Thermal effect in shock-induced gas filtration through porous media

被引:0
作者
Li, Jiarui [1 ,2 ]
Chen, Jun [1 ]
Tian, Baolin [3 ]
Xiang, Meizhen [1 ]
Xue, Kun [2 ]
机构
[1] Inst Appl Phys & Computat Math, Natl Key Lab Computat Phys, Beijing 100088, Peoples R China
[2] Beijing Inst Technol, State Key Lab Explos Sci & Technol, Beijing 100081, Peoples R China
[3] Beihang Univ, Sch Aeronaut Sci & Engn, Beijing 100191, Peoples R China
关键词
particle/fluid flow; shock waves; gas dynamics; TO-DETONATION TRANSITION; GRANULAR-MATERIALS; FLOW; WAVES; SIMULATION; FLUIDIZATION; PARTICLES; MODEL; TIME;
D O I
10.1017/jfm.2024.699
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The gas dynamics of shock-induced gas filtration through densely packed granular columns with vastly varying shock intensity and the structural parameters are numerically investigated using a coupled Eulerian-Lagrangian approach. The results shed fundamental light on the thermal effects of the shock-induced gas filtration manifested by a distinctive self-heating hot gas layer traversing the medium. The characteristics of the thermal effects in terms of the thermal intensity and uniformity are found to vary with the shock Mach number, M-s , and the filtration coefficient of the granular media, Pi. As the incident shock transitions from weak to strong, and (or) the filtration coefficient increases from O (10( - 5)) to O (10(4)), the heating mechanisms transition between three distinct heating modes. A phase diagram of heating modes is established on the parameter space (M-s, 17 ), which enables us to predict the characteristics of the thermal effect in different shock-induced gas filtrations. The thermal effects markedly accelerate the pressure diffusion due to the additional heat influx when the time scale of the former is smaller than or comparable to the latter. Based on the contour map displaying the coupling degree of the thermal effects and the pressure diffusion, we identify a decoupling criterion whereby the isothermal assumption holds if only the pressure diffusion is concerned. The thermal effects may well bring about considerable thermal shocks which pose a great threat to the integrity of the solid skeleton and further reduce the overall shock resistance performance of the porous media.
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页数:38
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