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Linearized Flux Evolution (LiFE): A technique for rapidly adapting fluxes from full-physics radiative transfer models

机译:线性化助焊剂进化(Life):一种从全物理辐射转移模型中快速调整助焊剂的技术

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摘要

Solar and thermal radiation are critical aspects of planetary climate, with gradients in radiative energy fluxes driving heating and cooling. Climate models require that radiative transfer tools be versatile, computationally efficient, and accurate. Here, we describe a technique that uses an accurate full-physics radiative transfer model to generate a set of atmospheric radiative quantities which can be used to linearly adapt radiative flux profiles to changes in the atmospheric and surface state-the Linearized Flux Evolution (LiFE) approach. These radiative quantities describe how each model layer in a plane-parallel atmosphere reflects and transmits light, as well as how the layer generates diffuse radiation by thermal emission and by scattering light from the direct solar beam. By computing derivatives of these layer radiative properties with respect to dynamic elements of the atmospheric state, we can then efficiently adapt the flux profiles computed by the full-physics model to new atmospheric states. We validate the LiFE approach, and then apply this approach to Mars, Earth, and Venus, demonstrating the information contained in the layer radiative properties and their derivatives, as well as how the LiFE approach can be used to determine the thermal structure of radiative and radiative-convective equilibrium states in one-dimensional atmospheric models. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:太阳能和热辐射是行星气候的关键方面,具有辐射能量通量的梯度驱动加热和冷却。气候模型要求辐射转移工具可以多功能,计算上高效,准确。这里,我们描述了一种使用精确的全物理辐射传输模型来产生一组大气辐射量的技术,该大气辐射量可用于线性地适应散热磁通型材以改变大气和表面状态 - 线性化通量进化(Life)方法。这些辐射量描述了平行气氛中的每个模型层如何反射和透射光,以及通过热发射的层产生漫射辐射的方式,以及通过从直接太阳束散射光。通过对大气状态的动态元件计算这些层辐射特性的衍生物,我们可以有效地使由全物理模型计算的磁通简档对新的大气状态进行了帮助。我们验证了生命方法,然后将这种方法应用于火星,地球和金星,证明层辐射性质及其衍生物中包含的信息,以及如何使用寿命方法来确定辐射和辐射的热结构。一维大气模型中的辐射对流均衡状态。 (c)2018作者。 elsevier有限公司出版

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