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Acceleration of Passive Tracers in Compressible Turbulent Flow

Yantao Yang, Jianchun Wang, Yipeng Shi, Zuoli Xiao, X. T. He, and Shiyi Chen
Phys. Rev. Lett. 110, 064503 – Published 7 February 2013

Abstract

In compressible turbulence at high Reynolds and Mach numbers, shocklets emerge as a new type of flow structure in addition to intense vortices as in incompressible turbulence. Using numerical simulation of compressible homogeneous isotropic turbulence, we conduct a Lagrangian study to explore the effects of shocklets on the dynamics of passive tracers. We show that shocklets cause very strong intermittency and short correlation time of tracer acceleration. The probability density function of acceleration magnitude exhibits a 2.5 power-law scaling in the high compression region. Through a heuristic model, we demonstrate that this scaling is directly related to the statistical behavior of strong negative velocity divergence, i.e., the local compression. Tracers experience intense acceleration near shocklets, and most of them are decelerated, usually with large curvatures in their trajectories.

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  • Received 6 September 2012

DOI:https://doi.org/10.1103/PhysRevLett.110.064503

© 2013 American Physical Society

Authors & Affiliations

Yantao Yang, Jianchun Wang, Yipeng Shi*, Zuoli Xiao, X. T. He, and Shiyi Chen

  • State Key Laboratory for Turbulence and Complex Systems, Center for Applied Physics and Technology, and Key Laboratory of High Energy Density Physics Simulation (Ministry of Education), College of Engineering, Peking University, Beijing, 100871, China

  • *ypshi@coe.pku.edu.cn
  • syc@pku.edu.cn

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Vol. 110, Iss. 6 — 8 February 2013

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