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首页> 外文期刊>Russian Journal of Numerical Analysis and Mathematical Modelling >Parallel implementation of the cascade mass-conserving semi-Lagrangian transport scheme
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Parallel implementation of the cascade mass-conserving semi-Lagrangian transport scheme

机译:级联质量守恒半拉格朗日输运方案的并行实现

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摘要

Modern atmospheric models for climate simulations require accurate and efficient, locally mass-conservative and monotonic numerical schemes for treating the transport of atmospheric constituents. One of the ways to design such schemes is Finite-Volume Semi-Lagrangian approach (FVSL). FVSL schemes are characterised by the computational efficiency advantage due to the possibility of using large time-steps and efficient treatment of multiple transported quantities (tracers). This article presents massively parallel and multi-tracer efficient version of the recently developed 3D cascade FVSL transport scheme. Using hybrid distributed-shared memory parallelism with 1D MPI domain decomposition in latitude and OpenMP computations for longitude loops allows to use efficiently up to 1600 computational cores. We hope this number will grow with the future growth of the number of shared memory cores per computational node. Multi-tracer optimisations of the scheme (mostly, developing multi-tracer efficient monotonic filter) allow to reduce the cost of transporting additional tracer to 18-23% of running the scheme with one tracer.
机译:用于气候模拟的现代大气模型需要准确有效的局部质量守恒和单调数值方案来处理大气成分的运输。设计此类方案的方法之一是有限体积半拉格朗日方法(FVSL)。 FVSL方案的特点是计算效率高,这是因为它可能使用较大的时间步长并有效处理多个运输量(示踪物)。本文介绍了最新开发的3D级联FVSL传输方案的大规模并行和多跟踪器高效版本。在纬度和经度循环的OpenMP计算中,将混合分布式共享内存并行性与一维MPI域分解结合使用,可有效使用多达1600个计算核。我们希望这个数字将随着每个计算节点共享内存核心数量的未来增长而增长。该方案的多示踪剂优化(主要是开发多示踪剂高效的单调滤波器)可以将将额外的示踪剂的运输成本降低到使用一个示踪剂运行该方案的18-23%。

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