Acceleration of tracer and light particles in compressible homogeneous isotropic turbulence
arXiv:2107.04951 · doi:10.1017/jfm.2022.35
Abstract
The accelerations of tracer and light particles in compressible homogeneous isotropic turbulence (CHIT) is investigated by using data from direct numerical simulations (DNS) up to turbulent Mach number . For tracer particles, the flatness factor of acceleration components, , increases gradually for . On the contrary, for light particles develops a maximum around . The PDF of longitudinal acceleration of tracers is increasingly skewed towards the negative value as increases. By contrast, for light particles, the skewness factor of longitudinal acceleration, , firstly becomes more negative with the increase of , and then goes back to when is larger than . Similarly, differences among tracers and light particles appear also in the zero-crossing time of acceleration correlation. It is argued that all these phenomenons are intimately linked to the flow structures in compression regions, e.g. close to shocklets.
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