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清华大学材料科学与工程研究院《材料科学论坛》:基于三维微纳结构的仿生光电与传感器...
报告题目:
The transition to turbulence of particle suspensions
 报告人:
Eric Climent
Institute of Fluids Mechanics, Université de Toulouse, CNRS - Toulouse, France
报告时间:
2018-04-26 13:30
报告地点:
B-518, Lee Shau Kee Building of Science and Technology
主办单位:
能源与动力工程系
  简介:

Abstract

The effect of particles on turbulence is a longstanding topic of research either by experiments or simulations. I will talk about the specific case of finite size neutrally-buoyant particles dispersion in turbulent Couette and Poiseuille flows. Based on numerical simulations, I will show how particles influence turbulent properties of the carrying flow and the intricate interplay between particle accumulation and the transition from laminar to turbulent flow. These two generic configurations of wall bounded flows help a better understanding of the complex interaction between the migration of particles and flow dynamics. The modification of the regeneration cycle of turbulence is a key point of particle fluid interaction.

 

References

Modulation of the regeneration cycle by neutrally buoyant finite-size particles. G. Wang, M. Abbas and E. Climent (2018) under revision for J. Fluids Mech.

Modulation of large-scale structures by neutrally buoyant and inertial finite-size particles in turbulent Couette flow. G. Wang, M. Abbas and E. Climent (2017) Phys. Rev. Fluids. 2, 084302.

The effect of neutrally-buoyant finite-size particles on channel flows in the laminar-turbulent transition regime. V. Loisel, M. Abbas, O. Masbernat and E. Climent. Physics of Fluids, 25, 123304 (2013).

 

Brief Biography

Professor Eric Climent received his PhD in fluids mechanics in 1996. He was lecturer at the University of Strasbourg (19972001). He then moved to Brown University (U.S.A.) as a visiting professor in applied mathematics. He returned to Toulouse in 2003 to work in the chemical engineering laboratory. Since 2008, he has been a member of the Fluids Mechanics Institute, developing his expertise on the modelling and simulation of disperse two-phase flows (suspension flow, solid/liquid separation, bubbles, and drops in turbulent flows). He is currently Director of Institute of Fluids Mechanics at Université de Toulouse and Professor at Toulouse INP-ENSEEIHT.

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