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High-performance climate system modeling using a domain and task decomposition message-passing approach

机译:使用域的高性能气候系统建模和任务分解消息传递方法

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We have developed a climate system modeling framework (CSMF) for high-performance systems, designed to schedule and couple multiple physics simulation packages in a flexible and transportable manner. Some of the major packages in the CSMF include models of atmospheric and oceanic circulation and chemistry, land surface and sea ice processes, and trace gas biogeochemistry. Parallelism is achieved through both domain decomposition and process-level concurrency, with data transfer and synchronization accomplished through message-passing. Both machine transportability and architecture-dependent optimization are handled through libraries and conditional compile directives. Preliminary experiments with the CSMF have been executed on a number of high-performance platforms, including the Intel Paragon, the TMC CM-5 and the Meiko CS-2, and we are in the very early stages of optimization. Progress to date (1994) is presented.
机译:我们开发了一种用于高性能系统的气候系统建模框架(CSMF),旨在以灵活可运输的方式安排和耦合多个物理仿真包。 CSMF中的一些主要套餐包括大气和海洋循环和化学,陆地表面和海冰过程,以及痕量气体生物地球化学。通过域分解和过程级并发来实现并行性,通过消息传递完成数据传输和同步。通过库和条件编译指令处理机器可运输性和架构依赖性优化。 CSMF的初步实验已经在许多高性能平台上执行,包括英特尔·普拉方,TMC CM-5和Meiko CS-2,我们处于优化的早期阶段。介绍了迄今为止的进展(1994)。

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