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Evaluation and intercomparison of GPM-IMERG and TRMM 3B42 daily precipitation products over Greece

机译:GPM-IMERG和TRMM 3B42日沉淀产品的评估与依赖于希腊

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Accurate precipitation data at high temporal and spatial resolutions are needed for numerous applications in hydrology, water resources management and flood risk management. Satellite-based precipitation estimations/products offer a potential alternative source of rainfall data for regions with sparse ram gauge network. The recently launched Global Precipitation Measurement (GPM) mission is the successor of Tropical Rainfall Measuring Mission (TRMM) providing global precipitation estimates at spatial resolution of 0.1 degree x 0.1 degree and half-hourly temporal resolution. This study aims at evaluating the accuracy of the Integrated Multi-satellite Retrievals for GPM (LMERG) near-real-time daily product (GPM-3IMERGDL) against rain gauge observations from a network of stations distributed across Greece for the year 2016. Moreover, the GPM-IMERG product is also compared with its predecessor, the Version-7 near-real-time (3B42RT) daily product of TRMM Multisatellite Precipitation Analysis (TMPA). Several statistical metrics are used to quantitatively evaluate the performance of the satellite-based precipitation estimates against rain gauge observations. In addition, categorical statistical indices are used to assess rain detection capabilities of the two satellite products. The GPM-IMERG daily product shows reasonable agreement (CC=0.60) against rain gauge observations, with the exception of coastal areas in which low correlations are achieved. The GPM-IMERG daily precipitation product tends to overestimate rainfall, especially in complex terrain areas with high annual precipitation. In particular, rainfall estimates in western Greece have a strong positive bias. On the other hand, the TRMM 3B42 product shows low correlation (CC=0.45) against rain gauge observations and slightly underestimates rainfall. This study is a first attempt to evaluate and compare the newly introduced GPM-IMERG and the TRMM 3B42 rainfall products at daily timescale over Greece.
机译:在水文,水资源管理和洪水风险管理中的许多应用需要高时和空间分辨率处的准确降水数据。基于卫星的降水估计/产品为具有稀疏RAM规格网络的区域提供了潜在的降雨数据来源。最近推出的全球降水测量(GPM)任务是热带降雨测量任务(TRMM)的继承者,在空间分辨率下提供全球降水估计0.1×0.1度和半小时的时间分辨率。本研究旨在评估GPM(LMERG)近实时产品(GPM-3imergdl)的综合多卫星检索的准确性,从2016年分布在希腊的电台网络中的雨量仪观测。此外, GPM-IMERM产物也与其前身进行比较,该版本-7近实时(3B42RT)日常产物的TRMM多立厕降析分析(TMPA)。几种统计指标用于定量评估卫星的降水估计对雨量尺寸观察的性能。此外,分类统计指标用于评估两个卫星产品的雨量检测能力。 GPM-IMERG日常产品显示合理协议(CC = 0.60),防止雨量仪观察,除了实现低相关性的沿海地区。 GPM-IMERG每日沉淀产品往往高估降雨,特别是在具有高年度降水量的复杂地形区域。特别是,希腊西部的降雨估计具有强大的积极偏见。另一方面,TRMM 3B42产品显示雨量仪观察的低相关(CC = 0.45),略微低估降雨。本研究首次尝试评估和比较新介绍的GPM-IMERG和在每日少年时期的TRMM 3B42降雨产品。

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