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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Estimating biologically active UV irradiance from satellite radiance measurements: A sensitivity study
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Estimating biologically active UV irradiance from satellite radiance measurements: A sensitivity study

机译:通过卫星辐射测量估算生物活性紫外线辐射:一项敏感性研究

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摘要

An algorithm for estimating biologically active UV irradiance from satellite measurements of ozone and reflectivity is presented. In contrast to previous work, this technique treats bulk radiative properties of clouds explicitly, assuming that clouds are reflecting surfaces. This work addresses the following issue: If clouds are characterized as simple reflecting surfaces of a specified albedo at a specified altitude covering a fraction of the sky, how precisely can surface UV irradiance be determined? To address this issue, an Eddington radiative transfer model is used to calculate not only ground level irradiance but also an estimate of the backscattered radiance in the nadir direction using the formal solution to the radiative transfer equation. While this model does not simulate detailed angular distributions of radiation scattered off clouds, it is found that this model retrieves average measured biologically active surface UV irradiance around solar noon quite well and that different combinations of parameters yield strikingly similar estimates of surface UV irradiance. The model is tested using four years of continuous-scan SBUV data and Robertson-Berger meter data for nine cities.
机译:提出了一种从卫星臭氧和反射率测量值估算生物活性紫外线辐射的算法。与以前的工作相反,该技术明确地处理了云的体辐射特性,假设云是反射面。这项工作解决了以下问题:如果将云表征为在指定高度(覆盖天空的一部分)的指定反照率的简单反射表面,那么如何精确确定表面紫外线辐射?为了解决这个问题,使用爱丁顿辐射传递模型,不仅可以使用辐射传递方程的形式解来计算地平面辐照度,而且还可以计算天底方向后向散射辐射率的估计值。尽管此模型没有模拟散布在云层周围的辐射的详细角度分布,但发现该模型可以很好地检索到太阳正午前后测得的平均生物活性表面紫外线辐照度,并且不同的参数组合得出的表面紫外线辐照度估算值极为相似。使用四年连续扫描SBUV数据和9个城市的Robertson-Berger仪表数据对模型进行了测试。

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