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Thor: a new and flexible global circulation model to explore planetary atmospheres

机译:雷神:探索星球大气的新的灵活全球循环模型

摘要

We have designed and developed, from scratch, a global circulation model (GCM) named THOR that solves the three-dimensional nonhydrostatic Euler equations. Our general approach lifts the commonly used assumptions of a shallow atmosphere and hydrostatic equilibrium. We solve the “pole problem” (where converging meridians on a sphere lead to increasingly smaller time steps near the poles) by implementing an icosahedral grid. Irregularities in the grid, which lead to grid imprinting, are smoothed using the “spring dynamics” technique. We validate our implementation of spring dynamics by examining calculations of the divergence and gradient of test functions. To prevent the computational time step from being bottlenecked by having to resolve sound waves, we implement a split-explicit method together with a horizontally explicit and vertically implicit integration. We validate our GCM by reproducing the Earth and hot-Jupiter-like benchmark tests. THOR was designed to run on graphics processing units (GPUs), which allows for physics modules (radiative transfer, clouds, chemistry) to be added in the future, and is part of the open-source Exoclimes Simulation Platform (www.exoclime.org).
机译:我们从头开始设计并开发了一个名为THOR的整体循环模型(GCM),它可以解决三维非静液压Euler方程。我们的一般方法提出了浅层大气和静水平衡的常用假设。我们通过实施二十面体网格来解决“极点问题”(球面上的子午线收敛导致极点附近的时间步长越来越小)。网格中的不规则性会导致网格压印,可使用“弹簧动力学”技术进行平滑处理。我们通过检查测试函数的散度和梯度的计算来验证弹簧动力学的实现。为了避免必须解决声波而造成计算时间瓶颈的问题,我们实现了显式拆分方法以及水平显式和垂直隐式积分。我们通过复制地球和类似木星的基准测试来验证我们的GCM。 THOR设计为在图形处理单元(GPU)上运行,该图形处理单元允许将来添加物理模块(辐射传输,云,化学),并且是开源Exoclimes仿真平台(www.exoclime.org)的一部分)。

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