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利用辐射传输模拟重建太阳光谱表面紫外线辐照度。

Reconstruction of solar spectral surface UV irradiances using radiative transfer simulations.

作者信息

Lindfors Anders, Heikkilä Anu, Kaurola Jussi, Koskela Tapani, Lakkala Kaisa

机构信息

Climate Change Research, Finnish Meteorological Institute, Helsinki, Finland.

出版信息

Photochem Photobiol. 2009 Sep-Oct;85(5):1233-9. doi: 10.1111/j.1751-1097.2009.00578.x. Epub 2009 May 28.

Abstract

UV radiation exerts several effects concerning life on Earth, and spectral information on the prevailing UV radiation conditions is needed in order to study each of these effects. In this paper, we present a method for reconstruction of solar spectral UV irradiances at the Earth's surface. The method, which is a further development of an earlier published method for reconstruction of erythemally weighted UV, relies on radiative transfer simulations, and takes as input (1) the effective cloud optical depth as inferred from pyranometer measurements of global radiation (300-3000 nm); (2) the total ozone column; (3) the surface albedo as estimated from measurements of snow depth; (4) the total water vapor column; and (5) the altitude of the location. Reconstructed daily cumulative spectral irradiances at Jokioinen and Sodankylä in Finland are, in general, in good agreement with measurements. The mean percentage difference, for instance, is mostly within +/-8%, and the root mean square of the percentage difference is around 10% or below for wavelengths over 310 nm and daily minimum solar zenith angles (SZA) less than 70 degrees . In this study, we used pseudospherical radiative transfer simulations, which were shown to improve the performance of our method under large SZA (low Sun).

摘要

紫外线辐射对地球上的生命产生了多种影响,为了研究这些影响中的每一种,都需要有关当前紫外线辐射条件的光谱信息。在本文中,我们提出了一种用于重建地球表面太阳光谱紫外线辐照度的方法。该方法是早期发表的用于重建红斑加权紫外线的方法的进一步发展,它依赖于辐射传输模拟,并将以下各项作为输入:(1)根据总辐射(300 - 3000纳米)的日射强度计测量推断出的有效云光学厚度;(2)总臭氧柱;(3)根据雪深测量估算的地表反照率;(4)总水汽柱;以及(5)该地点的海拔高度。芬兰约基奥伊宁和索丹屈莱重建的每日累积光谱辐照度总体上与测量结果吻合良好。例如,平均百分比差异大多在±8%以内,对于波长超过310纳米且日最小太阳天顶角(SZA)小于70度的情况,百分比差异的均方根约为10%或更低。在本研究中,我们使用了伪球辐射传输模拟,结果表明该模拟在大太阳天顶角(低太阳高度)情况下能提高我们方法的性能。

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