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首页> 外文期刊>Thermal science >HEAT TRANSFER EFFECTS IN A COUETTE FLOW THROUGH A COMPOSITE CHANNEL PARTLY FILLED BY A POROUS MEDIUM WITH A TRANSVERSE SINUSOIDAL INJECTION VELOCITY AND HEAT SOURCE
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HEAT TRANSFER EFFECTS IN A COUETTE FLOW THROUGH A COMPOSITE CHANNEL PARTLY FILLED BY A POROUS MEDIUM WITH A TRANSVERSE SINUSOIDAL INJECTION VELOCITY AND HEAT SOURCE

机译:穿过贯穿部分正弦注射速度和热源的多孔介质的复合通道中的折流的传热效果

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摘要

This study theoretically analyzes the heat transfer effects in a 3-D Couette flow through a composite parallel porous plate channel partly filled by a porous medium. The flow is 3-D in the channel because of the application of a transverse sinusoidal injection velocity of a particular form at the lower stationary plate. The governing equations are solved using a perturbation series expansion method. The effects of various flow parameters such as, Prandtl number, suction/injection parameter, permeability of the porous medium, heat source parameter, and viscosity ratio parameter, are investigated on temperature distribution in the composite channel and rate of heat transfer at the upper moving plate and at the fluid-porous medium interface, and discussed graphically.
机译:这项研究从理论上分析了通过部分填充有多孔介质的复合平行多孔板通道的3-D Couette流中的传热效果。由于在下部固定板上施加了特定形式的横向正弦注射速度,因此通道中的流量为3-D。控制方程使用扰动级数展开法求解。研究了各种流动参数(例如,Prandtl数,吸入/注入参数,多孔介质的渗透性,热源参数和粘度比参数)对复合通道中温度分布和上部运动时传热速率的影响。板和在流体-多孔介质的界面处,并进行了图形化讨论。

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