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A Hybrid Peer-to-Peer and Grid Job Scheduling System for Teaming Up Desktop Resources with Computer Clusters to Perform Turbulence Simulations

机译:混合点对点和网格作业调度系统,用于使用计算机集群进行桌面资源来执行湍流模拟

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Simulating turbulence in fluids is a fascinating part of physics which requires a high amount of computational power. Since for transitional Reynolds numbers each simulation run can be performed on a single contemporary CPU, turbulence studies are ideally suited for distributed computing where each node performs a simulation for a single initial condition. The approach presented in this paper makes use of unused computational power by integrating a dynamically changing set of possibly unreliable desktop PCs into a Grid infrastructure of attentively administered dedicated cluster resources. The basic idea is to use peer-to-peer (P2P) technology for managing the set of computers and develop a "bridge" to interface the P2P network with a Grid meta-scheduler which in turn interfaces with the Grid middleware. This eliminates the need for central administration and continuous resource availability. It provides distributed scheduling, replicated storage and system monitoring capabilities. Experimental results obtained from an evaluation of our implementation show that our approach is both scalable and resilient in the presence of node failures and network churn.
机译:模拟流体中的湍流是物理学的迷人部分,其需要大量的计算能力。由于对于过渡雷诺数,可以对单一的当代CPU执行每个模拟运行,因此湍流研究非常适合于分布式计算,其中每个节点对单个初始条件执行模拟。本文呈现的方法通过将动态变化的可能不可靠的台式机PC集成到专门管理的专用集群资源的网格基础架构中,利用未使用的计算能力。基本思想是使用点对点(P2P)技术来管理计算机集,并使用网格元调度器开发“桥梁”以将P2P网络与网格中间件接口接口。这消除了对中央管理和持续资源可用性的需求。它提供了分布式调度,复制的存储和系统监控功能。从我们的实施评估获得的实验结果表明,我们的方法在节点故障和网络流失的存在下都是可扩展和困难的。

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