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Sensitivity of regional hydrology to climate changes, with application to the Illinois River basin

机译:区域水文学对气候变化的敏感性及其在伊利诺伊流域的应用

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摘要

This paper investigates the sensitivity of regional hydrology to climate change using a physically based model. The model partitions precipitation into surface runoff, groundwater runoff, and evapotranspiration by describing these fluxes first at the local instantaneous scale and then integrating over spatial and temporal distributions of soil saturation, precipitation, and wet environment evapotranspiration to calculate basin-wide climatic mean fluxes and soil saturation. The sensitivities of the mean fluxes are calculated by changing the mean precipitation and wet environment evapotranspiration. The model is applied to the Illinois River basin, and the impact of the basin's characteristics on the sensitivities is studied. For a relatively broad range of conditions the runoff processes tend to amplify climate change signals in precipitation and wet environment evapotranspiration, while evapotranspiration processes tend to dampen the same signals. These results indicate that it may be easier to detect climate changes in runoff measurements than in precipitation measurements.
机译:本文研究了基于物理模型的区域水文学对气候变化的敏感性。该模型通过首先在局部瞬时尺度上描述这些通量,然后对土壤饱和度,降水量和湿环境蒸散量的时空分布进行积分,以计算流域范围内的气候平均通量和通量,将降水分为地表径流,地下水径流和蒸散量。土壤饱和度。通过改变平均降水量和湿润环境蒸散量来计算平均通量的敏感性。将该模型应用于伊利诺伊流域,研究了流域特征对敏感性的影响。对于相对较宽的条件范围,径流过程往往会放大降水和潮湿环境蒸散中的气候变化信号,而蒸散过程往往会衰减相同的信号。这些结果表明,在径流测量中比在降水测量中更容易检测到气候变化。

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