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首页> 外文期刊>Journal of hydrometeorology >Hydrologic Implications of Different Large-Scale Meteorological Model Forcing Datasets in Mountainous Regions
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Hydrologic Implications of Different Large-Scale Meteorological Model Forcing Datasets in Mountainous Regions

机译:山区不同大型气象模式强迫数据集的水文意义

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Process-based hydrologic models require extensive meteorological forcing data, including data on precipitation, temperature, shortwave and longwave radiation, humidity, surface pressure, and wind speed. Observations of precipitation and temperature are more common than other variables; consequently, radiation, humidity, pressure, and wind speed often must be either estimated using empirical relationships with precipitation and temperature or obtained from numerical weather prediction models. This study examines two climate forcing datasets using different methods to estimate radiative energy fluxes and humidity and investigates the effects of the choice of forcing data on hydrologic simulations over the mountainous upper Colorado River basin(293 472km~2). Comparisons of model simulations forced by two climate datasets illustrate that the methods used to estimate shortwave radiation impact hydrologic states and fluxes, particularly at high elevation (e.g., ~20% difference in runoff above 3000-m elevation), substantially altering the timing of snowmelt and runoff (~20 days difference) and the partitioning of precipitation between evapotranspiration and runoff. The different forcing datasets also exhibit differences in hydrologic sensitivity to interannual temperature at high elevation. The results suggest that the choice of forcing dataset is an important consideration when conducting climate impact assessments and the subsequent applications of these assessments for water resources planning and management.
机译:基于过程的水文模型需要广泛的气象强迫数据,包括有关降水,温度,短波和长波辐射,湿度,表面压力和风速的数据。降水和温度的观测比其他变量更为普遍。因此,通常必须使用与降水和温度之间的经验关系来估算辐射,湿度,压力和风速,或者必须从数值天气预报模型中获得辐射,湿度,压力和风速。本研究考察了两种使用不同方法估算辐射能通量和湿度的气候强迫数据集,并研究了强迫数据的选择对科罗拉多河上游山区(293 472km〜2)水文模拟的影响。由两个气候数据集强制进行的模型模拟的比较表明,用于估算短波辐射影响水文状态和通量的方法,特别是在高海拔(例如,海拔3000米以上的径流有约20%的差异)时,大大改变了融雪的时间和径流(相差约20天),以及蒸散量和径流之间的降水分配。不同的强迫数据集还显示出高海拔地区对年际温度的水文敏感性差异。结果表明,在进行气候影响评估以及这些评估在水资源规划和管理中的后续应用时,强制数据集的选择是一个重要的考虑因素。

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