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Downward surface flux computations in a vertically inhomogeneous grey planetary atmosphere

机译:垂直不均匀的灰色行星大气中的向下表面通量计算

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We describe an efficient computational scheme for downward surface flux computations in a vertically inhomogeneous grey planetary atmosphere for different values of solar zenith angle. We start with the basic equations of a recently developed discrete ordinates spectral nodal method, and we derive suitable bidirectional functions whose diffuse components do not depend on the solar zenith angle. We then make use of these bidirectional functions to construct an efficient scheme for computing the downward surface fluxes in a given model atmosphere for a number of solar zenith angles. We illustrate the merit of the computational scheme described here with downward surface flux computations in a three-layer grey model atmosphere for four values of solar zenith angle, and we conclude this article with general remarks and directions for future work.
机译:我们描述了一个有效的计算方案,用于在垂直不均匀的灰色行星大气中针对不同的太阳天顶角值进行向下表面通量计算。我们从最近开发的离散坐标光谱节点法的基本方程开始,并推导合适的双向函数,其扩散分量不依赖于太阳天顶角。然后,我们利用这些双向函数构造一个有效的方案,以计算给定模型大气中多个太阳天顶角的向下表面通量。我们通过在三层灰色模型大气中对太阳天顶角的四个值进行向下表面通量计算来说明此处描述的计算方案的优点,并在本文的结尾总结了一般性论述和今后工作的方向。

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