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Responses of annual runoff, evaporation, and storage change to climate variability at the watershed scale

机译:分水岭尺度年径流量,蒸发量和储量变化对气候变化的响应

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摘要

In this study, the impact of interannual variability of soil water storage change on the annual water balance is assessed for 277 watersheds located in a spectrum of climate regions. The annual water storage change is quantified on the basis of water balance closure given the available data of precipitation, runoff, and evaporation estimated from remote sensing data and meteorology reanalysis. The responses of annual runoff, evaporation, and storage change to the interannual variability of precipitation and potential evaporation are then analyzed. Both runoff and evaporation sensitivities to potential evaporation are higher under energy-limited conditions, but storage change seems to be more sensitive to potential evaporation under the conditions in which water and energy are balanced. Runoff sensitivity to precipitation is higher under energy-limited conditions, but both evaporation and storage change sensitivities to precipitation are higher under water-limited conditions. Therefore, under energy-limited conditions, most of the precipitation variability is transferred to runoff variability, but under water-limited conditions, most of the precipitation variability is transferred to storage change, and some of the precipitation variability is transferred to evaporation variability. The main finding is that evaporation variability will be overestimated by assuming negligible storage change in annual water balance, particularly under water-limited conditions.
机译:在这项研究中,评估了气候分布范围内的277个流域的土壤水储量变化的年际变化对年度水平衡的影响。鉴于根据遥感数据和气象重新分析估算的可用降水,径流和蒸发量数据,基于水平衡关闭来量化年度储水量变化。然后分析了年径流量,蒸发量和储量变化对降水和潜在蒸发量年际变化的响应。在能量有限的条件下,径流和蒸发对潜在蒸发的敏感性都较高,但在水和能量平衡的条件下,储水变化对潜在蒸发的敏感性似乎更高。在能量受限的条件下,径流对降水的敏感性较高,但在水分受限的条件下,蒸发和储量变化对降水的敏感性较高。因此,在能量受限的条件下,大部分降水变化都转化为径流变化,而在水分受限的条件下,大部分降水变化都转化为储水变化,部分降水变化又转化为蒸发变化。主要发现是,通过假设年度水平衡中的存储量变化可忽略不计,尤其是在缺水条件下,蒸发量的变化将被高估。

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  • 来源
    《Water resources research》 |2012年第5期|p.W05546.1-W05546.16|共16页
  • 作者单位

    Department of Civil, Environmental, and Construction Engineering, University of Central Florida, 4000 Central Florida Blvd., Bldg. 91, Suite 211, Orlando, FL 32816-2450, USA;

    Department of Civil, Environmental, and Construction Engineering, University of Central Florida, Orlando, Florida, USA;

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