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首页> 外文期刊>Journal of Applied Remote Sensing >Analysis of surface radiation budget during the summer and winter in the metropolitan area of Beijing, China
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Analysis of surface radiation budget during the summer and winter in the metropolitan area of Beijing, China

机译:北京大城市夏季和冬季的地表辐射收支分析

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Estimation of surface radiation budget is a crucial step to analyze the climate effects caused by rapid urbanization. This paper reports a study of the integration of remote sensing images and ancillary data for analyzing the spatial and temporal variations of surface radiation budget in Beijing, China. Landsat-5 Thematic Mapper (TM) images and meteorological data of Beijing metropolitan area acquired in the summer and winter were used to calculate land surface parameters and surface radiation fluxes, including shortwave net radiation, effective radiation and net radiation. Validation with in situ measurements shows that the calculation of net radiation yielded high accuracy. It suggests that the integration of remote sensing and ancillary data provide an applicable and feasible routine for analysis of surface radiation budget in urban environment. In order to understand the spatial patterns of surface radiation budgets, parameters, such as radiation fluxes, albedo and land surface temperature, were analyzed in terms of variations among different land cover types. Results indicate that the city can be characterized as a "basin" of net radiation in the summer, while it is characterized as a "plateau" in the winter. The albedo and land surface temperature were two primary factors contributing to the spatial variations of net radiation, while the solar elevation angle controlled the seasonal variations of the absolute amount.
机译:估算地表辐射预算是分析快速城市化对气候的影响的关键步骤。本文报道了对遥感图像和辅助数据的整合研究,以分析中国北京地表辐射收支的时空变化。利用北京大都市区夏季和冬季的Landsat-5专题测绘(TM)图像和气象数据来计算陆地表面参数和表面辐射通量,包括短波净辐射,有效辐射和净辐射。原位测量的验证表明,净辐射的计算产生了高精度。它表明,遥感和辅助数据的集成为分析城市环境中的地表辐射预算提供了一个适用且可行的程序。为了了解地表辐射收支的空间格局,根据不同土地覆盖类型之间的差异分析了诸如辐射通量,反照率和地表温度等参数。结果表明,该城市在夏季可被称为净辐射的“盆地”,而在冬季可被称为“高原”。反照率和地表温度是造成净辐射量空间变化的两个主要因素,而太阳仰角则控制了绝对量的季节变化。

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