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Comprehensive evaluation of satellite and reanalysis precipitation products over the eastern Tibetan plateau characterized by a high diversity of topographies

机译:卫星和再分析沉淀产品综合评价东藏高原的特点是高度多样化的地形

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Quantitative evaluation of the performance of satellite and reanalysis precipitation datasets is challenging but indispensable for hydroclimate research on poorly gauged regions. This study comprehensively assesses satellite precipitation products (IMERG_E, IMERG_L, IMERG_F, CHIRPS, TRMM_3B42, TRMM_3B42RT) and reanalysis product (ERA-Interim) over the eastern Tibetan Plateau from 2008 to 2019. Each dataset's accuracy features are evaluated based on gauge observations (184 rain gauges) at various temporal scales (i.e., daily, monthly, and annual), elevations and precipitation intensities. Especially, on the topography's influence on precipitation, the spatial consistency is analyzed based on the extended triple collocation (ETC) approach along with the gaugebased gridded precipitation dataset. The results show that: (1) IMERG_F is more consistent with gauge observations and achieves the best overall performance. All products overestimate precipitation amounts, they present lower CCs (CC: 0.13-0.42) with gauge observations at daily scale, whereas show higher (CC:0.68-0.93) and acceptable CCs (CC: 0.49-0.79) at monthly and annual scale, respectively. (2) Seven products have ability to detect precipitation occurrence and extreme precipitation, the probability of detection is higher for tiny and light precipitation events and the false alarm rate is larger for extreme precipitation events. In addition, the ability of precipitation products to reproduce heavy precipitation events, both in terms of the occurrence date or precipitation amount, needs to be improved. (3) The accuracy of precipitation products varies with elevation, which has relatively good performance in high elevations. (4) The ETC analysis suggests that the accuracies are increased abruptly from the eastern edge of the Tibetan Plateau to the Sichuan Basin because of the sudden drop of terrain. ERA-Interim exhibits better performance than others, indicating reanalysis product has excellent potential in complex terrain regions. This study demonstrates new findings on the uncertainties of various precipitation products over topographical complex mountainous.
机译:定量评估卫星和再分析沉淀数据集的性能是挑战性的,但对于不良仪表区域的水池性研究是挑战性的,这是必不可少的。本研究全面评估2008年至2019年在东藏高原东部卫星降水产物(IMERG_E,IMERG_L,IMERG_F,CHIRPS,TRMM_3B42,TRMM_3B42RT)和再分析产品(ERA-INSTIM)。每个数据集的准确性功能都是根据仪表观测评估的(184雨仪)在各种时间尺度(即每日,每月和年度),海拔和降水强度。特别是,在地形对降水的影响下,基于扩展三重搭配(ETC)方法以及量大的网格化降水数据集来分析空间一致性。结果表明:(1)IMERG_F与仪表观测更符合,实现最佳整体性能。所有产品高估降水量,它们在日常规模上呈现下型CCS(CC:0.13-0.42),每月显示更高(CC:0.68-0.93)和可接受的CCS(CC:0.49-0.79),分别。 (2)七种产品有能力检测降水发生和极端降水,对于微小和光降水事件的检测可能性较高,对于极端降水事件而言,误报率较大。此外,需要改善沉淀产品在发生日期或降水量方面再现重度降水事件的能力。 (3)降水量的准确性随着高度高度的高度而异。 (4)ETC分析表明,由于突然的地形滴下,精度从藏高原的东部边缘突然增加到四川盆地。 ERA临时表现出比其他人的性能更好,表明Reanalysis Product在复杂地形区域具有优异的潜力。本研究表明,在地形复杂山区的各种降水产品的不确定性上表现出新的发现。

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