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首页> 外文期刊>Hydrology and Earth System Sciences >Distributed hydrologic modeling of a sparsely monitored basin in Sardinia, Italy, through hydrometeorological downscaling
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Distributed hydrologic modeling of a sparsely monitored basin in Sardinia, Italy, through hydrometeorological downscaling

机译:通过水文气象缩小法对意大利撒丁岛一个稀疏监测盆地进行分布式水文模拟

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The water resources and hydrologic extremes in Mediterranean basins are heavily influenced by climate variability. Modeling these watersheds is difficult due to the complex nature of the hydrologic response as well as the sparseness of hydrometeorological observations. In this work, we present a strategy to calibrate a distributed hydrologic model, known as TIN-based Real-time Integrated Basin Simulator (tRIBS), in the Rio Mannu basin (RMB), a medium-sized watershed (472.5 km2) located in an agricultural area in Sardinia, Italy. In the RMB, precipitation, streamflow and meteorological data were collected within different historical periods and at diverse temporal resolutions. We designed two statistical tools for downscaling precipitation and potential evapotranspiration data to create the hourly, high-resolution forcing for the hydrologic model from daily records. Despite the presence of several sources of uncertainty in the observations and model parameterization, the use of the disaggregated forcing led to good calibration and validation performances for the tRIBS model, when daily discharge observations were available. The methodology proposed here can be also used to disaggregate outputs of climate models and conduct high-resolution hydrologic simulations with the goal of quantifying the impacts of climate change on water resources and the frequency of hydrologic extremes within medium-sized basins.
机译:地中海盆地的水资源和极端水文受到气候多变性的严重影响。由于水文响应的复杂性以及水文气象观测的稀疏性,很难对这些流域进行建模。在这项工作中,我们提出了一种策略,用于校准位于里约曼努盆地(RMB)的中型分水岭(472.5 km2)的分布式水文模型,称为基于TIN的实时综合盆地仿真器(tRIBS)。意大利撒丁岛的一个农业地区。在人民币中,降水,流量和气象数据是在不同的历史时期和不同的时间分辨率下收集的。我们设计了两种统计工具来缩减降水量和潜在的蒸散量数据,以从每日记录中为水文模型创建每小时的高分辨率强迫。尽管在观测和模型参数化中存在多种不确定性来源,但在每天排放观测可用的情况下,使用分解强迫可为tRIBS模型带来良好的校准和验证性能。这里提出的方法还可以用于分解气候模型的输出并进行高分辨率的水文模拟,目的是量化气候变化对水资源的影响以及中型盆地内极端水文发生频率。

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