 with the aim of stabilising the loss of species. In 2002, member states pledged to achieve a "significant reduction" in the current rate of biodiversity loss by 2010.

But the Zoological Society said governments had since failed to put in place policies necessary to achieve that goal.

It said that while species' decline does appear to have flattened off in recent years, it is "very unlikely" that the 2010 target will be reached.

Impact on humans

The WWF said that over the next 30 years, climate change was also expected to become a significant threat to species.

Topi antelope in Africa
Land-based species, such as African antelopes, have fallen by 25%

Colin Butfield, head of campaigns at WWF UK, said: "Biodiversity underpins the health of the planet and has a direct impact on all our lives, so it is alarming that despite an increased awareness of environmental issues we continue to see a downward trend."

The charity also warned that a failure to stop biodiversity loss would have a direct impact on humans.

Director general James Leape said: "Reduced biodiversity means millions of people face a future where food supplies are more vulnerable to pests and disease and where water is in irregular or short supply.

"No-one can escape the impact of biodiversity loss because reduced global diversity translates quite clearly into fewer new medicines, greater vulnerability to natural disasters and greater effects from global warming."

The WWF is calling on governments meeting in Bonn to honour their commitments to put in place effective protected areas for wildlife and to adopt a target to achieve net annual zero deforestation by 2020.

The UK's Biodiversity Minister, Joan Ruddock, said the report showed that the international community had to work together to stem the decline.

"The fact that human activities have caused more rapid changes in biodiversity in the last 50 years than at any other time in human history should concern us all," she said.

"Supporting wildlife is critical to all our futures and the UK will continue to give strong support to international action.

"Schemes such as the Darwin Initiative have used UK expertise to help more that 490 wildlife conservation, regeneration and research projects in 146 countries."

Bar chart showing ecological footprint per person by country, 2003 (WWF)

Lifestyles and the consumption of resources vary widely from country to country. On average each person needs 2.2 global hectares to support the demands they place on the environment, but the planet is only able to meet consumption levels of 1.8 global hectares per person.



Link to article: http://news.bbc.co.uk/2/hi/uk_news/7403989.stm

Oxygen depletion in the world's oceans: Zones of death are spreading in oceans due to global warming

from May 18, 2008

Green Central: click here to read Times Online's environment blog

Marine dead zones, where fish and other sea life can suffocate from lack of oxygen, are spreading across the world’s tropical oceans, a study has warned.

Researchers found that the warming of sea water through climate change is reducing its ability to carry dissolved oxygen, potentially turning swathes of the world’s oceans into marine graveyards.

The study, by scientists from some of the world’s most prestigious marine research institutes, warns that if global temperatures keep rising there could be “dramatic consequences” for marine life and for humans in communities that depend on the sea for a living.

Organisms such as fish, crabs, lobsters and prawns will die in such zones, warned Lothar Stramma of the Leibniz Institute of Marine Sciences in Kiel, Germany, who co-wrote the research paper with Janet Sprintall, a physical oceanographer at Scripps Institution of Oceanography in California.

In the study, published in the journal Science, they collated hundreds of oxygen concentration readings taken over the past 50 years in the Atlantic and Pacific over depths ranging from 985ft to 2,500ft.

“In the central and eastern tropical Atlantic and equatorial Pacific the oxygen-minimum zones appear to have expanded and intensified during the past 50 years,” Stramma said.

The researchers found that such regions now extend deeper into the oceans and closer to the surface. Fish and other sea life cannot survive in such waters, said Sprintall.

The researchers say the change is closely linked to rising sea water temperature. At 0C, one kilogram of sea water can hold about 10ml of dissolved oxygen but at 25C this falls to just 4ml.

This impact is amplified by a host of other factors. One of the most important is that parts of the eastern Atlantic, eastern Pacific and the Indian Ocean are naturally low in oxygen – so a small additional decline has a disproportionately greater effect.

Examples of partly dead zones include a stretch of the Pacific about 5,000 miles wide off the west coast of South America. Others are found off the west coasts of Africa and India.

Additionally, as surface water heats up it becomes less dense and forms an insulating layer that stops oxygen percolating into the colder layers beneath.

Climate change is also suspected of altering the direction and strength of ocean currents, causing dead zones such as the one that suddenly appeared off Oregon, in America’s Pacific Northwest, six years ago and which appears to have become an annual event, killing marine life at every level from plankton to salmon, seals and sea birds.

Lisa Levin, professor of biological oceanography at Scripps, and a world expert on the expansion of oxygen depletion in the oceans, predicted that similar zones would eventually appear off California.

“Around the world there are already around 150 areas suffering from low or declining oxygen levels,” she said.

Many of these are close to coastlines where the main cause is not climate change but pollution, especially agricultural chemicals washed off the land. The nitrogen in such run-off effectively fertilises the sea, causing a sudden “bloom” of algae and other planktonic life.

As such organisms die they are decomposed by bacteria that multiply so fast they suck all the oxygen from the water.

A report by the United Nations Environment Programme found that such coastal dead zones have doubled in number since 1995, with some extending over 27,000 square miles, about the size of the Republic of Ireland.

Among the worst affected are the Baltic Sea, the Black Sea, and parts of the Mediterranean. Perhaps the biggest of all is found in the Gulf of Mexico, where the Mississippi carries thousands of tons of agrochemicals into the sea every year.

Recent research has revealed that about 250m years ago average oxygen levels in oceans fell almost to zero – a reduction associated with dramatic changes in climate that resulted in the extinction of 95% of the world’s species.

Link to article: http://www.timesonline.co.uk/tol/news/environment/article3953924.ece

Saturday, May 17, 2008

A cool look at global warming skepticism by Geoff Davies

Friday, 16 May 2008
By Dr Geoff Davies

Professor Don Aitkin’s sceptical view of global warming, presented to the Planning Institute of Australia on April 2nd, has been widely publicised. He claims that the current level of warming is not historically unprecedented, that the link between warming and greenhouse gas emissions is weak, and that we should not do anything to restrict emissions until it is “absolutely plain” that there is no alternative. He says the global warming issue is a distraction from the water and peak oil crises facing Australia.

