Direct numerical simulation of turbulence modulation by particles in compressible isotropic turbulence

Q Dai, K Luo, T Jin, J Fan - Journal of Fluid Mechanics, 2017 - cambridge.org
Q Dai, K Luo, T Jin, J Fan
Journal of Fluid Mechanics, 2017cambridge.org
In this paper, a systematic investigation of turbulence modulation by particles and its
underlying physical mechanisms in decaying compressible isotropic turbulence is
performed by using direct numerical simulations with the Eulerian–Lagrangian point-source
approach. Particles interact with turbulence through two-way coupling and the initial
turbulent Mach number is 1.2. Five simulations with different particle diameters (or initial
Stokes numbers,) attenuate turbulent kinetic energy and the rotational motion of fluid. The …
In this paper, a systematic investigation of turbulence modulation by particles and its underlying physical mechanisms in decaying compressible isotropic turbulence is performed by using direct numerical simulations with the Eulerian–Lagrangian point-source approach. Particles interact with turbulence through two-way coupling and the initial turbulent Mach number is 1.2. Five simulations with different particle diameters (or initial Stokes numbers, ) attenuate turbulent kinetic energy and the rotational motion of fluid. The compressibility of the turbulence field is suppressed for all the cases, and the suppression is more significant if the Stokes number of particles is close to 1. The modifications of turbulent kinetic energy, the rotational motion and the compressibility are all related with the particle inertia and distributions, and the suppression of the compressibility is attributed to the preferential concentration and the inertia of particles.
Cambridge University Press
以上显示的是最相近的搜索结果。 查看全部搜索结果