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Enabling interactive and collaborative oil reservoir simulations on the Grid

机译:在网格上启用交互式和协作式油藏模拟

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Grid-enabled infrastructures and problem-solving environments can significantly increase the scale, cost-effectiveness and utility of scientific simulations, enabling highly accurate simulations that provide in-depth insight into complex phenomena. This paper presents a prototype of such an environment, i.e. an interactive and collaborative problem-solving environment for the formulation, development, deployment and management of oil reservoir and environmental flow simulations in computational Grid environments. The project builds on three independent research efforts: (1) the IPARS oil reservoir and environmental flow simulation framework; (2) the NetSolve Grid engine; and (3) the Discover Grid-based computational collaboratory. Its primary objective is to demonstrate the advantages of an integrated simulation infrastructure towards effectively supporting scientific investigation on the Grid, and to investigate the components and capabilities of such an infrastructure.
机译:基于网格的基础架构和解决问题的环境可以大大提高科学模拟的规模,成本效益和实用性,从而实现高度精确的模拟,从而可以深入了解复杂现象。本文介绍了这种环境的原型,即用于计算网格环境中油层的拟定,开发,部署和管理以及环境流模拟的交互式协作式问题解决环境。该项目建立在三项独立研究工作的基础上:(1)IPARS油藏和环境流量模拟框架; (2)NetSolve Grid引擎; (3)基于发现网格的计算协作。其主要目的是证明集成仿真基础结构在有效支持网格科学研究方面的优势,并研究这种基础结构的组件和功能。

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