首页> 外文期刊>Journal of hydrometeorology >Statistical and Hydrological Comparisons between TRMM and GPM Level-3 Products over a Midlatitude Basin: Is Day-1 IMERG a Good Successor for TMPA 3B42V7?
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Statistical and Hydrological Comparisons between TRMM and GPM Level-3 Products over a Midlatitude Basin: Is Day-1 IMERG a Good Successor for TMPA 3B42V7?

机译:中纬度盆地TRMM和GPM 3级产品之间的统计和水文比较:IMERG第1天是否是TMPA 3B42V7的良好继承者?

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The goal of this study is to quantitatively intercompare the standard products of the Tropical Rainfall Measuring Mission (TRMM) Multisatellite Precipitation Analysis (TMPA) and its successor, the Global Precipitation Measurement (GPM) mission Integrated Multisatellite Retrievals for GPM (IMERG), with a dense gauge network over the midlatitude Ganjiang River basin in southeast China. In general, direct comparisons of the TMPA 3B42V7, 3B42RT, and GPM Day-1 IMERG estimates with gauge observations over an extended period of the rainy season (from May through September 2014) at 0.25 degrees and daily resolutions show that all three products demonstrate similarly acceptable (similar to 0.63) and high (0.87) correlation at grid and basin scales, respectively, although 3B42RT shows much higher overestimation. Both of the post-real-time corrections effectively reduce the bias of Day-1 IMERG and 3B42V7 to single digits of underestimation from 20+% overestimation of 3B42RT. The Taylor diagram shows that Day-1 IMERG and 3B42V7 are comparable at grid and basin scales. Hydrologic assessment with the Coupled Routing and Excess Storage (CREST) hydrologic model indicates that the Day-1 IMERG product performs comparably to gauge reference data. In many cases, the IMERG product outperforms TMPA standard products, suggesting a promising prospect of hydrologic utility and a desirable hydrologic continuity from TRMM-era product heritages to GPM-era IMERG products. Overall, this early study highlights that the Day-1 IMERG product can adequately substitute TMPA products both statistically and hydrologically, even with its limited data availability to date, in this well-gauged midlatitude basin. As more IMERG data are released, more studies to explore the potential of GPM-era IMERG in water, weather, and climate research are urgently needed.
机译:这项研究的目的是将热带雨量测量任务(TRMM)多卫星降水分析(TMPA)及其后继者全球降水测量(GPM)任务综合多卫星GPM检索(IMERG)的标准产品进行定量比较。中国东南部中纬度赣江流域的高密度标尺网络。通常,将TMPA 3B42V7、3B42RT和GPM第1天IMERG估计值与雨季(从2014年5月至2014年9月)的延长雨季(从0.25度)进行的实测观测值进行直接比较,并且每日分辨率显示,这三种产品均显示出相似的结果尽管3B42RT显示出更高的高估,但在网格和流域尺度上的相关性分别可接受(类似于0.63)和高相关性(0.87)。两种实时后校正均有效地将Day-1 IMERG和3B42V7的偏差从3B42RT的高估20%以上降低到个位数的低估。泰勒图显示,Day-1 IMERG和3B42V7在网格和盆地尺度上具有可比性。使用耦合路由和超额存储(CREST)水文模型进行水文评估表明,Day-1 IMERG产品在测量参考数据方面具有可比性。在许多情况下,IMERG产品的性能要优于TMPA标准产品,这表明从TRMM时代的产品传统到GPM时代的IMERG产品,水文应用前景广阔,并且水文连续性理想。总体而言,这项早期研究突显出,在这个纬度较高的中纬度盆地中,即使迄今为止数据可用性有限,Day-1 IMERG产品仍可以在统计和水文上充分替代TMPA产品。随着更多IMERG数据的发布,迫切需要进行更多研究以探索GPM时代IMERG在水,天气和气候研究中的潜力。

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