Rarefied hypersonic bow shocks over a cylinder inflate via multi-scale compression-relaxation with density becoming nearly rank-one while Mach and thermal fields retain independent modes, as separated by Knudsen and Mach sweeps in DSMC data.
Yajun Zhu, Chengwen Zhong, and Kun Xu
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2D DES simulations show a feedback-driven pressure oscillation loop in transonic cavity-sub-cavity flows that is most suppressed by a slotted sub-cavity design.
citing papers explorer
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Rarefaction-induced inflation and similarity breakdown of hypersonic bow shocks over a circular cylinder
Rarefied hypersonic bow shocks over a cylinder inflate via multi-scale compression-relaxation with density becoming nearly rank-one while Mach and thermal fields retain independent modes, as separated by Knudsen and Mach sweeps in DSMC data.
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Transonic flow past the complex cavity-sub-cavity configurations
2D DES simulations show a feedback-driven pressure oscillation loop in transonic cavity-sub-cavity flows that is most suppressed by a slotted sub-cavity design.