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首页> 外文期刊>Advances in Engineering Software >A grid-enabled problem solving environment for parallel computational engineering design
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A grid-enabled problem solving environment for parallel computational engineering design

机译:用于并行计算工程设计的基于网格的问题解决环境

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This paper describes the development and application of a piece of engineering software that provides a problem solving environment (PSE) capable of launching, and interfacing with, computational jobs executing on remote resources on a computational grid. In particular it is demonstrated how a complex, serial, engineering optimisation code may be efficiently parallelised, grid-enabled and embedded within a PSE. The environment is highly flexible, allowing remote users from different sites to collaborate, and permitting computational tasks to be executed in parallel across multiple grid resources, each of which may be a parallel architecture. A full working prototype has been built and successfully applied to a computationally demanding engineering optimisation problem. This particular problem stems from elastohydrodynamic lubrication and involves optimising the computational model for a lubricant based on the match between simulation results and experimentally observed data. (c) 2005 Elsevier Ltd. All rights reserved.
机译:本文描述了一个工程软件的开发和应用,该工程软件提供了一个问题解决环境(PSE),该环境能够启动并与在计算网格上的远程资源上执行的计算作业交互。特别是演示了如何将复杂的,串行的,工程优化代码有效地并行化,启用网格并嵌入到PSE中。该环境具有高度的灵活性,允许来自不同站点的远程用户进行协作,并允许跨多个网格资源并行执行计算任务,每个网格资源都可以是并行体系结构。已经构建了一个完整的工作原型,并将其成功地应用于计算要求苛刻的工程优化问题。这个特殊问题源于弹性流体动力润滑,涉及根据模拟结果和实验观察到的数据之间的匹配来优化润滑剂的计算模型。 (c)2005 Elsevier Ltd.保留所有权利。

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