Having failed to understand why climate scientists are advocating urgent action (“stridently,” he claims), Professor Aitkin proceeds to play the people instead of the ball by questioning their motives, claiming, among other things, that having set up the IPCC the scientists have to keep justifying it by claiming there is warming.

Professor Aitkin poses several questions, the three most immediate being whether the Earth is warming, whether its present warming is unprecedented, and whether our burning of fossil fuels is causing the present warming.

However there are other equally important questions lurking behind this debate which usually get little or no attention. These are:

  • Would it be so hard for us to change our lifestyle so as to reduce our possible contribution to global warming?
  • Would we be better off in other ways if we so changed our lifestyle?
  • Is it, perhaps, necessary that we change our lifestyle, for reasons other than global warming?

Professor Aitkin has touched on these questions, but he does not seem to see them as central. His main concern is clearly that effective action will be expensive and will therefore distract us from other crises.

Professor Aitkin wants a more open debate. It already exists, if he would look in the right places, but here I will engage him directly. I will first discuss his claims, then turn to my three additional questions, and finally close with my own brief assessment of our situation. I am responding to the text of Professor Aitkin’s speech, to his two “Ozcam’s Razor” broadcasts on the ABC, and to some direct correspondence we have had.

Professor Aitkin makes much of the uncertainty of climate observations. There are certainly many uncertainties and complications, and a great deal of effort is devoted to overcoming or minimising the limitations of the observations. However Professor Aitkin claims scientists don’t discuss them, particularly singling out the IPCC. In this he misunderstands or misconstrues the role of the IPCC reports: they are entitled “Assessment” reports. They are not just the science; they are an assessment of the science, using a process I will explain more fully later. Evidently he denies IPCC the role (I would say the responsibility) of assessing the state of the evidence. Nor does he note its consensus procedure and the political vetting of its final texts, both of which tend strongly to make its assessments conservative.

Professor Aitkin presents himself, on the other hand, as a paragon of disinterested enquiry. However he inevitably makes his own selections and judgements of the evidence. For example, he queries the claim that the present warming is unprecedented and cites one study arguing the Medieval Warm Period in Europe was warmer than at present. However a number of temperature proxies show the temperature to have been 0.0-0.3 degrees cooler than the mid-twentieth century (and thus 0.6-0.9 degrees cooler than now – you can see the graph on Wikipedia). Also, according to the US National Oceanic and Atmospheric Administration there is no clear evidence that the warm period extended outside Europe. Evidently, Professor Aitkin has not taken his own advice on the difficulties of estimating global averages. Nevertheless, he stated quite firmly in his broadcast that the present warming is no greater than that of the Medieval Warm Period.

More egregiously, Professor Aitkin makes no significant mention of dramatic changes in the Arctic, nor of pervasive and rapid retreats of mountain glaciers. These are noted (p. 6) only as “the evident melting of sea ice and the retreat of some glaciers.” In this statement, he misrepresents the observations of mountain glaciers, which are indisputable, and glosses over perhaps the most dramatic and disturbing symptom of warming, to which I will return.

Professor Aitkin claims there is no reasonable evidence that greenhouse gas emissions are the cause of the present warming (though he acknowledges well-established basic physics). One of his arguments is that there is “no dramatically linear relationship” between the two during the twentieth century. But of course there are natural short-term fluctuations in temperature (which skeptics like to emphasise), but not in the rise of carbon dioxide, so we don’t expect any simple linear relationship, particularly in the short term. This is a superficial and uncompelling argument.

Another argument, frequently raised by skeptics, is that during the ice ages rises in temperature preceded carbon dioxide rises. Professor Aitkin leaves the implication dangling that we don’t understand why, and that this also shows that carbon dioxide levels do not determine temperature. In fact, this topic is well (if not widely) understood. The ice-age fluctuations were triggered by fluctuations in the amount of heat received from the sun (due to slow gyrations of Earth in its orbit around the sun), but the temperature fluctuations would have been minor were they not strongly amplified by the carbon dioxide released as temperature rose. The amplification also explains the strongly asymmetric temperature fluctuations (slow cooling, rapid warming). The conclusion is that carbon dioxide was the dominant factor, though not the trigger. The ice age observations thus strongly support the hypothesis that a rise in carbon dioxide levels causes a rise in temperature.

Our present situation is different from the ice age situations. Solar heating has not changed significantly, but carbon dioxide levels have gone up a lot, higher than they’ve been for at least three million years. Our understanding of the ice age fluctuations gives us strong reason to expect that temperatures will increase, with a time lag of a few decades. The fact that the mean temperature has increased by at least 0.6 degrees Celsius over the past few decades (a conclusion Professor Aitkin does not dispute) is then reason for serious concern.

There is additional, longer-term geological evidence in which carbon dioxide levels correlate well with surface temperature. The implied temperature variation is, if anything, greater than computer climate models suggest. Thus, contrary to Professor Aitkin’s claim, there is independent and strong evidence that greenhouse gases cause warming. Climate models, for all their imperfections, confirm this, which is one reason to take them seriously, if cautiously.

Professor Aitkin asserts that “there is simply no evidence” that polar ice will melt and that sea levels will rise. The only citation he makes is to a claim that recent evidence may show a slight cooling of the oceans over the past five years. Even if substantiated, that would be no basis for his grand assertion. He fails to mention clear evidence of the acceleration of both melting and ice movement in Greenland. There is also clear geological evidence for polar melting and sea level rise accompanying higher temperatures. Three million years ago, when the Earth was 2-3 degrees hotter, sea level was 15-35 meters higher. This is roughly consistent with evidence from the last glacial maximum and from a warm period 40 million years ago that around 20 meters of sea level change occurs for each degree of temperature change. We are likely to experience at least 2 degrees of warming. The complete melting of the Greenland and West Antarctic ice sheets would contribute about 7 meters each to sea level, so evidently even more ice was lost three million years ago under not dissimilar conditions. Professor Aitkin’s discussion of potential sea level rise is quite deficient.

