首页> 外文会议>21st International Symposium on Ballistics v.1 >LARGE-SCALE STRUCTURAL PROJECTILE PENETRATION ANALYSIS USING HIGH PERFORMANCE COMPUTING
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LARGE-SCALE STRUCTURAL PROJECTILE PENETRATION ANALYSIS USING HIGH PERFORMANCE COMPUTING

机译:高性能计算的大型结构弹丸侵彻分析

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Large-scale structural analysis of projectiles penetrating arbitrary three-dimensional targets is described. Concrete and geologic target layers are modeled by PENCURV penetration resistance functions with nose shape effects and free surface/material interface algorithms. Projectiles are modeled with solid hexahedral finite elements coupled to PENCURV in an MPI-based parallel finite element code, ParaAble, developed by the authors. Analyses were performed on as many as 1024 processors of a Cray T3E-1200 as well as on hundreds of processors of an SGI Origin and IBM SP systems with excellent scalability, thus producing significant reductions in execution times. The parallel performance demonstrates the ability to efficiently perform such analyses by the use of parallel computing— thus making the analysis of very large detailed finite element analyses reasonable. This paper will elaborate on the parallel computational scheme and performance, as well as demonstrate the accuracy and significance of the structural analyses.
机译:描述了弹丸穿透任意三维目标的大规模结构分析。混凝土和地质目标层由PENCURV的抗穿透功能建模,具有鼻子形状效果和自由的表面/材料界面算法。作者使用开发的基于MPI的并行有限元代码ParaAble对与固体PECURV耦合的实心六面体有限元进行了建模。对Cray T3E-1200的多达1024个处理器以及具有出色扩展性的SGI Origin和IBM SP系统的数百个处理器进行了分析,从而大大减少了执行时间。并行性能展示了使用并行计算有效执行此类分析的能力,从而使对非常详细的大型有限元分析的分析变得合理。本文将详细阐述并行计算方案和性能,并论证结构分析的准确性和意义。

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