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首页> 外文期刊>Journal of hydrometeorology >An Intercomparison and Validation of High-Resolution Satellite Precipitation Estimates with 3-Hourly Gauge Data
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An Intercomparison and Validation of High-Resolution Satellite Precipitation Estimates with 3-Hourly Gauge Data

机译:3小时制数据的高分辨率卫星降水估计的比对和验证

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The last several years have seen the development of a number of new satellite-derived, globally complete, high-resolution precipitation products with a spatial resolution of at least 0.25 degrees and a temporal resolution of at least 3-hourly. These products generally merge geostationary infrared data and polar-orbiting passive microwave data to take advantage of the frequent sampling of the infrared and the superior quality of the microwave. The Program to Evaluate High Resolution Precipitation Products (PEHRPP) was established to evaluate and intercompare these datasets at a variety of spatial and temporal resolutions with the intent of guiding dataset developers and informing the user community regarding the error characteristics of the products. As part of this project, the authors have performed a subdaily intercomparison of five high-resolution datasets [Climate Prediction Center morphing (CMORPH) technique; Tropical Rainfall Measuring Mission Multisatellite Precipitation Analysis (TMPA); Naval Research Laboratory (NRL) blended technique; National Environmental Satellite, Data, and Information Service Hydro-Estimator; and Precipitation Estimation from Remotely Sensed Information using Artificial Neural Networks (PERSIANN)] with existing subdaily gauge data over the United States and the Pacific Ocean. Results show that these data are effective at representing high-resolution precipitation, with correlations against 3-hourly gauge data as high as 0.7 for CMORPH, which had the highest correlations with the validation data. Biases are relatively high for most of the datasets over land (apart from the TMPA, which is gauge adjusted) and ocean, with a general tendency to overestimate warm season rainfall over the United States and to underestimate rainfall over the tropical Pacific Ocean. Additionally, all the products studied faithfully resolve the diurnal cycle of precipitation when compared with the validation data.
机译:在过去的几年中,已经开发了许多新的卫星衍生的,全球完整的高分辨率降水产品,这些产品的空间分辨率至少为0.25度,时间分辨率至少为3小时。这些产品通常将对地静止红外数据和极轨无源微波数据合并,以利用红外的频繁采样和微波的卓越品质。建立了评估高分辨率沉淀产品的程序(PEHRPP),以在各种空间和时间分辨率下评估和相互比较这些数据集,目的是指导数据集开发人员并就产品的错误特征通知用户社区。作为该项目的一部分,作者每天对五个高分辨率数据集进行了比对[气候预测中心变形(CMORPH)技术;热带降雨测量任务多卫星降水分析(TMPA);海军研究实验室(NRL)混合技术;国家环境卫星,数据和信息服务水电估算器;使用人工神经网络(PERSIANN)进行遥感信息的降水和降水估计],并使用美国和太平洋上现有的次日尺度数据。结果表明,这些数据可有效代表高分辨率的降水,与3小时尺度数据的相关性对于CMORPH而言高达0.7,与验证数据的相关性最高。陆地(除TMPA以外,已对量表进行了调整)和海洋上的大多数数据集的偏差都相对较高,通常倾向于高估美国的暖季降雨,而低估热带太平洋的降雨。此外,与验证数据相比,所有研究的产品都能忠实地解决降水的昼夜循环。

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