4.7 Article

Attenuation of turbulence in a periodic cube by finite-size spherical solid particles

期刊

JOURNAL OF FLUID MECHANICS
卷 949, 期 -, 页码 -

出版社

CAMBRIDGE UNIV PRESS
DOI: 10.1017/jfm.2022.787

关键词

turbulence theory; turbulence simulation

资金

  1. NIFS Collaboration Research Program [20KNSS145]
  2. RIKEN through the HPCI System Research projects [hp210207]

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We conduct direct numerical simulations to investigate the effect of spherical solid particles on the attenuation of turbulence in a periodic cube. Our results show that the additional energy dissipation rate in the wake of particles determines the degree of turbulence attenuation. Based on this observation, we propose formulae to describe the condition and degree of turbulence intensity attenuation.
To investigate the attenuation of turbulence in a periodic cube due to the addition of spherical solid particles, we conduct direct numerical simulations using an immersed boundary method with resolving flow around each particle. Numerical results with systematically changing particle diameters and Stokes numbers for a fixed volume fraction Lambda show that the additional energy dissipation rate in the wake of particles determines the degree of the attenuation of turbulent kinetic energy. On the basis of this observation, we propose formulae describing the condition and degree of the attenuation of turbulence intensity. We conclude that particles with size proportional to lambda/ root gamma, where lambda and gamma are the Taylor length and the mass density ratio between particles and fluid, most significantly reduce the intensity of developed turbulence under the condition that gamma and Lambda are fixed.

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