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RESERVOIR SIMULATION WITH SCALABLE GRID COMPUTING

机译:可缩放网格计算的储层模拟

摘要

Larger, expandable high performance computing (HPC) clusters which are of different generations and performance speeds are provided for reservoir simulation. This provides scalability and flexibility for running computation-intensive reservoir simulation jobs on HPC machines. Availability of larger numbers of processors in a processor pool makes simulation of giant models possible and also reduces fragmentation when multiple jobs are run. A hardware performance based domain decomposition is performed which results in computation load balancing. The reservoir domain is decomposed efficiently to reduce communication overhead. Adaptive detection of the available mix of computation resources is performed, and reservoir simulation decomposition methodology adjusts the distribution of load based on the available hardware and different processor generation resources to minimize the reservoir simulation runtime.
机译:为储层模拟提供了不同代和性能速度的较大的,可扩展的高性能计算(HPC)集群。这为在HPC机器上运行计算密集型油藏模拟作业提供了可伸缩性和灵活性。处理器池中大量处理器的可用性使大型模型的仿真成为可能,并减少了运行多个作业时的碎片。执行基于硬件性能的域分解,这导致计算负载平衡。有效地分解存储域以减少通信开销。对计算资源的可用组合进行自适应检测,并且油藏模拟分解方法会根据可用硬件和不同处理器生成资源来调整负载分配,以最大程度地减少油藏模拟运行时间。

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