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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Evaluation of satellite-estimated surface longwave radiation using ground-based observations
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Evaluation of satellite-estimated surface longwave radiation using ground-based observations

机译:评价satellite-estimated表面长波使用地面辐射观测

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摘要

This study evaluates four satellite-estimated data sets of surface longwave radiation (LW), the Global Energy and Water Cycle Experiment-Surface Radiation Budget (GEWEX-SRB), the International Satellite Cloud Climatology Project-Flux Data (ISCCP-FD), the Clouds and Earth Radiant Energy System-Gridded Radiative Fluxes and Clouds (CERES-FSW), and a newly developed data set from the Moderate Resolution Imaging Spectroradiometer (MODIS), with ground measurements at 15 sites of 2003. GEWEX-SRB (1°*1°) and ISCCP-FD (280 km~*280 km) irradiance are available at 3-hourly intervals, CERES-FSW (1°*1°) and MODIS (1 km*1 km) irradiance are available at satellite overpass time. Evaluation is carried out separately for clear-sky, cloudy sky and all-sky conditions. Results show that, under all-sky conditions, downwelling LW (LWDN) in ISCCP-FD is overestimated while in CERES-FSW it is underestimated; but for LWDN in GEWEX-SRB and upwelling LW (LWUP) in all data sets, estimation errors are region-dependent: no uniform trend can be found. Under clear-sky conditions, LWDN in most data sets is underestimated, with some exceptions; LWUP in GEWEX-SRB and ISCCP-FD is overestimated while in CERES-FSW and MODIS it is underestimated with some exceptions. Under cloudy sky conditions, LWDN is overestimated in GEWEX-SRB and ISCCP-FD while it is underestimated in CERES-FSW; LWUP in most data sets is underestimated, with some exceptions. All data sets perform better when estimating LWUP than LWDN, during the nighttime than during the daytime, and under clear-sky conditions than under cloudy sky conditions. However, there are substantial errors in some regions, such as LWDN overestimation by ISCCP-FD on the Qinghai-Tibetan Plateau. Such errors are related to the errors of input precipitable water vapor, temperature, and elevation differences.
机译:本研究评估四个satellite-estimated数据套地表长波辐射(LW)Experiment-Surface全球能源和水的循环辐射预算(GEWEX-SRB),国际卫星云气候学Project-Flux数据(ISCCP-FD),云层和地球辐射能量System-Gridded辐射通量和云(CERES-FSW)和一个新开发的数据集中分辨率成像光谱仪15岁(MODIS),与地面测量的网站在3小时公里)辐照度是可用的间隔,CERES-FSW(1°* 1°)和MODIS(1公里* 1在卫星公里)辐照度是可用的天桥。分别对晴空,多云的天空和全天条件。条件下,下降LW (LWDN) ISCCP-FD在CERES-FSW是高估了低估了;上升流LW (LWUP)在所有的数据集,估计错误是全区道:没有统一的趋势被发现。大多数数据集被低估了,一些异常;在CERES-FSW和MODIS高估了低估了一些例外。天空条件,LWDN高估了GEWEX-SRB ISCCP-FD虽然是低估了在CERES-FSW;低估,有一些例外。集估计LWUP比时表现得更好比在LWDN,在夜间白天,在晴空条件下比在阴天条件下。实质性的错误,在一些地区,比如LWDN高估了ISCCP-FD青藏高原。输入可沉淀的水蒸气,温度,海拔差异。

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