Temporal Trends in Absolute and Relative Extreme Temperature Events Across North America

被引:61
作者
Sheridan, Scott C. [1 ]
Lee, Cameron C. [1 ]
机构
[1] Kent State Univ, Dept Geog, Kent, OH 44242 USA
基金
美国海洋和大气管理局;
关键词
HEAT; MORTALITY; US;
D O I
10.1029/2018JD029150
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
In this research, we define extreme temperature events using a recently defined excess heat factor, based on the exceedance of apparent temperature beyond the 95th percentile along with an acclimatization factor, to define extreme heat events (EHE). We extend the calculation to assess cold and develop relative metrics to complement the absolute metrics, where extremeness is based on conditions relative to season. We thus examine extreme cold events (ECE), relative extreme heat events, and relative extreme cold events in addition to EHE. We present a climatology of these variables for North America, followed by analyses of trends from 1980 to 2016. While EHE and ECE are found in the core of summer and winter, respectively, relative events tend to have a broader seasonality. Trends in relative extreme heat events and EHE are upward, and relative extreme cold events and ECE are downward; the relative events are changing more rapidly than the absolute events. Plain Language Summary One of the most critical ways in which weather conditions influence the environment is through extreme temperature events. While excessive heat and cold conditions have been amply studied, events that are extreme relative to the time of year have been less examined. These relative events may grab fewer headlines but can have important impacts on the environment, agriculture, and human health. In this research, we present a climatology of cold and heat events, both absolute and relative, for North America, followed by an analysis how they have changed from 1980 to 2016. Results show an increase in heat events and decrease in cold events across most of the United States and Canada. More interestingly, the relative events are changing slightly more rapidly than the absolute events.
引用
收藏
页码:11889 / 11898
页数:10
相关论文
共 34 条
  • [1] Spring plant phenology and false springs in the conterminous US during the 21st century
    Allstadt, Andrew J.
    Vavrus, Stephen J.
    Heglund, Patricia J.
    Pidgeon, Anna M.
    Thogmartin, Wayne E.
    Radeloff, Volker C.
    [J]. ENVIRONMENTAL RESEARCH LETTERS, 2015, 10 (10):
  • [2] Heat Waves in the United States: Mortality Risk during Heat Waves and Effect Modification by Heat Wave Characteristics in 43 U.S. Communities
    Anderson, G. Brooke
    Bell, Michelle L.
    [J]. ENVIRONMENTAL HEALTH PERSPECTIVES, 2011, 119 (02) : 210 - 218
  • [3] Ault T.R., 2013, EOS T AM GEOPHYS UN, V94, P181, DOI [DOI 10.1002/2013EO200001, 10.1002/2013EO200001]
  • [4] The United States "warming hole": Quantifying the forced aerosol response given large internal variability
    Banerjee, A.
    Polvani, L. M.
    Fyfe, J. C.
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2017, 44 (04) : 1928 - 1937
  • [5] Trends in U.S. Surface Humidity, 1930-2010
    Brown, Paula J.
    DeGaetano, Arthur T.
    [J]. JOURNAL OF APPLIED METEOROLOGY AND CLIMATOLOGY, 2013, 52 (01) : 147 - 163
  • [6] Characterizing the effect of summer temperature on heatstroke-related emergency ambulance dispatches in the Kanto area of Japan
    Chris Fook Sheng Ng
    Ueda, Kayo
    Ono, Masaji
    Nitta, Hiroshi
    Takami, Akinori
    [J]. INTERNATIONAL JOURNAL OF BIOMETEOROLOGY, 2014, 58 (05) : 941 - 948
  • [7] Warm Arctic episodes linked with increased frequency of extreme winter weather in the United States
    Cohen, Judah
    Pfeiffer, Karl
    Francis, Jennifer A.
    [J]. NATURE COMMUNICATIONS, 2018, 9
  • [8] Cohen J, 2014, NAT GEOSCI, V7, P627, DOI [10.1038/NGEO2234, 10.1038/ngeo2234]
  • [9] Forced and Internal Components of Winter Air Temperature Trends over North America during the past 50 Years: Mechanisms and Implications
    Deser, Clara
    Terray, Laurent
    Phillips, Adam S.
    [J]. JOURNAL OF CLIMATE, 2016, 29 (06) : 2237 - 2258
  • [10] Health risks of warming of 1.5°C, 2°C, and higher, above pre-industrial temperatures
    Ebi, Kristie L.
    Hasegawa, Tomoko
    Hayes, Katie
    Monaghan, Andrew
    Paz, Shlomit
    Berry, Peter
    [J]. ENVIRONMENTAL RESEARCH LETTERS, 2018, 13 (06):