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Showing posts with label Europe. Show all posts
Showing posts with label Europe. Show all posts

Natural variation: Warm North Atlantic Ocean promotes extreme winters in U.S. and Europe

The extreme cold weather observed across Europe and the east coast of the US in recent winters could be partly down to natural, long-term variations in sea surface temperatures, according to a new study published today.

Researchers from the University of California Irvine have shown that a phenomenon known as the Atlantic Multidecadal Oscillation (AMO) -- a natural pattern of variation in North Atlantic sea surface temperatures that switches between a positive and negative phase every 60-70 years -- can affect an atmospheric circulation pattern, known as the North Atlantic Oscillation (NAO), that influences the temperature and precipitation over the Northern Hemisphere in winter.

When the AMO is in its positive phase and the sea surface temperatures are warmer, the study has shown that the main effect in winter is to promote the negative phase of the NAO which leads to "blocking" episodes over the North Atlantic sector, allowing cold weather systems to exist over the eastern US and Europe.

The results have been published today, Wednesday 2 April, in IOP Publishing's journal Environmental Research Letters.

To arrive at their results, the researchers combined observations from the past century with climate simulations of the atmospheric response to the AMO.

According to their observations, sea surface temperatures in the Atlantic can be up to 1.5 ?C warmer in the Gulf Stream region during the positive phase of the AMO compared to the negative, colder phase. The climate simulations suggest that these specific anomalies in sea surface temperatures can play a predominant role in promoting the change in the NAO.

Lead authors of the study Yannick Peings and Gudrun Magnusdottir said: "Our results indicate that the main effect of the positive AMO in winter is to promote the occurrence of the negative phase of the NAO. A negative NAO in winter usually goes hand-in-hand with cold weather in the eastern US and north-western Europe."

The observations also suggest that it takes around 10-15 years before the positive phase of AMO has any significant effect on the NAO. The reason for this lag is unknown; however, an explanation might be that AMO phases take time to develop fully.

As the AMO has been in a positive phase since the early 1990s, it may have contributed to the extreme winters that both the US and Europe have experienced in recent years.

The researchers warn, however, that the future evolution of the AMO remains uncertain, with many factors potentially affecting how it interacts with atmospheric circulation patterns, such as Arctic sea ice loss, changes in solar radiation, volcanic eruptions and concentrations of greenhouse gases in the atmosphere.

The AMO also shows strong variability from one year to the next in addition to the changes seen every 60 - 70 years, which makes it difficult to attribute specific extreme winters to the AMO's effects.

Responding to the extreme weather that gripped the eastern coast of the US this winter, Yannick Peings continued: "Unlike the 2012/2013 winter, this winter had rather low values of the AMO index and the pattern of sea surface temperature anomalies was not consistent with the typical positive AMO pattern. Moreover, the NAO was mostly positive with a relatively mild winter over Europe."

"Therefore it is unlikely that the positive AMO played a defining role on the east coast of the US, although further work is necessary to answer this question. Such an event is consistent with the large internal variability of the atmosphere, and other external forcings may have played a role.

"Our future studies will look to compare the role of the AMO compared to Arctic sea ice anomalies, which have also been shown to affect atmospheric circulation patterns and promote colder, more extreme winters."


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Risk of dengue fever epidemic in Europe

The risk of dengue fever beginning to spread in Europe is imminent. According to researchers from Ume? University, this is no longer just an issue for the scientific community but also for politicians and policy makers, who need to be prepared and develop preventive measures.

With a changing climate and rising temperatures in Europe, the incidence of the Aedes aegypti mosquito has also increased. The mosquito is the main vector of dengue that can cause haemorrhagic fever. Although no outbreak of the disease has not yet occurred in Europe, researchers at the Epidemiology and Global Health unit at Ume? University claim that there is now good living conditions for the mosquito in Europe and that it is therefore only a matter of time before we see an epidemic here. The Aedes albopictus mosquito has already established itself in large parts of Europe. Even though it is not as competent a vector as Aedes aegypti, several domestic cases of the disease have been observed in countries such as France and Croatia.

"The last outbreak of dengue in Portuguese Madeira when several thousand became ill, shows that it is no longer a theoretical possibility that the disease can take hold in Europe. It is a reality that can strike at any time," says Raman Preet, researcher and scientific project manager of the Dengue Tools project at the Department of Epidemiology and Global Health, Ume? University. "When the disease shows up in Europe it has probably accompanied travelers in areas in the world where the disease is established. Then it will be spread with the help of the Aedes mosquito."

The risk for Swedish travelers to be infected by dengue is highest when going to Sri Lanka and Bangladesh, while most cases in Sweden stems from trips to Thailand. There is currently no vaccine that can protect against dengue, nor is there any treatment when the illness strikes. Symptoms are similar to those of severe cold with fever, headache, muscle and joint pain, or upset stomach. The disease can be life threatening when it affects children, the elderly and chronically ill. In severe cases it can develop into a hemorrhagic fever.

The previous models used to study the spread of dengue and especially the living conditions for the Aedes mosquito has taken up the average temperature in different areas. Jing Helmersson, PhD student within the EU-funded DT project at Ume? University, demonstrates in her studies that it is not enough. These calculations must also include the diurnal temperature distribution in different areas, and temporal trends when assessing the potential for an epidemic caused by dengue. Therefore, Jing Helmersson has developed a climate model with historical data from 1901 to the present day, whose projections extends to 2099. The results show a strong link between climate change and increased ability for mosquitoes to spread the disease in Europe.

"In our analyses, we can see that climate change, including the extreme weather with large daily temperature fluctuations in different areas of Europe, causes a large relative increase in the potential for epidemic spread of dengue fever," says Jing Helmersson. "It mainly concerns areas in southern and central Europe where the potential for proliferation previously has been small. At the same time we see that the spread potential will decrease in warm areas of the world, because the temperatures get too high."

Following the results of the research project, Jing Helmersson believes that it is important to continue with the mapping of future risks of dengue infection, especially in temperate regions of the Northern Hemisphere. Increased globalization and the influx of viruses carried by flight passengers further heightens the risks.

"Perhaps the most important of these studies is that they give us a better understanding of the risks of a future epidemic of dengue fever," says Jing Helmersson. "This type of modelling where we use weather and climate data makes it possible to forewarn the authorities in countries that are at risk of dengue epidemics, so that they in turn can prepare and start to act."

Story Source:

The above story is based on materials provided by Ume? universitet. Note: Materials may be edited for content and length.


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