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CELLS v1.0: updated and parallelized version of an electrical scheme to simulate multiple electrified clouds and flashes over large domains

机译:CELLS v1.0:一种电气方案的更新和并行化版本,可在大范围内模拟多个带电的云层和闪烁

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The paper describes the fully parallelized electrical scheme CELLS which is suitable to simulate explicitly electrified storm systems on parallel computers. Our motivation here is to show that a cloud electricity scheme can be developed for use on large grids with complex terrain. Large computational domains are needed to perform real case meteorological simulations with many independent convective cells. The scheme computes the bulk electric charge attached to each cloud particle. Positive and negative ions are also taken into account. Several parametrizations of the dominant non-inductive charging process are included and an inductive charging process as well. The electric field is obtained by inverting the Gauss equation with an extension to terrain-following coordinates. The new feature concerns the lightning flash scheme which is a simplified version of an older detailed sequential scheme. Flashes are composed of a bidirectional leader phase (vertical extension from the triggering point) and a phase obeying a fractal law (with horizontal extension on electrically charged zones). The originality of the scheme lies in the way the branching phase is treated to get a parallel code. The complete electrification scheme is tested for the 10 July 1996 STERAO case and for the 21 July 1998 EULINOX case. Flash characteristics are analysed in detail and additional sensitivity experiments are performed for the STERAO case. Although the simulations were run for flat terrain conditions, they show that the model behaves well on multiprocessor computers. This opens a wide area of application for this electrical scheme with the next objective of running real meteorological case on large domains.
机译:本文介绍了完全并行化的电气方案CELLS,它适合于在并行计算机上模拟显式电气化的暴风雨系统。我们在这里的动机是表明可以开发出一种云电计划,以用于具有复杂地形的大型电网。需要大量的计算域,以使用许多独立的对流单元进行实际案例的气象模拟。该方案计算附着到每个云粒子的体电荷。正离子和负离子也要考虑在内。包括了主要的非感应充电过程的几个参数,以及感应充电过程。通过将高斯方程式反演并扩展到地形坐标,可以得到电场。新功能涉及闪电方案,它是较早的详细顺序方案的简化版本。闪烁由双向引导相位(从触发点垂直扩展)和一个遵循分形定律(带电区域具有水平扩展)的相位组成。该方案的独创性在于处理分支阶段以获得并行代码的方式。完整的电气化方案已针对1996年7月10日的STERAO案和1998年7月21日的EULINOX案进行了测试。详细分析了闪光特性,并针对STERAO案例进行了其他灵敏度实验。尽管模拟是在平坦的地形条件下运行的,但它们表明该模型在多处理器计算机上的性能良好。这为该电气方案打开了广阔的应用领域,其下一个目标是在大范围内运行真实的气象案例。

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