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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >An idealized radiative transfer scheme for use in a mechanistic general circulation model from the surface up to the mesopause region
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An idealized radiative transfer scheme for use in a mechanistic general circulation model from the surface up to the mesopause region

机译:一种理想的辐射传输方案,可用于从表面到更年期区域的机械总体循环模型

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摘要

A new and numerically efficient method to compute radiative flux densities and heating rates in a general atmospheric circulation model is presented. Our method accommodates the fundamental differences between the troposphere and middle atmosphere in the long-wave regime within a single parameterization that extends continuously from the surface up to the mesopause region and takes the deviations from the gray limit and from the local thermodynamic equilibrium into account. For this purpose, frequency-averaged Eddington-type transfer equations are derived for four broad absorber bands. The frequency variation inside each band is parameterized by application of the Elsasser band model extended by a slowly varying envelope function. This yields additional transfer equations for the perturbation amplitudes that are solved numerically along with the mean transfer equations. Deviations from local thermodynamic equilibrium are included in terms of isotropic scattering, calculating the single scattering albedo from the two-level model for each band. Solar radiative flux densities are computed for four energetically defined bands using the simple Beer-Bougert-Lambert relation for absorption within the atmosphere. The new scheme is implemented in a mechanistic general circulation model from the surface up to the mesopause region. A test simulation with prescribed concentrations of the radiatively active constituents shows quite reasonable results. In particular, since we take the full surface energy budget into account by means of a swamp ocean, and since the internal dynamics and turbulent diffusion of the model are formulated in accordance with the conservation laws, an equilibrated climatological radiation budget is obtained both at the top of the atmosphere and at the surface.
机译:提出了一种在数值上有效的方法来计算一般大气环流模型中的辐射通量密度和加热速率。我们的方法在单个参数化过程中适应了长波区域中对流层和中层大气之间的基本差异,该参数化过程从地表一直延伸到中层顶区域,并考虑了与灰度极限和局部热力学平衡的偏差。为此,针对四个宽吸收带推导了频率平均的爱丁顿型传递方程。通过应用由缓慢变化的包络函数扩展的Elsasser频带模型,可以对每个频带内的频率变化进行参数化。这产生了扰动幅度的附加传递方程,该传递方程与平均传递方程一起在数值上求解。各向同性散射包括与局部热力学平衡的偏差,根据每个带的两层模型计算单散射反照率。使用简单的Beer-Bougert-Lambert关系在大气中吸收,可以计算出四个能量定义的带的太阳辐射通量密度。该新方案是在从表面到中绝经区的机械通用循环模型中实施的。使用规定浓度的辐射活性成分进行的测试模拟显示了相当合理的结果。特别是,由于我们通过沼泽海洋考虑了整个表面能的收支,并且由于模型的内部动力学和湍流扩散是根据守恒定律制定的,因此在这两个位置都可以获得平衡的气候辐射收支。大气层顶部和地表。

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