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The Palaeoclimate and Terrestrial Exoplanet Radiative Transfer Model Intercomparison Project (PALAEOTRIP): experimental design and protocols

机译:古气候和地球系外行星辐射传输模型比较项目(PALAEOTRIP):实验设计和协议

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Accurate radiative transfer calculation is fundamental to all climate modelling. For deep palaeoclimate, and increasingly terrestrial exoplanet climate science, this brings both the joy and the challenge of exotic atmospheric compositions. The challenge here is that most standard radiation codes for climate modelling have been developed for modern atmospheric conditions and may perform poorly away from these. The palaeoclimate or exoclimate modeller must either rely on these or use bespoke radiation codes, and in both cases rely on either blind faith or ad hoc testing of the code. In this paper, we describe the protocols for the Palaeoclimate and Terrestrial Exoplanet Radiative Transfer Model Intercomparison Project (PALAEOTRIP) to systematically address this. This will compare as many radiation codes used for palaeoclimate or exoplanets as possible, with the aim of identifying the ranges of far-from-modern atmospheric compositions in which the codes perform well. This paper describes the experimental protocol and invites community participation in the project through 2017–2018.
机译:精确的辐射传递计算是所有气候建模的基础。对于深古气候和越来越多的陆地系外行星气候科学,这带来了充满异国情调的大气成分的乐趣和挑战。这里的挑战是,大多数用于气候建模的标准辐射规范已针对现代大气条件而开发,并且在这些方面的表现可能很差。古气候或准气候建模者必须要么依靠这些,要么使用定制的辐射代码,并且在两种情况下都依靠盲目的信念或临时测试代码。在本文中,我们描述了古气候和地球外行星辐射传递模型比对项目(PALAEOTRIP)的协议,以系统地解决这一问题。这将尽可能地比较用于古气候或系外行星的辐射代码,目的是确定代码表现良好的远非现代大气成分的范围。本文介绍了实验方案,并邀请社区在2017-2018年期间参与该项目。

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