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Error features of the hourly GSMaP multi-satellite precipitation estimates over nine major basins of China

机译:中国九个主要流域每小时GSMaP多卫星降水估计的误差特征

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摘要

As one of the current mainstream satellite precipitation estimates, the Global Satellite Mapping of Precipitation (GSMaP) system of Japan has been developed to produce high-precision and high-resolution global rainfall products by integrating almost all of the available precipitation-related satellite sensors. To quantify the error features of GSMaP estimates and understand their hydrological potentials at short temporal scale, three widely used GSMaP products (GSMaP_NRT, GSMaP_MVK, and GSMaP_Gauge) were comprehensively investigated at 1 hourly and 0.1° × 0.1° resolutions over nine major basins of China. Assessment results show that GSMaP_NRT apparently underestimates the rainfall amounts, while GSMaP_MVK with both forward and backward propagation processes algorithm can effectively capture the most rainfall events and has the lower error and bias. GSMaP_Gauge displays the best error stability and error structure over most basins of China and also exhibits stronger rain-rate dependencies. However, its unexpected positive biases in southeastern basins, which mainly come from the overestimation at lower rain rates, still need to improve further in future developments. We expected the results documented here can both provide the retrieval developers with some valuable references and offer hydrologic users of GSMaP data a better understanding of their error features and potential utilizations for various hydrological applications.
机译:作为当前主流卫星降水估计之一,日本的全球降水卫星测绘(GSMaP)系统已通过集成几乎所有可用的与降水有关的卫星传感器来生产高精度和高分辨率的全球降水产品。为了量化GSMaP估计的误差特征并了解它们在短时间尺度上的水文潜力,在中国9个主要流域以1小时和0.1°×0.1°的分辨率对三种广泛使用的GSMaP产品(GSMaP_NRT,GSMaP_MVK和GSMaP_Gauge)进行了全面研究。 。评估结果表明,GSMaP_NRT明显低估了降雨量,而同时具有正向和反向传播过程算法的GSMaP_MVK可以有效地捕获最多的降雨事件,并且误差和偏差较低。 GSMaP_Gauge在中国大多数盆地中显示出最佳的误差稳定性和误差结构,并且还表现出较强的降雨率依赖性。但是,其在东南盆地的出乎意料的积极偏见主要来自较低降雨率的高估,在未来的发展中仍需进一步改善。我们希望这里记录的结果既可以为检索开发人员提供一些有价值的参考,也可以为GSMaP数据的水文用户更好地理解其错误特征以及在各种水文应用中的潜在利用。

著录项

  • 来源
    《Nordic hydrology》 |2018年第4期|761-779|共19页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 04:09:00

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