Two-phase micro-and macro-time scales in particle-laden turbulent channel flows

被引:0
|
作者
Michael Manhart [1 ]
机构
[1] Fachgebiet Hydromechanik,Technische Universitt Mnchen,D-80290 Mnchen,Germany
基金
中国国家自然科学基金;
关键词
Micro-time scale.Lagrangian integral timescale.Moving Eulerian time scale.Particle-laden turbulentflow.Particle Stokes number.Direct numerical simulation(DNS).Lagrangian trajectory method;
D O I
暂无
中图分类号
O359 [多相流];
学科分类号
080704 ;
摘要
The micro-and macro-time scales in two-phaseturbulent channel flows are investigated using the direct numerical simulation and the Lagrangian particle trajectorymethods for the fluid-and the particle-phases,respectively.Lagrangian and Eulerian time scales of both phases are calculated using velocity correlation functions.Due to flowanisotropy,micro-time scales are not the same with the theoretical estimations in large Reynolds number(isotropic) turbulence.Lagrangian macro-time scales of particle-phaseand of fluid-phase seen by particles are both dependent onparticle Stokes number.The fluid-phase Lagrangian integral time scales increase with distance from the wall,longerthan those time scales seen by particles.The Eulerian integral macro-time scales increase in near-wall regions but decrease in out-layer regions.The moving Eulerian time scalesare also investigated and compared with Lagrangian integraltime scales,and in good agreement with previous measurements and numerical predictions.For the fluid particles themicro Eulerian time scales are longer than the Lagrangianones in the near wall regions,while away from the walls themicro Lagrangian time scales are longer.The Lagrangianintegral time scales are longer than the Eulerian ones.Theresults are useful for further understanding two-phase flowphysics and especially for constructing accurate predictionmodels of inertial particle dispersion.
引用
收藏
页码:595 / 604
页数:10
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