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首页> 外文期刊>Pure and Applied Geophysics >Comparisons of Gauge, TMPA and IMERG Products for Monsoon and Tropical Cyclone Precipitation in Southern China
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Comparisons of Gauge, TMPA and IMERG Products for Monsoon and Tropical Cyclone Precipitation in Southern China

机译:南方季风和热带旋风沉淀的仪表,TMPA和IMERG产品的比较

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The Tropical Rainfall Measuring Mission (TRMM) Multi-satellite Precipitation Analysis (TMPA) and Integrated Multi-satellite Retrievals for Global Precipitation Measurement (GPM) Mission (IMERG) products are compared against 447 quality-controlled rain gauges in southern China (SC) during summer (May to August) for the period 2014-2016. The differences of TMPA and IMERG in measuring the monsoon and tropical cyclone (TC) precipitation, considering the mean spatial patterns, and rainfall intensities are evaluated quantitatively. Statistical analysis shows that IMERG has much higher correlations of precipitation frequency (PF) with gauge observations for monsoon and TC precipitation. However, both satellite-based products show much poorer capability in estimating conditional rainfall and PF for TC precipitation, especially for estimating large conditional rainfall in TC systems. The capability of capturing the precipitation events at different rainfall intensities decreases with the increase of rainfall threshold for both monsoon and TC precipitation. Generally, IMERG exhibits a superior ability to detect precipitation at different rainfall intensities than TMPA. In depicting the diurnal cycles, IMERG shows a much better performance in estimating rainfall and PF for monsoon precipitation than TMPA by revealing the comparable diurnal amplitudes to the rain gauges, whereas TMPA fails to accurately estimate the early morning rainfall and PF. As a successor to TMPA, IMERG is a reliable source of precipitation estimates for future studies on precipitation meteorology.
机译:热带降雨测量任务(TRMM)多卫星降水分析(TMPA)和全球降水测量(GPM)使命(IMERD)产品的集成多卫星检索(IMERD)产品比较了中国南部(SC)的447尺7个质量控制的雨量仪夏季(五月至8月)2014 - 2016年期间。考虑到平均空间模式的TMPA和IMERG在测量季风和热带气旋(TC)降水中的差异,定量评估了平均空间模式和降雨强度。统计分析表明,IMERG对季风和TC沉淀的测量仪观察具有更高的沉淀频率(PF)相关性。然而,基于卫星的产品均估计条件降雨和PF用于TC降水的较差能力,特别是在TC系统中估算大型条件降雨。在不同的降雨强度下捕获降水事件的能力随着季风和TC降水的降雨阈值的增加而降低。通常,Imerc表现出优异的能力,以在不同的降雨强度下检测沉淀的能力而不是TMPA。在描绘昼夜循环时,IMERG通过揭示雨量仪的可比较的差值幅度来估算季风沉淀的降雨和PF来估算季风沉淀的更好的性能,而TMPA未能准确估计清晨降雨和PF。作为TMPA的继任者,IMERG是对降水气象学的未来研究的可靠降水估算来源。

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