He notes that the IPCC forecasts a sea level rise of around 30 cm this century, but says this is no reason for concern because, for example, the low-lying Tuvalu islands already experience sea level fluctuations because of El Nino. But of course the natural fluctuations would be added to the global rise. Damage occurs during peaks in the natural fluctuations, such as king tides and storm surges, as New Orleans found out. This is a superficial and irresponsible dismissal of concern for the livelihoods, communities, and lives of millions of people.

Professor Aitkin queries computer climate models at some length. They are indeed still significantly limited, and their results must be treated with care. However, our conclusions about global warming do not rest solely on computer models, as the preceding discussion will have made clear. Professor Aitkin reveals his superficial understanding by claiming that if they can’t make a reliable 24-hour forecast then one shouldn’t believe long-term climate forecasts. He evidently lacks the elementary understanding that weather causes erratic fluctuations around a relatively slowly changing mean, and that climate is about the long-term means. He also suggests their climate forecasts would be more believable if they would forecast the climate for 2009. However, climate scientists repeatedly emphasise that one can’t reach conclusions about global warming from a single year’s record, nor even from trends over a few years; one has to look at longer-term trends.

Having failed to appreciate some of the key arguments supporting the global warming hypothesis, Professor Aitkin turns his attention to explaining to himself why climate scientists persist in making urgent pleas to curb greenhouse gas emissions. He suggests they are protecting their turf, reputations and pet idea, and revelling in the extra funding and influence they are receiving. He describes the more activist scientists, and environmentalists in general, as holding a “quasi-religious” view. He says The Greens, “greens,” and environmentalists welcome and propagate the global warming view because it fits their own perceptions (implying that those people have no rational basis for their views). He says even democratic governments like to have issues to scare people with. (Well, yes, we’ve certainly seen the terrorism threat used that way, but I struggle to think of a government that has yet turned to global warming to scare its citizens, as all of them have had to be dragged kicking and screaming to acknowledge the problem.) He says people have an appetite for horror stories, and the media love to play to that (no argument there, but the media don’t care which story they peddle).

There are quite a few things one could say about these characterisations, only a couple of which will be noted here. Skeptics love to claim climate scientists are only in it for the research funding, ego tripping, alleged influence and so on, but they rarely mention the trillions of dollars and dominating global influence that fossil fuel industries have at stake, and that ExxonMobil in particular actively protects. Professor Aitkin laments that he has been called a “denialist” by others, yet he labels climate scientists as quasi-religious and with the several other descriptions just mentioned.

In our correspondence he said “scientists” have said apocalyptic things before and been wrong, so why are they right now? I think Jared Diamond’s assessment, in his book Collapse, is more valid and pertinent. Diamond recounts the stories of civilisations that failed to heed danger signals and collapsed. He recounts the stories of others that saw trouble coming, acted appropriately and in time, and avoided collapse.

Scientists are human, and scientific debates fall short of the ideal. There is turf protection and self-promotion, and rancour is not uncommon. As an advocate of a minority view in my own field for twenty years, a view ultimately vindicated, I am personally acquainted with these imperfections. The IPCC process is specifically intended to step back from the front-line disputes to see what scientists can agree on. This is the part of the IPCC process that seems to have completely escaped Professor Aitkin’s understanding.

Even so, not everybody ends up satisfied with its assessments. Many, me included, feel it is too conservative. However in reaching for the conspiracy theory favoured by skeptics and denialists, to make up for his own deficient understanding, Professor Aitkin besmirches a great many excellent and conscientious scientists.

Professor Aitkin makes belated acknowledgement in his speech of the precautionary principle, which is basically that we would be wise take some preventative action as insurance against potential catastrophe. His view seems to be, as best I can understand it, that there may be many possible reasons for climate change, so we’d be foolish to assume we’ve identified the real culprit and should therefore just accept and adapt to whatever comes to pass. When I reminded him in correspondence that to act effectively to avert global warming, we know we must act before there is certainty, because of the time lags in the climate system, he said that my argument for the insurance policy view would only apply if the climate scientists are certainly correct. I don’t pretend to understand the logic of these statements.

Professor Aitkin identifies himself as a historian and political scientist. At best, he can be seen to have made the classic mistakes of a neophyte – failing to identify key evidence, key arguments, and reliable voices among the confusion of a large, active, and complex field, and resorting to a conspiracy theory to explain what otherwise he could not understand. He acknowledges two prominent skeptics as guides in an unfamiliar field, which perhaps was not the best way to undertake the comprehensive and disinterested investigation he says he aspired to. His patronising and sweeping characterisation of environmentalists as quasi-religious, and his dismissal of the idea that we could deal with several problems simultaneously as Utopian (see below), reveal the limitations of his own world view. Such prejudices have clearly conditioned the conclusions he was able to reach.

Professor Aitkin considers global warming to be a distraction from more immediate crises, such as water and peak oil. When I put to him that sensible action would mitigate all three crises, and others besides, he brushed me off, in his patronising style, as “Utopian.” This brings us to my three questions. It is implicit in Professor Aitkin’s arguments that his answers would be (a) it would be difficult and costly to change, (b) there are no other benefits to changing, in fact it would be harder to deal with other crises, and (c) there are no other compelling reasons to change. This is clearly a widespread set of views among skeptics, vested interests, and most government agents.

There is, on the other hand, widespread, growing, and well-justified concern that our Western consumer lifestyle already exceeds the ability of the Earth to sustain it. Among the symptoms of this are increasing shortages of fresh water, sick river systems, degradation and loss of soil, rapidly declining forests and their rich biodiversity, sick and dead coral reefs and their rich biodiversity, rapidly declining fisheries, and chemical pollutants from pole to pole, concentrating up food chains, decimating many creatures and showing up in a range of human symptoms. It is also widely believed that the rate of discovery of oil will now decline, just as demand is rising even more rapidly.

All of this would seem to say clearly that we should wean ourselves off oil and we should reduce our materialist obsession with owning ever more stuff. It is becoming widely recognised that buying things does not lead to life satisfaction, it leads to ever more frenetic living, and that we need to shift to a thriftier but more satisfying life style. Professor Aitkin says as much himself, though for him it seems to be more a matter of virtue than necessity. It is, however a necessity, because if we don’t reduce our demands on the Earth, we will suffer famines, plagues, and surely wars as Earth’s soils and ecosystems progressively degrade and disintegrate into chaos.

