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首页> 外文期刊>Remote Sensing >Assessment of GPM-IMERG and Other Precipitation Products against Gauge Data under Different Topographic and Climatic Conditions in Iran: Preliminary Results
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Assessment of GPM-IMERG and Other Precipitation Products against Gauge Data under Different Topographic and Climatic Conditions in Iran: Preliminary Results

机译:根据伊朗不同地形和气候条件下的轨距数据对GPM-IMERG和其他降水产品的评估:初步结果

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The new generation of weather observatory satellites, namely Global Precipitation Measurement (GPM) constellation satellites, is the lead observatory of the 10 highly advanced earth orbiting weather research satellites. Indeed, GPM is the first satellite that has been designed to measure light rain and snowfall, in addition to heavy tropical rainfall. This work compares the final run of the Integrated Multi-satellitE Retrievals for GPM (IMERG) product, the post real time of TRMM and Multi-satellite Precipitation Analysis (TMPA-3B42) and the Era-Interim product from the European Centre for Medium Range Weather Forecasts (ECMWF) against the Iran Meteorological Organization (IMO) daily precipitation measured by the synoptic rain-gauges over four regions with different topography and climate conditions in Iran. Assessment is implemented for a one-year period from March 2014 to February 2015. Overall, in daily scale the results reveal that all three products lead to underestimation but IMERG performs better than other products and underestimates precipitation slightly in all four regions. Based on monthly and seasonal scale, in Guilan all products, in Bushehr and Kermanshah ERA-Interim and in Tehran IMERG and ERA-Interim tend to underestimate. The correlation coefficient between IMERG and the rain-gauge data in daily scale is far superior to that of Era-Interim and TMPA-3B42. On the basis of daily timescale of bias in comparison with the ground data, the IMERG product far outperforms ERA-Interim and 3B42 products. According to the categorical verification technique in this study, IMERG yields better results for detection of precipitation events on the basis of Probability of Detection (POD), Critical Success Index (CSI) and False Alarm Ratio (FAR) in those areas with stratiform and orographic precipitation, such as Tehran and Kermanshah, compared with other satellite/model data sets. In particular, for heavy precipitation (>15 mm/day), IMERG is superior to the other products in all study areas and could be used in future for meteorological and hydrological models, etc .
机译:新一代的气象观测卫星,即全球降水量测量(GPM)星座卫星,是10颗高度先进的地球轨道气象研究卫星的主要观测站。的确,GPM是第一颗设计用来测量除大雨以外的小雨和降雪的卫星。这项工作比较了GPM(IMERG)产品集成多卫星检索,最后实时TRMM和多卫星降水分析(TMPA-3B42)以及欧洲中期研究中心的Era-Interim产品的最终运行情况天气预报(ECMWF)针对伊朗气象组织(IMO)的每日降水量,由天气雨量计在伊朗四个具有不同地形和气候条件的地区进行测量。评估从2014年3月到2015年2月进行,为期一年。总体而言,每天的结果表明,这三种产品均导致低估,但IMERG的表现优于其他产品,并且在所有四个地区均略微低估了降水。根据月度和季节规模,在吉兰岛的Bushehr和Kermanshah ERA-Interim以及德黑兰的所有产品,IMERG和ERA-Interim都会被低估。 IMERG与日尺度雨量数据之间的相关系数远远优于Era-Interim和TMPA-3B42。根据每日偏差与地面数据的比较,IMERG产品的性能远远超过ERA-Interim和3B42产品。根据这项研究中的分类验证技术,在具有地层和地形的区域,IMERG在探测概率(POD),关键成功指数(CSI)和误报率(FAR)的基础上产生了更好的降水事件检测结果与其他卫星/模型数据集相比,德黑兰和克尔曼沙赫等降雨。特别是在强降水(> 15毫米/天)的情况下,IMERG在所有研究领域都优于其他产品,并且将来可用于气象和水文模型等。

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