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Detection of continental-scale intensification of hourly rainfall extremes

机译:大陆范围内的强化的检测每小时降水极端

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摘要

Temperature scaling studies suggest that hourly rainfall magnitudes might increase beyond thermodynamic expectations with global warming; that is, above the Clausius-Clapeyron (CC) rate of -6.5% °C. However, there is limited evidence of such increases in long-term observations. Here, we calculate continental-average changes in the magnitude and frequency of extreme hourly and daily rainfall observations from Australia over the years 1990-2013 and 1966-1989. Observed changes are compared with the uncertainty from natural variability and expected changes from CC scaling as a result of global mean surface temperature change. We show that increases in daily rainfall extremes are consistent with CC scaling, but are within the range of natural variability. In contrast, changes in the magnitude of hourly rainfall extremes are close to or exceed double the expected CC scaling, and are above the range of natural variability, exceeding CC x 3 in the tropical region (north of 23° S). These continental-scalechanges in extreme rainfall are not explained by changes in the El Nino-Southern Oscillation or changes in the seasonality of extremes. Our results indicate that CC scaling on temperature provides a severe underestimate of observed hanges in hourly rainfall extremes in Australia, with implications for assessing the impacts of extreme rainfall.
机译:温度定标的研究表明,每小时降雨量大小可能会增加热力学的期望与全球变暖;也就是说,在克劳修斯——克拉珀龙方程(CC)率°C的-6.5%。这样增加的长期的观察。在这里,我们计算的大陆的首席执行官平均变化极端的每小时的大小和频率每日降雨量观测来自澳大利亚1990 - 2013和1966 - 1989年。变化与不确定性从CC自然变化和预期的变化全球平均地表的定标结果温度变化。每日极端降水与CC一致范围内的扩展,但自然可变性。每小时降雨量级极端接近到或超过预期的两倍CC缩放和上面是自然变化的范围,超过CC x 3(北热带地区23°S)。这些continental-scalechanges极端降雨并不用El的变化来解释尼诺现象振荡或变化季节性的极端。在温度提供了一个严重的CC缩放低估了观察到的挂在每小时极端降雨在澳大利亚,与影响评估极端降水的影响。

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