It is not so widely appreciated how relatively easy it is to reduce our wasteful use of energy and other resources. Energy use and greenhouse emissions have been reduce by two thirds or more by major corporations and many individuals, and they have saved money as a result. As our energy needs decline, renewable resources become more sufficient, and the old and dirty sources become unnecessary. It is not true that renewable energy would be seriously unreliable, despite the ignorant and self-interested claims of big-energy advocates.

Recycling of materials is increasing rapidly, and Germany requires 90% of car components to be returned to manufacturers for recycling. There is little reason why our ingenuity will not lead us to recycle almost all materials indefinitely. This path will indeed mitigate the many crises now confronting us. In fact it is the only path that will allow our grandchildren’s grandchildren to inherit a rich and fulfilling world.

Finally, I will offer a brief, alternative assessment of the present situation regarding global warming. There are a number of signs that global warming is proceeding much more rapidly than anticipated, and human emissions are also increasing faster than expected.

In the northern summer of 2007, the area of Arctic sea ice fell about 40% below the mean for the summers of 1979-1990. Its volume was down by about 80%. Although a slow decline had been in progress, the decline in 2005 and then the larger decline in 2007 represented a dramatic acceleration of the trend. The level of decline reached was not anticipated to occur, either by ice experts or by IPCC modelling, until around 2040. If continued, the new trend would result in an ice-free summer Arctic within 2-5 years; this had not been anticipated to occur until around the end of the century.

Ice has reformed over the past winter, but it is thin “seasonal ice” that melts much faster than “old ice,” which is typically 5 years old or more.

When I mentioned evidence for recent acceleration of warming in our correspondence, Professor Aitkin asked what evidence? “You can't just mean that the IPCC's view of Arctic ice melting may have been understated. Surely the change since 1998 can't be described as ‘rapid acceleration’!” This is further evidence of Professor Aitkin’s egregious ignorance of crucial observations, or their significance.

Dramatic warming of the Arctic has been evident for some time. The plight of polar bears has received publicity, but the lives of indigenous people have also been disrupted and there have been dramatic changes in marine life. While skeptics and denialists quibble about whether “global” temperature changes can be properly measured, the changes to the Arctic are dramatic and indisputable.

The shrinking of the Arctic sea ice is disturbing not only because it is a dramatic change in the condition of the Earth, but because the exposed sea absorbs much more of the sun’s heat than does the ice that used to cover it. Thus warming of the Arctic sea, and of the whole Arctic, will inevitably be accelerated. This is one of several effects that have the potential to become mutually reinforcing.

Permafrost is already melting around the Arctic. The permafrost and cold northern soils contain large stores of carbon and methane (which is a greenhouse gas at least twenty times more potent than carbon dioxide). Those stores are possibly larger than all stores of fossil fuels, including coal. As permafrost melts and soils warm, those stores are released. They further accelerate the warming, potentially disastrously.

Melting of the Greenland ice sheet is accelerating. Glaciers are also accelerating, and the occurrence of “icequakes,” indicating ice fracturing and movement, is increasing. Surface meltwater has been plunging through fissures to the base of the ice sheet, kilometres below, where it floats the ice and lubricates its motion. These phenomena are not well understood, but have the clear potential to lead to much more rapid breakup of the Greenland ice sheet than was previously thought possible. That would raise sea level by about seven meters. The situation in Antarctica is less clear overall, but several floating ice shelves have disintegrated in recent years, and glaciers have accelerated, so there is ample reason for concern.

The fear is that as sea-ice melting, permafrost melting, and other phenomena progress, they mutually reinforce each other. They could become a series of dominoes, each tipping the next in an unstoppable sequence. The fear is that the Arctic sea ice is the first big domino, and that the fall of the dominoes could take us into major and irreversible global warming. The potential for these dynamic interactions is widely recognised in the profession, but Professor Aitkin’s discussion gives no indication of any awareness of them, which is further evidence of the deficiency of his education in global warming.

If a runaway shift into a substantially warmer climate occurred, the survival of the present global economic system would have to be considered uncertain at best. This is why increasing numbers of climate scientists have been calling for urgent action, much sooner than the current international talks are considering. Given that we need to act for other reasons, that reducing our material wastefulness will not be very expensive, and there will be spin-off benefits, we shouldn’t wait for international agreements. If you are with a group in a row boat on a river, and you notice the current getting faster, then you hear what sounds like a waterfall, do you say, “I won’t row until all of you row?”

Dr Geoff Davies is a Senior Fellow in geophysicis at the Australian National University and the author of Economia: New Economic Systems to Empower People and Support the Living World (ABC Books, 2004). His commentaries have appeared in New Matilda, Australasian Science and The Canberra Times. He is not a climate scientist himself, and thus has no professional stake in the debate.

This opinion is a response to Professor Don Aitkin's comments to the Planning Institute of Australia in Canberra on April 2 2008.

Link to original article: http://www.sciencealert.com.au/opinions/20081605-17331.html

Thursday, May 15, 2008

Greenhouse gases highest for 800,000 years

Wed May 14, 2008 10:44pm IST

by Alister Doyle, Environment Correspondent, Oslo (Reuters)

Greenhouse gases are at higher levels in the atmosphere than at any time in at least 800,000 years, according to a study of Antarctic ice on Wednesday that extends evidence that mankind is disrupting the climate.

Carbon dioxide and methane trapped in tiny bubbles of air in ancient ice down to 3,200 meters (10,500 ft) below the surface of Antarctica add 150,000 years of data to climate records stretching back 650,000 years from shallower ice drilling.

"We can firmly say that today's concentrations of carbon dioxide and methane are 28 and 124 percent higher respectively than at any time during the last 800,000 years," said Thomas Stocker, an author of the report at the University of Berne.

Before the Industrial Revolution, levels of greenhouse gases were guided mainly by long-term shifts in the earth's orbit around the sun that have plunged the planet into ice ages and back again eight times in the past 800,000 years.

