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Comparison of Downscaled Precipitation Data over a Mountainous Watershed: A Case Study in the Heihe River Basin

机译:山地流域降尺度降水数据比较-以黑河流域为例

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摘要

Development of an accurate precipitation dataset is of primary importance for regional hydrological process studies and water resources management. Here, four regional precipitation products are evaluated for the Heihe River basin (HRB): 1) a spatially and temporally disaggregated Climate Prediction Center Merged Analysis of Precipitation (CMAP) at 0.25° spatial resolution (DCMAP); 2) a fusion product obtained by merging China Meteorological Administration station data and Tropical Rainfall Measuring Mission precipitation data at 0.1° spatial resolution supported by the Institute of Tibetan Plateau Research (ITP), Chinese Academy of Sciences (ITP-F); 3) a disaggregated CMAP downscaled by a statistical meteorological model tool at 1-km spatial resolution (DCMAP-MicroMet); and 4) a Weather Research and Forecasting (WRF) Model simulation with 5-km resolution (WRF-P). The validation metrics include spatial pattern, temporal pattern, error analysis with respect to observation data, and precipitation event verification indicators. The results indicate that 1) precipitation from the DCMAP product may not be suitable for water cycle studies at the watershed scale because of its coarser spatial resolution and 2) ITP-F, WRF-P, and DCMAP-MicroMet precipitation products generally show similar spatial-temporal patterns in HRB but have varying performances between different subbasins.
机译:开发准确的降水数据集对于区域水文过程研究和水资源管理至关重要。在此,对黑河流域(HRB)的四个区域降水产品进行了评估:1)时空分解的气候预测中心在0.25°空间分辨率(DCMAP)下的降水合并分析(CMAP); 2)由中国科学院青藏高原研究所(ITP-F)支持的中国气象局台站数据和空间降水分辨率为0.1°的热带降雨测量任务降水数据合并得到的融合产品; 3)通过统计气象模型工具按1公里空间分辨率(DCMAP-MicroMet)缩减的分解后的CMAP;和4)5公里分辨率(WRF-P)的天气研究和预报(WRF)模型模拟​​。验证指标包括空间模式,时间模式,关于观测数据的误差分析以及降水事件验证指标。结果表明:1)DCMAP产品的降水可能由于其较粗糙的空间分辨率而可能不适合在流域尺度上进行水循环研究; 2)ITP-F,WRF-P和DCMAP-MicroMet降水产品通常显示出相似的空间分布HRB中的时间模式,但在不同子盆地之间具有不同的性能。

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