Downscaled estimates of late 21st century severe weather from CCSM3

被引:87
作者
Gensini, Vittorio A. [1 ]
Mote, Thomas L. [2 ]
机构
[1] Coll DuPage, Meteorol Program, Glen Ellyn, IL 60327 USA
[2] Univ Georgia, Dept Geog, Climatol Res Lab, Athens, GA 30602 USA
关键词
SEVERE THUNDERSTORM; UNITED-STATES; TORNADO; CLIMATE; IDENTIFICATION; RESOLUTION; ENVIRONMENTS; TRACKING; HAIL; AMPLIFICATION;
D O I
10.1007/s10584-014-1320-z
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
High-resolution dynamical downscaling is used to explore 2080-2090 peak-season hazardous convective weather as simulated from the Community Climate System Model version 3. Downscaling to 4 km grid spacing is performed using the Weather Research and Forecasting model. Tornadoes, damaging wind gusts, and large hail are simulated using a model proxy at hourly intervals for locations east of the U.S. Continental Divide. Future period results are placed into context using 1980-1990 output. While a limited sample size exists, a statistically significant increase in synthetic severe weather activity is noted in March, whereas event frequency is shown to slightly increase in April, and stay the same in May. These increases are primarily found in the Mississippi, Tennessee, and Ohio River valleys. Diurnally, most of the increase in hazardous convective weather activity is shown to be in the hours surrounding local sunset. Peak-season severe weather is also shown to be more variable in the future with a skewed potential toward larger counts. Finally, modeled proxy events are compared to environmental parameters known to generate hazardous convective weather activity. These environmental conditions explain over 80 % of the variance associated with modeled reports during March-May and show an increasing future tendency. Finally, challenges associated with dynamical downscaling for purposes of resolving severe local storms are discussed.
引用
收藏
页码:307 / 321
页数:15
相关论文
共 61 条
[1]  
Alexander L.V., 2013, Climate change 2013: The physical science basis, in contribution of Working Group I (WGI) to the Fifth Assessment Report (AR5) of the Intergovernmental Panel on Climate Change (IPCC)
[2]   Future Australian Severe Thunderstorm Environments. Part II: The Influence of a Strongly Warming Climate on Convective Environments [J].
Allen, John T. ;
Karoly, David J. ;
Walsh, Kevin J. .
JOURNAL OF CLIMATE, 2014, 27 (10) :3848-3868
[3]  
[Anonymous], 2009, Global climate change impacts in the Unites States
[4]   HAVE DISASTER LOSSES INCREASED DUE TO ANTHROPOGENIC CLIMATE CHANGE? [J].
Bouwer, Laurens M. .
BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY, 2011, 92 (01) :39-+
[5]   Severe thunderstorms and climate change [J].
Brooks, H. E. .
ATMOSPHERIC RESEARCH, 2013, 123 :129-138
[6]   Increased variability of tornado occurrence in the United States [J].
Brooks, Harold E. ;
Carbin, Gregory W. ;
Marsh, Patrick T. .
SCIENCE, 2014, 346 (6207) :349-352
[7]   The spatial distribution of severe thunderstorm and tornado environments from global reanalysis data [J].
Brooks, HE ;
Lee, JW ;
Craven, JP .
ATMOSPHERIC RESEARCH, 2003, 67-8 :73-94
[8]  
Brooks HE, 2003, WEATHER FORECAST, V18, P626, DOI 10.1175/1520-0434(2003)018<0626:CEOLDT>2.0.CO
[9]  
2
[10]  
Brooks HE, 2002, WEATHER FORECAST, V17, P354, DOI 10.1175/1520-0434(2002)017<0354:DITMOC>2.0.CO