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GARLIC - A General Purpose Atmospheric Radiative Transfer Line-by-Line Infrared Code: Implementation and Evaluation

机译:大蒜-通用大气辐射传输逐行红外代码:实施和评估

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摘要

A suite of programs for high resolution infrared atmospheric radiative transfer\udmodeling has been developed with emphasis on efficient and reliable numerical algorithms and a modular approach appropriate for simulation and/or retrieval in a variety of applications. The Generic Atmospheric Radiation Line-by-line Infrared Code — GARLIC — is suitable for arbitrary observation geometry, instrumental field–of–view, and line shape. The core of GARLIC’s subroutines constitutes the basis of forward models used to implement inversion codes to retrieve atmospheric state parameters from limb and nadir sounding instruments.\ud\udThis paper briefly introduces the physical and mathematical basics of GARLIC and its descendants and continues with an in-depth presentation of various implementation aspects: An optimized Voigt function algorithm combined with a two-grid approach is used to accelerate the line-by-line modeling of molecular cross sections; various quadrature methods are implemented to evaluate the Schwarzschild and Beer integrals; and Jacobians, i.e. derivatives with respect to the unknowns of the atmospheric inverse problem, are implemented by means of automatic differentiation. For an assessment of GARLIC’s performance, a comparison of the quadrature methods for solution of the path integral is provided.
机译:已经开发出一套用于高分辨率红外大气辐射传递\ udmodeling的程序,重点是高效和可靠的数值算法以及适用于各种应用中的模拟和/或检索的模块化方法。常规大气辐射逐行红外编码GARLIC适用于任意观测几何形状,仪器视场和线形。 GARLIC子例程的核心构成用于执行反演代码以从肢体和天底测深仪检索大气状态参数的正向模型的基础。\ ud \ ud本文简要介绍了GARLIC及其后代的物理和数学基础,并继续介绍深入介绍各种实现方面:将优化的Voigt函数算法与两网格方法结合使用,以加速分子截面的逐行建模;实施了各种正交方法来评估Schwarzschild和Beer积分;雅可比行列式,即关于大气逆问题未知数的导数,是通过自动微分来实现的。为了评估GARLIC的性能,提供了用于解决路径积分的正交方法的比较。

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