The U.N. Climate Panel last year blamed human activities, led by burning of fossil fuels that release heat-trapping gases, for modern global warming that may disrupt water and food supplies with ever more droughts, floods and heatwaves.

"The driving forces now are very much different from the driving forces in the past when there was only natural variation," Stocker told Reuters of the study in the journal Nature by scientists in Switzerland, France and Germany.

The experts, working on the European Project for Ice Coring in Antarctica, drilled down almost to bedrock in Antarctica. They recovered layers of ice formed by compressed snow, which can be counted much like the rings on trees.

DEEPER ICE

Stocker said Chinese and Australian scientists were examining possibilities for drilling in parts of Antarctica with even deeper ice, in some places 4,500 meters thick, that could yield atmospheric records dating back 1.5 million years.

The study also found big natural shifts in carbon dioxide levels. "We find very conspicuous natural oscillations of carbon dioxide 770,000 years ago that bear the fingerprint of abrupt climate change during ice ages," Stocker said.

And the Nature report also set a new record low for carbon dioxide at 172 parts per million (ppm) in the atmosphere about 667,000 years ago, about 10 ppm below the previous known low and giving an ancient natural range of 172 to about 300 ppm.

The study suggested that the low might be a sign that the oceans once soaked up more carbon dioxide. Carbon dioxide levels are now at about 380 ppm.

Taken together, the data "allow us to learn more eventually about the carbon cycle and its responses to climate change."

Temperatures in an ice age are about 5-6 Celsius (9 to 11 Fahrenheit) colder than now, already a mild period in earth's history. Climate change could add a "best guess" of 1.8 to 4.0 Celsius this century, according to the U.N. panel.

The study also linked variations in methane to monsoons.

"The variations of methane concentration point to a strengthening of the monsoon system in the tropics in the most recent 400,000 years. These monsoon cycles have become stronger in the second half of this long time period," Stocker said.

-- For Reuters latest environment blogs click on:

http://blogs.reuters.com/environment/

id="copyrightNotice" class="copyright">© Thomson Reuters 2008 All rights reserved

World carbon dioxide levels highest for 650,000 years, says US report

· Earth may be losing ability to absorb CO2, say scientists· Rise in chief greenhouse gas worse than feared
This article appeared in the Guardian on Tuesday May 13 2008 on p. 16 of the UK news section. It was last updated at 12:24 on May 13 2008.
Cooling towers at Eggborough power station, near Selby

Cooling towers at Eggborough power station, near Selby. Photograph: John Giles/PA

The concentration of carbon dioxide in the atmosphere has reached a record high, according to the latest figures, renewing fears that climate change could begin to slide out of control.

Scientists at the Mauna Loa observatory in Hawaii say that CO2 levels in the atmosphere now stand at 387 parts per million (ppm), up almost 40% since the industrial revolution and the highest for at least the last 650,000 years.

The figures, published by the US National Oceanic and Atmospheric Administration on its website, also confirm that carbon dioxide, the chief greenhouse gas, is accumulating in the atmosphere faster than expected. The annual mean growth rate for 2007 was 2.14ppm - the fourth year in the last six to see an annual rise greater than 2ppm. From 1970 to 2000, the concentration rose by about 1.5ppm each year, but since 2000 the annual rise has leapt to an average 2.1ppm.

Scientists say the shift could indicate that the Earth is losing its natural ability to soak up billions of tonnes of CO2 each year. Climate models assume that about half our future emissions will be reabsorbed by forests and oceans, but the new figures confirm this may be too optimistic. If more of our carbon pollution stays in the atmosphere, it means emissions will have to be cut by more than is currently projected to prevent dangerous levels of global warming.

Martin Parry, co-chair of the Intergovernmental Panel on Climate Change's working group on impacts, said: "Despite all the talk, the situation is getting worse. Levels of greenhouse gases continue to rise in the atmosphere and the rate of that rise is accelerating. We are already seeing the impacts of climate change and the scale of those impacts will also accelerate, until we decide to do something about it."

Perched some 11,000ft up a volcano, the Mauna Loa observatory has been measuring carbon dioxide in the atmosphere since 1958. It is regarded as producing among the most reliable data sets because of its remote location, far from any possible source of the gas that could confuse the sensors.

Over the decades, the Mauna Loa readings, made famous in Al Gore's documentary An Inconvenient Truth, show the CO2 level rising and falling each year as foliage across the northern hemisphere blooms in spring and recedes in autumn. But they also show an upward trend as human emissions pour into the atmosphere, and each spring, the total CO2 level creeps above the previous year's high to set a new record.

Robin Oakley, head of Greenpeace's climate change campaign, said: "We're now witnessing a key moment in the climate change story, and it's not good news. The last time the atmosphere was this choked with CO2 humans were yet to evolve as a species. To even consider building new runways and coal-fired power stations at this juncture in history is an unpardonable folly, but Gordon Brown seems determined to stumble forward regardless with his ill-conceived plans in the face of the science and widespread public opposition."

A study last year suggested that the recent surge in atmospheric CO2 levels was down to three processes: growth in the world economy, heavy use of coal in China, and a weakening of natural "sinks", forests, seas and soils that absorb carbon. The scientists said the increase was 35% larger than they expected.

They said about half of the carbon surge was down to the Chinese reliance on coal, which has forced up the carbon intensity of the overall world economy since 2000, reversing a trend of increasing energy efficiency since the 1970s.

· Martin Parry will be speaking at the Guardian Planning for Climate Adaptation conference on May 19

Wednesday, May 14, 2008

Natural changes pinned to warming

by Richard Black, Environment correspondent, BBC News website,

Emperor penguins. Image: BBC
A decline in some Emperor penguin populations is blamed on warming

Major changes in the Earth's natural systems are being driven by global warming, according to a vast analysis.

Glacier and permafrost melting, earlier spring-time, coastal erosion and animal migrations are among the observations laid at the door of man-made warming.

The research, in the journal Nature, involves many scientists who took part in last year's Intergovernmental Panel on Climate Change (IPCC) report.

It links warming and natural impacts on a tighter regional scale.

We need to get our act together, both for adaptation to changes that are happening now, and for mitigation to reduce long term risk
Cynthia Rosenzweig

Changes in the Earth's physical and biological systems since at least 1970 are seen in regions which are known to be warming, it concludes.

