Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Northern Hemisphere atmospheric blocking simulation in present and future climate

View through CrossRef
<p>We present a comprehensive analysis of the representation of winter and summer Northern Hempishere atmospheric blocking in global climate simulations in both present and future climate. Three generations of climate models are considered: CMIP-3 (2007), CMIP-5 (2012) and CMIP-6 (2019).<br>All models show common and extended underestimation of blocking frequencies, but a reduction of the negative biases in successive model generations is observed. However, in some specific regions and seasons as the winter European sector, even CMIP-6 models are not yet able to achieve the observed blocking frequency. For future decades the vast majority of models simulates a decrease of blocking frequency in both winter and summer, with the exception of summer blocking over the Urals and winter blocking over Western North America. Winter predicted decreases may be even larger than currently estimated considering that models with larger blocking frequencies  hence generally smaller errors - show larger reduction. Nonetheless trends computed over the historical period are weak and often contrasts with observations: this is particularly worrisome for summer Greenland blocking where models and observation significantly disagree. Finally, the intensity of global warming is related to blocking changes: wintertime European blocking is expected to decrease following larger global mean temperatures, while Western Russia summer blocking is expected to increase.</p>
Title: Northern Hemisphere atmospheric blocking simulation in present and future climate
Description:
<p>We present a comprehensive analysis of the representation of winter and summer Northern Hempishere atmospheric blocking in global climate simulations in both present and future climate.
Three generations of climate models are considered: CMIP-3 (2007), CMIP-5 (2012) and CMIP-6 (2019).
<br>All models show common and extended underestimation of blocking frequencies, but a reduction of the negative biases in successive model generations is observed.
However, in some specific regions and seasons as the winter European sector, even CMIP-6 models are not yet able to achieve the observed blocking frequency.
For future decades the vast majority of models simulates a decrease of blocking frequency in both winter and summer, with the exception of summer blocking over the Urals and winter blocking over Western North America.
Winter predicted decreases may be even larger than currently estimated considering that models with larger blocking frequencies  hence generally smaller errors - show larger reduction.
Nonetheless trends computed over the historical period are weak and often contrasts with observations: this is particularly worrisome for summer Greenland blocking where models and observation significantly disagree.
Finally, the intensity of global warming is related to blocking changes: wintertime European blocking is expected to decrease following larger global mean temperatures, while Western Russia summer blocking is expected to increase.
</p>.

Related Results

“The Earth Is Dying, Bro”
“The Earth Is Dying, Bro”
Climate Change and Children Australian children are uniquely situated in a vast landscape that varies drastically across locations. Spanning multiple climatic zones—from cool tempe...
Atmospheric Blocking in Observation and Models
Atmospheric Blocking in Observation and Models
Abstract The atmospheric circulation in the mid-latitudes of both hemispheres is usually dominated by westerly winds and by planetary-scale and shorter-scale syno...
Ethics of climate change : a normative account
Ethics of climate change : a normative account
Consider, for instance, you and your family have lived around a place where you enjoyed the flora and fauna of the land as well as the natural environment. Fishing and farming were...
Links of Atmospheric Blocking to Temperature Extremes over Ukraine
Links of Atmospheric Blocking to Temperature Extremes over Ukraine
<p>Atmospheric blocking is a phenomenon in which a large, quasi-stationary anticyclone develops in the mid-latitudes and persists for several days or longer, blocking...
Climate and Culture
Climate and Culture
Climate is, presently, a heatedly discussed topic. Concerns about the environmental, economic, political and social consequences of climate change are of central interest in academ...
Atmospheric blocking and Arctic Amplification: climatology and associated impacts in ERA5 data
Atmospheric blocking and Arctic Amplification: climatology and associated impacts in ERA5 data
<p>In the context of the accelerating global warming, surface air temperature in the Arctic region is increasing faster than the Northern Hemisphere or global average...
Response to Climate Crisis and the Role of Public Law
Response to Climate Crisis and the Role of Public Law
The state and local governments are implementing emissions trading systems and carbon neutral policies to reduce greenhouse gases. Nevertheless, the Earth is facing a climate crisi...
The Influence of the Madden–Julian Oscillation on Northern Hemisphere Winter Blocking
The Influence of the Madden–Julian Oscillation on Northern Hemisphere Winter Blocking
Abstract The persistent and quasi-stationary nature of atmospheric blocking is associated with long-lasting extreme weather conditions that influence much of the Nor...

Back to Top