Shock-wave Mach-reflection slip-stream instability: A secondary small-scale turbulent mixing phenomenon

被引:31
作者
Rikanati, A [1 ]
Sadot, O
Ben-Dor, G
Shvarts, D
Kuribayashi, T
Takayama, K
机构
[1] Ben Gurion Univ Negev, Dept Phys, IL-84015 Beer Sheva, Israel
[2] Ben Gurion Univ Negev, Dept Mech Engn, IL-84015 Beer Sheva, Israel
[3] Nucl Res Ctr Negev, Dept Phys, IL-84190 Beer Sheva, Israel
[4] Tohoku Univ, Inst Fluid Sci, Interdisciplinary Shock Wave Res Ctr, Sendai, Miyagi 980, Japan
关键词
D O I
10.1103/PhysRevLett.96.174503
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Theoretical and experimental research, on the previously unresolved instability occurring along the slip stream of a shock-wave Mach reflection, is presented. Growth rates of the large-scale Kelvin-Helmholtz shear flow instability are used to model the evolution of the slip-stream instability in ideal gas, thus indicating secondary small-scale growth of the Kelvin-Helmholtz instability as the cause for the slip-stream thickening. The model is validated through experiments measuring the instability growth rates for a range of Mach numbers and reflection wedge angles. Good agreement is found for Reynolds numbers of Re > 2x10(4). This work demonstrates, for the first time, the use of large-scale models of the Kelvin-Helmholtz instability in modeling secondary turbulent mixing in hydrodynamic flows, a methodology which could be further implemented in many important secondary mixing processes.
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页数:4
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