The researchers assembled a database including more than 29,500 records that documented changes seen across a wide range of natural phenomena, such as:

  • the earlier arrival of migratory birds in Australia
  • declining krill stocks around Antarctica
  • earlier break-up of river ice in Mongolia
  • genetic shift in the pitcher plant mosquito in North America
  • declining productivity of Lake Tanganyika
  • melting Patagonian ice-fields

"Since 1970, there's been about 0.5C, 0.6C of warming - that's the global average," said Cynthia Rosenzweig from Nasa's Goddard Institute for Space Studies (Giss) in New York.

"And look at all the effects this relatively low amount of warming has had.

"It reveals the sensitivity to relatively low amounts of warming in many physical and biological systems," she told BBC News.

Deeper look

Dr Rosenzweig was one of the scientists who played a leading role in compiling the section of last year's IPCC report dealing with climate impacts.

This analysis uses more sets of data, and different techniques for attributing the root cause of the observed changes.

Francis Zwiers from Environment Canada and Gabriele Hegerl from the University of Edinburgh, who reviewed the work for Nature, commented: "(This) is the first (study) to formally link observed global changes in physical and biological systems to human-induced climate change, predominantly from increasing greenhouse gases".

About 90% of the changes documented were consistent with rising temperatures at regional scales, the researchers found.

Great tit chick. Image: TA Wilkin

And in virtually all cases, global warming was the primary driver of change, as opposed to natural variability or other human impacts such as deforestation or water pollution.

Not all of the changes observed in nature are damaging to all creatures - for example, last week researchers showed that some British birds are able to handle the earlier arrival of spring pretty well.

But others, such as the loss of Arctic sea ice, will clearly have a detrimental effect on parts of the living world.

And phenomena such as the melting of mountain glaciers are likely to have major impacts on societies that depend on them for drinking water.

"This provides up-to-the-minute impetus that climate change is changing how the world works," said Dr Rosenzweig.

"We need to get our act together, both for adaptation to these changes that are happening now, and for mitigation to reduce long-term risk."

Richard.Black-INTERNET@bbc.co.uk

Tuesday, May 13, 2008

Ships bring water to parched Barcelona


The effect of Spain's severe drought

by David Shukman, BBC environment correspondent, Barcelona, BBC News, May 13, 2008

Climb down the stony banks of the massive Sau reservoir in the mountains above Barcelona and you get a real sense of why this famous city is so short of water that it's resorted to bringing in emergency supplies -- by ship.

Nestling in a deep valley of stunning cliffs and forests, this vital source of water has sunk so low it's exposed the eerie sight of a medieval village that was flooded when the reservoir was opened in the 1960s.

The huddle of ancient stone buildings, including a church with its spire, has now re-emerged into the light and stands as a potent symbol of the severity of this water crisis.

Medieval village (BBC)
The emergence of the village has brought sightseers to the reservoir

In a year that so far ranks as Spain's driest since records began 60 years ago, the reservoir is currently holding as little as 18% of its capacity -- at a time of year when winter rains would usually have provided an essential boost by now.

Rainfall figures show a consistent series of shortfalls in recent years -- just as Barcelona's population has expanded to more than five million and the region's booming agribusinesses demand ever more irrigation.

For residents here, the arrival of water by ship is a profound shock -- normally it's the drier areas further South that are notoriously parched.

Already they are living with restrictions on the use of hosepipes and the filling of swimming pools.

Tanker (BBC)
Shipments of water are now needed to sustain the great city

Now the Barcelona authorities are having to take the unprecedented step for any major European city of topping up supplies by the highly visible means of giant tankers arriving in relays, each bringing 28 million litres, up to a dozen ships coming over the next month.

The shipments won't be enough to restore the reservoirs -- or make the ancient village vanish again.

But they may buy time for a highly controversial pipeline to be completed by the end of the year. That should bring more reliable supplies from a neighbouring region but at a high political cost.

And it may also remind people of the forecasts from climate scientists of still drier conditions to come in the approaching decades.

Link to article: http://news.bbc.co.uk/2/hi/science/nature/7398012.stm

Friday, May 9, 2008

Arctic Ocean Circulation Does An About-Face



This shows contours of the trend in ocean bottom pressure from 2002 to 2006 as measured by GRACE along with hypothetical trends that would apply at the circles if ocean salinity reverted from 1990s values to climatological conditions over the same period. (Credit: Image courtesy of NASA/Jet Propulsion Laboratory.)


[BLOGGER'S NOTE: This article is from last year, but it is highly relevant to what is going on, at present, in the Arctic sea. From viewing daily satellite images, it seems clear that the circulation is now, again, counter-clockwise. Please comment to correct me, if this assumption is not correct. Also, a wealth of information in the form of maps and graphs related to the Arctic and projections of its climate can be found here: http://maps.grida.no/region/geoarctic ]


ScienceDaily
, Nov. 14, 2007

A team of NASA and university scientists has detected an ongoing reversal in Arctic Ocean circulation triggered by atmospheric circulation changes that vary on decade-long time scales. The results suggest not all the large changes seen in Arctic climate in recent years are a result of long-term trends associated with global warming.

The team, led by James Morison of the University of Washington's Polar Science Center Applied Physics Laboratory, Seattle, used data from an Earth-observing satellite and from deep-sea pressure gauges to monitor Arctic Ocean circulation from 2002 to 2006. They measured changes in the weight of columns of Arctic Ocean water, from the surface to the ocean bottom. That weight is influenced by factors such as the height of the ocean's surface, and its salinity. A saltier ocean is heavier and circulates differently than one with less salt.

The very precise deep-sea gauges were developed with help from the National Oceanic and Atmospheric Administration; the satellite is NASA's Gravity Recovery and Climate Experiment (Grace). The team of scientists found a 10-millibar decrease in water pressure at the bottom of the ocean at the North Pole between 2002 and 2006, equal to removing the weight of 10 centimeters (four inches) of water from the ocean. The distribution and size of the decrease suggest that Arctic Ocean circulation changed from the counterclockwise pattern it exhibited in the 1990s to the clockwise pattern that was dominant prior to 1990.

