首页> 外文期刊>International Journal of Parallel, Emergent and Distributed Systems >Computational steering on distributed systems: Indoor comfort simulations as a case study of interactive CFD on supercomputers
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Computational steering on distributed systems: Indoor comfort simulations as a case study of interactive CFD on supercomputers

机译:分布式系统上的计算转向:室内舒适度仿真,以超级计算机上的交互式CFD为例

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This paper presents the current state of a computational steering system for interactive computational fluid dynamics (CFD) simulations, allowing engineers to simulate interactively indoor climate and to evaluate human comfort. The tools presented support cooperative planning and design by providing means for interactively adding, removing and modifying geometry and boundary conditions online during a CFD simulation. To ensure interactivity and short-latency updates even for high-resolution runs the parallel Lattice-Boltzmann-based simulation kernel is optimized for high-performance computing systems. Emphasis is placed on the computational steering architecture, connecting a supercomputer with one or more visualization workstations. In particular, we show how a high-performance communication between simulation and visualization or steering front-end can be achieved together with preserving a flexible mechanism of on-the-fly attachment of multiple cooperation clients.
机译:本文介绍了用于交互式计算流体动力学(CFD)模拟的计算转向系统的当前状态,使工程师可以交互式地模拟室内气候并评估人类的舒适度。所展示的工具通过提供在CFD仿真过程中在线交互地添加,删除和修改几何和边界条件的手段,来支持合作计划和设计。为了即使在高分辨率下也能确保交互性和短时更新,基于Lattice-Boltzmann的并行仿真内核针对高性能计算系统进行了优化。重点放在计算指导体系结构上,将一台超级计算机与一个或多个可视化工作站相连。特别是,我们展示了如何在仿真与可视化或操纵前端之间实现高性能的通信,同时又保留了多个合作客户即时连接的灵活机制。

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