Numerical study of the effects of unmatched pressure on the supersonic particle-laden mixing layer

被引:0
|
作者
Yang, Xiaolong [1 ]
Li, Fei [1 ]
Mai, Xiangcai [1 ]
Liu, Xu [1 ]
Li, Peibo [1 ]
Wang, Hongbo [1 ]
Xiao, Feng [1 ]
Sun, Mingbo [1 ]
机构
[1] Natl Univ Def Technol, Hyperson Technol Lab, Changsha, Peoples R China
基金
中国国家自然科学基金;
关键词
FLOW STRUCTURES; LIQUID JET; COMBUSTION; SIMULATION; COMPRESSIBILITY; TURBULENCE;
D O I
10.1063/5.0234534
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
The dispersion of monodisperse, inertial particles in a supersonic mixing layer consisting of two sheared flows with differing pressures (P1 for the particle-laden jet flow and P-2 for the airflow) is numerically investigated using large Eddy simulation and Euler-Lagrange methods. The calculations reveal the following insights: The pressure disparity between the two flows induces a transverse gas flow effect, which swiftly deflects the mixing layer from the high-pressure side to the low-pressure side. The growth rate of mixing layer increases with the ratio of P-2/P-1 and while the deflected displacement correlates with the pressure difference |P-2-P-1|. However, the particles exhibit delayed tracking characteristics to the deflected mixing layer because of their relative relaxation to the transverse gas velocity, particularly in the upstream region of the mixing layer (also known as the Kelvin-Helmholtz instability developing zone or KH zone). Notably, when the P-2 exceeds that of the P-1, particles can more easily penetrate into the vortices of KH zone, significantly enhancing the downstream gas-particle mixing. This mixing enhancement is particularly pronounced for larger particles due to their increased inertia, which allows them to advance into the vortices of KH zone more effectively than smaller ones.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] Numerical and experimental analysis of poly-dispersion effects on particle-laden jets
    Njue, Jackline C.W.
    Salehi, Fatemeh
    Lau, Timothy C.W.
    Cleary, Matthew J.
    Nathan, Graham J.
    Chen, Longfei
    International Journal of Heat and Fluid Flow, 2021, 91
  • [32] Numerical simulation of particle-laden turbulent channel flow
    Li, YM
    McLaughlin, JB
    Kontomaris, K
    Portela, L
    PHYSICS OF FLUIDS, 2001, 13 (10) : 2957 - 2967
  • [33] Methodology for numerical simulations of ellipsoidal particle-laden flows
    Lambert, Baptiste
    Weynans, Lisl
    Bergmann, Michel
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2020, 92 (08) : 855 - 873
  • [34] Uncertainty quantification in numerical simulation of particle-laden flows
    Gabriel M. Guerra
    Souleymane Zio
    Jose J. Camata
    Jonas Dias
    Renato N. Elias
    Marta Mattoso
    Paulo L. B. Paraizo
    Alvaro L. G. A. Coutinho
    Fernando A. Rochinha
    Computational Geosciences, 2016, 20 : 265 - 281
  • [35] Numerical Simulation of Particle-Laden Coaxial Turbulent Jets
    Kannaiyan, Kumaran
    Sadr, Reza
    INTERNATIONAL JOURNAL FOR COMPUTATIONAL METHODS IN ENGINEERING SCIENCE & MECHANICS, 2013, 14 (01): : 61 - 73
  • [36] Uncertainty quantification in numerical simulation of particle-laden flows
    Guerra, Gabriel M.
    Zio, Souleymane
    Camata, Jose J.
    Dias, Jonas
    Elias, Renato N.
    Mattoso, Marta
    Paraizo, Paulo L. B.
    Coutinho, Alvaro L. G. A.
    Rochinha, Fernando A.
    COMPUTATIONAL GEOSCIENCES, 2016, 20 (01) : 265 - 281
  • [37] Numerical and experimental analysis of poly-dispersion effects on particle-laden jets
    Njue, Jackline C. W.
    Salehi, Fatemeh
    Lau, Timothy C. W.
    Cleary, Matthew J.
    Nathan, Graham J.
    Chen, Longfei
    INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2021, 91
  • [38] Experimental investigation of particle dynamics in particle-laden turbulent boundary layer
    Kim, Taehoon
    INTERNATIONAL JOURNAL OF MECHANICAL SCIENCES, 2024, 263
  • [39] On pressure drop in particle-laden horizontal channel flow
    Lain, Santiago
    Sommerfeld, Martin
    HOMBRE Y LA MAQUINA, 2007, (28): : 98 - 107
  • [40] Numerical study of laminar-turbulent transition in particle-laden channel flow
    Klinkenberg, Joy
    Sardina, Gaetano
    de Lange, H. C.
    Brandt, Luca
    PHYSICAL REVIEW E, 2013, 87 (04):