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首页> 外文期刊>Journal of the Atmospheric Sciences >A three-dimensional radiative transfer model to investigate the solar radiation within a cloudy atmosphere. Part I: Spatial effects
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A three-dimensional radiative transfer model to investigate the solar radiation within a cloudy atmosphere. Part I: Spatial effects

机译:一个三维辐射传递模型,用于研究多云大气中的太阳辐射。第一部分:空间效应

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摘要

A new Monte Carlo-based three-dimensional (3D) radiative transfer model of high spectral and spatial resolution is presented. It is used to investigate the difference in broadband solar radiation absorption, top-of-the-atmosphere upwelling, and surface downwelling solar radiation in a cloudy atmosphere between 3D and 1D calculations. Spatial variations of these same radiation components (absorption, upwelling, and downwelling), together with pathlength distributions, are analyzed for different wavelengths to describe the main physical mechanisms at work. The model contains all of the important atmospheric and surface radiative constituents. It includes Rayleigh scattering, absorption and scattering by both cloud droplets and aerosols, and absorption by the major atmospheric gases. Inputs include 3D liquid water fields, aerosols, and gas distribution, type, and concentrations. Using satellite imagery of a tropical cloud field as input, model results demonstrate that various plane-parallel (1D) assumptions can underestimate atmospheric absorption when compared to 3D computations. This discrepancy is caused by a complex interaction of gaseous absorption, cloud droplet absorption, and the solar zenith angle. Through a sensitivity analysis, the authors demonstrate that the most important factor is the morphology of the cloud held, followed by the vertical stratification of water vapor. [References: 41]
机译:提出了一种新的基于蒙特卡洛的高光谱和空间分辨率的三维(3D)辐射传递模型。它用于调查在3D和1D计算之间在多云大气中宽带太阳辐射吸收,大气层顶部上升和表面下降的太阳辐射之间的差异。对不同波长的这些相同辐射分量(吸收,上升和下降)的空间变化以及光程分布进行分析,以描述工作中的主要物理机制。该模型包含所有重要的大气和地表辐射成分。它包括瑞利散射,云滴和气溶胶的吸收和散射,以及主要大气的吸收。输入的内容包括3D液态水场,气溶胶以及气体分布,类型和浓度。使用热带云场的卫星图像作为输入,模型结果表明,与3D计算相比,各种平面平行(1D)假设可能会低估大气吸收。这种差异是由气体吸收,云滴吸收和太阳天顶角的复杂相互作用引起的。通过敏感性分析,作者证明最重要的因素是所持云的形态,其次是水蒸气的垂直分层。 [参考:41]

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