首页> 外文期刊>The Open Transport Phenomena Journal >Forced Convective Heat Transfer Enhancement in a Tube with its Core Partially Filled with a Porous Medium
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Forced Convective Heat Transfer Enhancement in a Tube with its Core Partially Filled with a Porous Medium

机译:部分填充有多孔介质的管中强迫对流换热的增强

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Forced convection in a tube with its core partially filled with a porous medium is treated both analytically and numerically to find its high heat transfer performance. Assuming a fully developed flow subject to a constant heat flux, both friction factor and Nusselt number are presented explicitly as functions of the Reynolds number, Darcy number and porous core diameter ratio. Partial filling of the porous medium in the core region leads the fluid particles close to the wall, resulting an increase in the heat transfer coefficient. Extensive filling, however, tends to block the fluid particles channeling through the small gap formed between the wall and the porous core interface. Consequently, there exists the optimal porous core diameter ratio as a function of the Darcy number, which yields the maximum heat transfer coefficient.
机译:对其管芯部分填充有多孔介质的管子中的对流进行了分析和数值处理,以发现其高传热性能。假设充分发展的流动受到恒定的热通量,则摩擦因数和Nusselt数都明确表示为雷诺数,达西数和多孔核直径比的函数。芯区域中的多孔介质的部分填充导致流体颗粒靠近壁,从而导致热传递系数的增加。但是,大量填充往往会阻止流体粒子流过在壁和多孔芯界面之间形成的小间隙。因此,存在作为达西数的函数的最佳多孔芯直径比,这产生了最大的传热系数。

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