Reporting in Geophysical Research Letters, the authors attribute the reversal to a weakened Arctic Oscillation, a major atmospheric circulation pattern in the northern hemisphere. The weakening reduced the salinity of the upper ocean near the North Pole, decreasing its weight and changing its circulation.

"Our study confirms many changes seen in upper Arctic Ocean circulation in the 1990s were mostly decadal in nature, rather than trends caused by global warming," said Morison.

"While some 1990s climate trends, such as declines in Arctic sea ice extent, have continued, these results suggest at least for the 'wet' part of the Arctic -- the Arctic Ocean -- circulation reverted to conditions like those prevalent before the 1990s," he added.

The Arctic Oscillation was fairly stable until about 1970, but then varied on more or less decadal time scales, with signs of an underlying upward trend, until the late 1990s, when it again stabilized. During its strong counterclockwise phase in the 1990s, the Arctic environment changed markedly, with the upper Arctic Ocean undergoing major changes that persisted into this century. Many scientists viewed the changes as evidence of an ongoing climate shift, raising concerns about the effects of global warming on the Arctic.

Morison said data gathered by Grace and the bottom pressure gauges since publication of the paper earlier this year highlight how short-lived the ocean circulation changes can be. The newer data indicate the bottom pressure has increased back toward its 2002 level. "The winter of 2006-2007 was another high Arctic Oscillation year and summer sea ice extent reached a new minimum," he said. "It is too early to say, but it looks as though the Arctic Ocean is ready to start swinging back to the counterclockwise circulation pattern of the 1990s again."

Morison cautioned that while the recent decadal-scale changes in the circulation of the Arctic Ocean may not appear to be directly tied to global warming, most climate models predict the Arctic Oscillation will become even more strongly counterclockwise in the future. "The events of the 1990s may well be a preview of how the Arctic will respond over longer periods of time in a warming world," he said.

Grace monitors tiny month-to-month changes in Earth's gravity field caused primarily by the movement of water in Earth's land, ocean, ice and atmosphere reservoirs. As such it can infer changes in the weight of columns of ocean water. In contrast, the pressure gauges installed on the sea floor in 2005-2006 directly measured water pressure at the bottom of the ocean. Gauge data were remotely recovered during the first year of the study.

"The close agreement between the North Pole pressure gauges and Grace data demonstrates Grace's potential for tracking world ocean circulation," said study co-author John Wahr of the University of Colorado, Boulder.

"Satellite altimeters, such as NASA's Jason, are ideal for studying ocean circulation but can't be used at Earth's poles due to ice cover," said study co-author Ron Kwok of NASA's Jet Propulsion Laboratory, Pasadena, Calif. "Our results show Grace can be a powerful tool for tracking changes in the distribution of mass in the Arctic Ocean, as well as its circulation."

Grace is a partnership between NASA and the German Aerospace Center (DLR). The University of Texas Center for Space Research, Austin, has overall mission responsibility. JPL developed the twin satellites. DLR provided the launch, and GeoForschungsZentrum Potsdam, Germany, operates Grace. For more on Grace: http://www.csr.utexas.edu/grace/ .

The study was funded by the National Science Foundation.


Adapted from materials provided by NASA/Jet Propulsion Laboratory.
APA format:

NASA/Jet Propulsion Laboratory (2007, November 14). Arctic Ocean Circulation Does An About-Face. ScienceDaily. Retrieved May 9, 2008, from http://www.sciencedaily.com­ /releases/2007/11/071113200545.htm

Link to article: http://www.sciencedaily.com/releases/2007/11/071113200545.htm

__________________________________________________________________

Here is a graph from 1997 (click to enlarge), from the following site: http://maps.grida.no/go/graphic/ocean_currents_and_sea_ice_extent




Computers 'hold climate clues'

BBC News, May 6, 2008

Scientists say funding supercomputers is vital in the battle to better understand climate change. Yet much uncertainty remains as the underlying science is not fully understood. Roger Harrabin reports:

Click here: http://news.bbc.co.uk/1/hi/world/7386447.stm

NASA set to join petaflop elite

Supercomputer simulation, C. Henze, Nasa
NASA has used its supercomputers to study colliding black holes

BBC News, May 8, 2008

NASA is making a bid to join the elite group using supercomputers whose power is measured in petaflops.

By 2009 the US space agency aims to be running a petaflop supercomputer that will be able to do 1,000 trillion calculations per second.

By 2012 it hopes to have boosted the power of this machine to 10 petaflops, to help with modelling and simulation.

If it manages the feat, it will be one of only a few organisations that can tap such vast number-crunching power.

The supercomputer will be installed at NASA's Ames Research Center at Moffet Field, California, the site of its existing supercomputer facility. NASA's current top supercomputer, called Columbia, was turned on in 2004 and has a theoretical peak of 88.88 teraflops. This makes it the 20th most powerful supercomputer on the planet, according to the Top 500 Project which compiles a list of the relative performance of these machines.

Running a petaflop computer would catapult NASA into the top five on this list. Currently, the most powerful supercomputer on Earth is BlueGene/L which has a top speed of 478.2 teraflops.

Petaflop computers are expected to debut in the next release of the Top 500 list which is due in June.

The Pleiades Project, as NASA has christened its updating project, will enlist the help of Intel and SGI to create the machine.

In a statement, Ames Director Pete Worden said the supercomputing facility was needed to enable it "higher fidelity" modelling and simulation of future missions.

NASA has used its current supercomputer to investigate the performance of hypersonic aircraft, simulate lander deployments and model fabrics for future spacesuits.

"This additional computational performance is necessary to help us achieve breakthrough scientific discoveries," said Mr Worden.

Link to article: http://news.bbc.co.uk/2/hi/technology/7389877.stm

" Climate prediction: No model for success" by Roger Harrabin

by Roger Harrabin, Environment analyst, BBC News, May 6, 2008

Cloudy sky. Image: Science Photo Library
The response of clouds to warming is one of the biggest "known unknowns"

Pier Luigi Vidale smiles fondly as he gazes at the image unfolding on his screen.

