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Evaluating the performance of remote sensing precipitation products CMORPH, PERSIANN, and TMPA, in the arid region of northwest China

机译:评估西北干旱地区遥感降水产品CMORPH,PERSIANN和TMPA的性能

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摘要

The arid region of northwest China is a large area with complex topography. Hydrological research is limited by scarcity and uneven distribution of rain gauges. Satellite precipitation products provide wide coverage and high spatial-temporal resolutions, but the accuracy needs to be evaluated before application. In this paper, the reliability of four satellite precipitation products (CMORPH [Climate Prediction Center's morphing technique], PERSIANN [Precipitation Estimation from Remotely Sensed Information using Artificial Neural Networks], TRMM [Tropical Rainfall Measuring Mission] 3B42, and TRMM 3B43) were evaluated through comparison with ground data or reported values on daily, monthly, and annual scales from 2003 to 2010. Indices including frequency bias index, probability of detection, and false alarm ratio were used to evaluate recorded precipitation occurrences; relative mean bias, the correlation coefficient, and the Nash coefficient were used to assess precipitation amount. Satellite precipitation products were more accurate in the warm than in the cold season, and performed better in northern Xinjiang than in other regions during the cold season. CMORPH and PERSIANN tended to overestimate precipitation. TRMM 3B42 and TRMM 3B43 performed best because the former most accurately detected precipitation occurrences on a daily scale, and both produced accurate space-time distribution of precipitation and the best consistency with rain gauge observations. Only a few monthly precipitation values for TRMM 3B42 and TRMM 3B43, and annual precipitation values for TRMM 3B42 were with satisfactory precision. TRMM3B42 and TRMM 3B43 are therefore recommended, but correction will be needed before application. Factors including elevation, relative relief, longitude, and latitude had significant effects on the performance of satellite precipitation products, and these factors may be helpful in correcting satellite precipitation.
机译:西北干旱地区地势复杂。水文研究受到雨量计稀缺和分布不均的限制。卫星降水产品提供了广泛的覆盖范围和高的时空分辨率,但是在应用之前需要对其准确性进行评估。在本文中,评估了四种卫星降水产品(CMORPH(气候预测中心的变型技术),PERSIANN(使用人工神经网络从遥感信息中进行降水估算),TRMM(热带降雨测量任务)3B42和TRMM 3B43)的可靠性。通过与2003年至2010年日,月和年尺度的地面数据或报告值进行比较。使用频偏指数,检测概率和误报率等指标评估记录的降水发生情况。相对平均偏差,相关系数和纳什系数用于评估降水量。卫星降水产品在温暖季节比在寒冷季节更为准确,在新疆北部,在寒冷季节则比其他地区表现更好。 CMORPH和PERSIANN倾向于高估降水。 TRMM 3B42和TRMM 3B43之所以表现最佳,是因为前者最准确地检测到了每天的降水量,并且都产生了精确的时空分布,并且与雨量计的观测结果保持了最佳一致性。 TRMM 3B42和TRMM 3B43的仅有几个月降水值以及TRMM 3B42的年降水值具有令人满意的精度。因此,建议使用TRMM3B42和TRMM 3B43,但在应用前需要进行校正。海拔,相对起伏,经度和纬度等因素对卫星降水产品的性能有重大影响,这些因素可能有助于校正卫星降水。

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  • 来源
    《Theoretical and applied climatology》 |2014年第3期|429-445|共17页
  • 作者

    Yanfen Yang; Yi Luo;

  • 作者单位

    Key Laboratory of Ecosystem Network Observation and Modeling,Institute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences, Beijing 100101, China,University of Chinese Academy of Sciences, Beijing 100049, China;

    Key Laboratory of Ecosystem Network Observation and Modeling,Institute of Geographic Sciences and Natural Resources Research,Chinese Academy of Sciences, Beijing 100101, China;

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