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Sensitivity of extreme precipitation to temperature: the variability of scaling factors from a regional to local perspective

机译:极端降水对温度的敏感性:从区域角度到局部角度的比例因子变化

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摘要

Potential increases in extreme rainfall induced hazards in a warming climate have motivated studies to link precipitation intensities to temperature. Increases exceeding the Clausius–Clapeyron (CC) rate of 6–7%/°C_(–1)are seen in short-duration, convective, high-percentile rainfall at mid latitudes, but the rates of change cease or revert at regionally variable threshold temperatures due to moisture limitations. It is unclear, however, what these findings mean in term of the actual risk of extreme precipitation on a regional to local scale. When conditioning precipitation intensities on local temperatures, key influences on the scaling relationship such as from the annual cycle and regional weather patterns need better understanding. Here we analyze these influences, using sub-hourly to daily precipitation data from a dense network of 189 stations in south-eastern Austria. We find that the temperature sensitivities in the mountainous western region are lower than in the eastern lowlands. This is due to the different weather patterns that cause extreme precipitation in these regions. Sub-hourly and hourly intensities intensify at super-CC and CC-rates, respectively, up to temperatures of about 17 °C. However, we also find that, because of the regional and seasonal variability of the precipitation intensities, a smaller scaling factor can imply a larger absolute change in intensity. Our insights underline that temperature precipitation scaling requires careful interpretation of the intent and setting of the study. When this is considered, conditional scaling factors can help to better understand which influences control the intensification of rainfall with temperature on a regional scale.
机译:在气候变暖的情况下,极端降雨引起的潜在危险增加,促使人们进行研究以将降雨强度与温度联系起来。在中纬度地区的短时,对流,高百分率降雨中,克劳修斯-克拉珀龙(CC)的增长率超过6–7%/°C _(– 1),但变化的速度在区域变化时停止或恢复由于水分限制而导致的极限温度。然而,目前尚不清楚这些发现对地区到地方范围内极端降水的实际风险意味着什么。在根据当地温度调节降水强度时,对比例关系的关键影响(如年度周期和区域天气模式)需要更好地了解。在这里,我们使用来自奥地利东南部189个站点的密集网络的每小时不到一小时的每日降水数据来分析这些影响。我们发现西部山区的温度敏感性低于东部低地。这是由于不同的天气模式导致这些地区出现极端降雨。亚小时和每小时的强度分别以超级CC和CC速率增强,直至约17°C的温度。但是,我们还发现,由于降水强度的区域和季节变化,比例因子较小可能意味着强度的绝对变化较大。我们的见解强调,温度降水的结垢需要仔细解释研究的意图和背景。考虑到这一点,有条件的比例因子可以帮助更好地了解在区域范围内哪些因素可以控制降雨随温度的增强。

著录项

  • 来源
    《Climate dynamics》 |2018年第12期|3981-3994|共14页
  • 作者

    K. Schroeer; G. Kirchengast;

  • 作者单位

    Wegener Center for Climate and Global Change (WEGC), University of Graz,FWF-DK Climate Change, University of Graz;

    Wegener Center for Climate and Global Change (WEGC), University of Graz,FWF-DK Climate Change, University of Graz,Institute for Geophysics, Astrophysics, and Meteorology (IGAM), Institute of Physics, University of Graz;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Precipitation; Temperature; Alps; Climate; Variability; Risk; Intensity;

    机译:降水;温度;阿尔卑斯山;气候;变异性;风险;强度;
  • 入库时间 2022-08-18 03:31:36

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