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An efficient CFD approach for simulating unsteady hypersonic shock-shock interference flows

机译:一种有效的CFD方法,用于模拟不稳定的高超音速冲击冲击流

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摘要

An efficient CFD approach based on higher order accurate numerical schemes has been developed for simulating unsteady hypersonic viscous flows strongly associated with shock-shock interference flow phenomena. The principal concept of the present approach is to employ the higher-resolution finite difference schemes based on the fourth-order accurate compact MUSCL TVD scheme coupled with the AUSM-based scheme in space discretization and based on the maximum second-order accurate LU-SGS scheme modified using the Newton iteration in time integration. The hypersonic shock-shock interference flow which is well known as the Type TV is numerically investigated. The obtained numerical results are showing extremely complicated flow structures, such as an unsteady supersonic jet, a jet-bow-shock, and unsteady supersonic shear layers. The reliability of the calculated results is checked by comparison with the existing experimental and numerical results. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 14]
机译:已经开发了一种基于高阶精确数值方案的有效CFD方法,用于模拟与冲击波干扰流动现象密切相关的不稳定的高超声速粘性流动。本方法的主要概念是在空间离散化中基于四阶精确紧凑MUSCL TVD方案与基于AUSM的方案结合使用高分辨率有限差分方案,并基于最大二阶精确LU-SGS时间积分中使用牛顿迭代修改的方案。数值研究了众所周知的Type TV高超声速冲击波干扰流。所获得的数值结果显示了极其复杂的流动结构,例如不稳定的超音速射流,射流-冲击波和不稳定的超音速剪切层。通过与现有的实验和数值结果进行比较来检查计算结果的可靠性。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:14]

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