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Regional changes to lake effect snow levels in New York State under projected future climate conditions.

机译:在预计的未来气候条件下,纽约州的湖泊影响雪水平的区域变化。

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摘要

Lake-effect snowstorms are an important element of climate and weather in the Great Lakes region of North America. Here, I investigate how lake-effect snow levels could change in the future with anthropogenic climate change as predicted by a regional climate model (RegCM3) driven by two different sets of global climate model output (from GFDL CM2.1 and CGCM3, experiments run as part of the North American Regional Climate Change Assessment Program, Phase II). I analyze a subset of the domain focused on the Great Lakes area, paying particular attention to the southeastern Lake Ontario Snowbelt and the southeastern Lake Erie Snowbelt, both of which are mainly within New York State. My results show a decrease in lake-effect snow cover in the future (2040-2070) compared to the recent past (1970-2000) for this region. Total precipitation levels are shown to not change significantly, so it is likely that lake-effect snowstorms will be replaced largely by rain in the future. Both magnitudes of values as well as trends for snow levels in specific cities varied significantly depending on which global climate model output was used to drive RegCM3, pointing to a possibly serious source of uncertainty and error in regional climate modeling studies that do not utilize multiple global climate model output.
机译:受湖影响的暴风雪是北美大湖地区气候和天气的重要因素。在这里,我研究了由区域气候模型(RegCM3)预测的,人为气候变化在未来的湖泊影响降雪水平如何变化,该模型由两组不同的全球气候模型输出(来自GFDL CM2.1和CGCM3)驱动作为北美地区气候变化评估计划第二阶段的一部分)。我分析了以大湖地区为重点的领域子集,特别关注了东南安大略湖雪带和东南伊利湖雪带,这两个区域均位于纽约州内。我的结果表明,与该地区最近的过去(1970-2000年)相比,未来(2040-2070年)的湖面积雪减少了。结果表明总降水量变化不大,因此将来可能会被雨水取代大部分受湖影响的暴风雪。取决于使用哪种全球气候模型输出来驱动RegCM3,特定城市的值大小和趋势都存在显着差异,这表明在未利用多个全球气候模型的区域气候模型研究中,可能存在严重的不确定性和误差来源。气候模型输出。

著录项

  • 作者

    Uzilov, Kathleen.;

  • 作者单位

    University of California, Santa Cruz.;

  • 授予单位 University of California, Santa Cruz.;
  • 学科 Hydrologic sciences.;Meteorology.;Climate change.;Atmospheric sciences.
  • 学位 M.S.
  • 年度 2013
  • 页码 39 p.
  • 总页数 39
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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