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Isca, v1.0: a framework for the global modelling of the atmospheres of Earth and other planets at varying levels of complexity

机译:Isca,v1.0:在复杂程度不同的情况下对地球和其他行星大气进行全局建模的框架

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Isca is a framework for the idealized modelling of the global circulation of planetary atmospheres at varying levels of complexity and realism. The framework is an outgrowth of models from the Geophysical Fluid Dynamics Laboratory in Princeton, USA, designed for Earth's atmosphere, but it may readily be extended into other planetary regimes. Various forcing and radiation options are available, from dry, time invariant, Newtonian thermal relaxation to moist dynamics with radiative transfer. Options are available in the dry thermal relaxation scheme to account for the effects of obliquity and eccentricity (and so seasonality), different atmospheric optical depths and a surface mixed layer. An idealized grey radiation scheme, a two-band scheme, and a multiband scheme are also available, all with simple moist effects and astronomically based solar forcing. At the complex end of the spectrum the framework provides a direct connection to comprehensive atmospheric general circulation models. For Earth modelling, options include an aquaplanet and configurable continental outlines and topography. Continents may be defined by changing albedo, heat capacity, and evaporative parameters and/or by using a simple bucket hydrology model. Oceanic Q?fluxes may be added to reproduce specified sea surface temperatures, with arbitrary continental distributions. Planetary atmospheres may be configured by changing planetary size and mass, solar forcing, atmospheric mass, radiation, and other parameters. Examples are given of various Earth configurations as well as a giant planet simulation, a slowly rotating terrestrial planet simulation, and tidally locked and other orbitally resonant exoplanet simulations. The underlying model is written in Fortran and may largely be configured with Python scripts. Python scripts are also used to run the model on different architectures, to archive the output, and for diagnostics, graphics, and post-processing. All of these features are publicly available in a Git-based repository.
机译:Isca是在复杂性和现实程度不同的情况下理想化的全球大气环流建模的框架。该框架是美国普林斯顿地球物理流体动力学实验室的模型的产物,该模型是针对地球大气而设计的,但可以很容易地扩展到其他行星体系中。提供各种强迫和辐射选项,从干燥,时不变,牛顿热松弛到具有辐射传递的潮湿动力学。干热弛豫方案中提供了选项,以说明倾斜和偏心率(以及季节性),不同的大气光学深度和表面混合层的影响。还提供了理想的灰度辐射方案,两波段方案和多波段方案,所有方案都具有简单的湿润效应和基于天文学的太阳强迫。在复杂的光谱范围内,该框架提供了与全面大气总循环模型的直接联系。对于地球建模,选项包括滑水行星和可配置的大陆轮廓和地形。可以通过改变反照率,热容和蒸发参数和/或使用简单的桶水文模型来定义大陆。可以添加海洋Q通量来重现指定的海面温度,并具有任意的大陆分布。可以通过改变行星的大小和质量,太阳强迫,大气质量,辐射和其他参数来配置行星大气。给出了各种地球配置,巨型行星模拟,缓慢旋转的地球行星模拟以及潮汐锁定和其他轨道共振系外行星模拟的示例。基础模型是用Fortran编写的,并且可以在很大程度上使用Python脚本进行配置。 Python脚本还用于在不同的体系结构上运行模型,归档输出以及进行诊断,图形和后处理。所有这些功能都可以在基于Git的存储库中公开获得。

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