It is a rare and beautiful view of Planet Earth.

Curlicues of cloud formations swirl around the Antarctic at the bottom of the screen as if captured by time-lapse photography.

The image resembles a view of the Earth from space, stretched full frame.

But a small yellow ball scudding along the bottom of the screen hints at another story.

The ball is the Sun, heating the surface as it passes and provoking a daily puff of cloud from the Amazon rainforest in this computer-generated climate model.

The animation comes from research led by Dr Vidale at Reading University's Walker Institute.

It is designed to provide long-term data to help scientists distinguish between heating trends and natural climatic fluctuations.

This week, about 150 of the world's top climate modellers have converged on Reading for a four day meeting to plan a revolution in climate prediction.

And they have plenty of work to do. So far modellers have failed to narrow the total bands of uncertainties since the first report of the Intergovernmental Panel on Climate Change (IPCC) in 1990.

Vicky Pope from the Met Office explains how climate models have changed over the years

And Julia Slingo from Reading University admitted it would not get much better until they had supercomputers 1,000 times more powerful than at present.

"We've reached the end of the road of being able to improve models significantly so we can provide the sort of information that policymakers and business require," she told BBC News.

"In terms of computing power, it's proving totally inadequate. With climate models we know how to make them much better to provide much more information at the local level... we know how to do that, but we don't have the computing power to deliver it."

If we ask models the questions they are capable of answering, they answer them reliably
Professor Jim Kinter

Professor Slingo said several hundred million pounds of investment were needed.

"In terms of re-building something like the Thames Barrier, that would cost billions; it's a small fraction of that.

"And it would allow us to tell the policymakers that they need to build the barrier in the next 30 years, or maybe that they don't need to."

Knowing the unknowns

One trouble is that as some climate uncertainties are resolved, new uncertainties are uncovered.



Some modellers are now warning that feedback mechanisms in the natural environment which either accelerate or mitigate warming may be even more difficult to predict than previously assumed.

Research suggests the feedbacks may be very different on different timescales and in response to different drivers of climate change.

Just last week, preliminary research at the Leibniz Institute of Marine Sciences in Kiel, Germany, suggested that natural variations in sea temperatures will diminish the decade's 0.3C global average rise predicted by the IPCC, before emissions start to warm the Earth again after 2015.

IPCC authors said this was not incompatible with their models; but the German research provoked some skeptics to ask whether models could be believed at all.

"If we ask models the questions they are capable of answering, they answer them reliably," counters Professor Jim Kinter from the Center for Ocean-Land-Atmosphere Studies near Washington DC, who is attending the Reading meeting.

"If we ask the questions they're not capable of answering, we get unreliable answers."

Natural wobbles

Models work by simulating the multitude of influences on the climate, including the Sun, the Earth's orbital wobbles, volcanoes, ocean currents, rainforests and man-made pollution.

The modellers draw on science to create equations which, once inside the computer, project a picture of the future climate.

All the models used in the IPCC's vast report last year forecast warming of at least 2C if CO2 doubles (up from a 1.5C minimum rise in the organisation's 2001 report).


This warming is predicted to increase some crop yields in northern countries, but also bring more floods and droughts -- particularly in poor nations.

Double or even triple pre-industrial CO2 levels are inevitable by the end of the century unless emissions are very radically cut.

Many scientists believe that exceeding a 2C rise would substantially increase the risk of causing irreversible feedbacks.

Significantly, most IPCC models suggest a rise of 3C if CO2 doubles.

This is forecast to cause increased droughts for more than a billion people, bring about widespread death of coral reefs, and put up to a third of all species at risk of extinction.

The most extreme IPCC model projects over 7C, and other models indicate that rises of double figures are possible.

The models paint a big picture. They struggle to capture regional detail and precipitation; none can successfully forecast the eminently predictable daily rainfall in the Amazon, for instance.

Professor Slingo emphasises the importance of having good information on rainfall in a world hungry for more food.

Cycles of life

Differences between high and low projections in climate models used by the IPCC stem mainly from uncertainties over feedback mechanisms -- for example, how the carbon cycle and clouds will react to future warming.

Roger Harrabin explains how cloud feedback works

If clouds trap more heat or the planet releases more carbon, then climate change may accelerate dangerously.

If clouds reflect heat or the planet takes up carbon, we could get away with higher CO2 emissions.

Carbon cycle feedback explained

Professor Andrew Watson at the University of East Anglia researches carbon uptake in the oceans.

He fears dangerous climate change; but he told BBC News that basic science on the carbon cycle is too poorly understood to make a meaningful contribution to models.

"We have to try to model an immensely complex system all the way from the tropical rainforest, the oceans, the northern hemisphere forests, the soil -- and we have no fundamental equations to do that with," he says.

"When we are modelling the physics of the oceans and the atmosphere, we do have some fundamental equations.

"We don't have those for the living parts of the system."

Cloudy view

Clouds are the biggest "known unknown." Those with low tops bounce the Sun's energy back into space to keep us cooler, whereas high-level clouds tend to trap heat radiating upwards from the Earth.

The crucial question is which sort of clouds will be favoured in the warmer world most scientists expect.

All but one of the IPCC models predict that clouds will accelerate future warming.

Professor Roy Spencer, a meteorologist from the University of Alabama at Huntsville and a noted critic of the IPCC, accepts that this forecast may be right -- but believes that the opposite will prove true.


He thinks clouds are impossible to model at present.

"We just haven't had very good data for more than about six years pertaining to clouds," he says.

"And obviously climate change is a multi-decade or a century-timescale kind of thing.

"We would've needed really good cloud observations for the last 50 years to know how clouds affect climate."

Pier Luigi Vidale says modellers are learning fast about clouds, which respond instantly to changing temperatures.

They say many cloud feedback uncertainties are factored into their projections, which have been tacitly accepted by the world's leading governments which control the IPCC.

Political leaders have now agreed that they cannot wait for the modelling uncertainties to be ironed out.

They have said they are convinced that emissions should be cut; but they just cannot agree who should do it.

Link to article: http://news.bbc.co.uk/2/hi/science/nature/7381250.stm