Direct numerical simulation of turbulent heat transfer modulation in micro-dispersed channel flow

被引:0
|
作者
F. Zonta
C. Marchioli
Alfredo Soldati
机构
[1] Università degli Studi di Udine,Centro Interdipartimentale di Fluidodinamica e Idraulica and Dipartimento di Energetica e Macchine
[2] CISM,Department of Fluid Mechanics
来源
Acta Mechanica | 2008年 / 195卷
关键词
Heat Transfer; Prandtl Number; Direct Numerical Simulation; Particle Temperature; Heat Transfer Enhancement;
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中图分类号
学科分类号
摘要
The objective of this paper is to study the influence of dispersed micrometer size particles on turbulent heat transfer mechanisms in wall-bounded flows. The strategic target of the current research is to set up a methodology to size and design new-concept heat transfer fluids with properties given by those of the base fluid modulated by the presence of dynamically-interacting, suitably-chosen, discrete micro- and nano-particles. We ran direct numerical simulations for hydrodynamically fully developed, thermally developing turbulent channel flow at shear Reynolds number Reτ = 150 and Prandtl number Pr = 3, and we tracked two large swarms of particles, characterized by different inertia and thermal inertia. Preliminary results on velocity and temperature statistics for both phases show that, with respect to single-phase flow, heat transfer fluxes at the walls increase by roughly 2% when the flow is laden with the smaller particles, which exhibit a rather persistent stability against non-homogeneous distribution and near-wall concentration. An opposite trend (slight heat transfer flux decrease) is observed when the larger particles are dispersed into the flow. These results are consistent with previous experimental findings and are discussed in the frame of the current research activities in the field. Future developments are also outlined.
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页码:305 / 326
页数:21
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