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Prevention of Pressure Oscillations in Modeling a Cavitating Acoustic Fluid

机译:防止空化声流体建模中的压力振荡

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Cavitation effects play an important role in the UNDEX loading of a structure. For far-field UNDEX, the structural loading is affected by the formation of local and bulk cavitation regions, and the pressure pulses resulting from the closure of the cavitation regions. A common approach to numerically modeling cavitation in far-field underwater explosions is Cavitating Acoustic Finite Elements (CAFE) and more recently Cavitating Acoustic Spectral Elements (CASE). Treatment of cavitation in this manner causes spurious pressure oscillations which must be treated by a numerical damping scheme. The focus of this paper is to investigate the severity of these oscillations on the structural response and a possible improvement to CAFE, based on the original Boris and Book Flux-Corrected Transport algorithm on structured meshes [6], to limit oscillations without the energy loss associated with the current damping schemes.
机译:空化效应在结构的UNDEX加载中起重要作用。对于远场UNDEX,结构载荷受局部和整体空化区域的形成以及空化区域关闭导致的压力脉冲的影响。在远场水下爆炸中对空化进行数值模拟的一种常用方法是使空化有限元(CAFE)和最近使空化频谱要素(CASE)空化。以这种方式处理空化会引起杂散压力振荡,必须通过数字阻尼方案对其进行处理。本文的重点是基于结构网格上的原始Boris和Book Flux-Corrected Transport算法[6],研究这些振荡对结构响应的严重性以及CAFE的可能改进,以限制振荡而不会损失能量与当前的阻尼方案相关。

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