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Experimental Investigation of the Potential of Metallic Porous Inserts in Enhancing Forced Convective Heat Transfer

机译:金属多孔插件增强强迫对流换热的潜力的实验研究

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The present experimental work investigates the effect of a metallic porous matrix, inserted in a pipe, on the rate of heat transfer. The pipe is Subjected to a constant and uniform heat flux. The effects of porosity and thickness of the porous matrix on the heat transfer rate and pressure drop are investigated. That is, the surface temperature distribution along a heated section of the pipe, the pressure drop over this section, as well as the inlet temperature of the air were continuously monitored with a data acquisition system and recorded when steady-sate conditions were attained. The results obtained for a range of Reynolds numbers 1000-4500, comprise both laminar and turbulent regime. Also, the results are compared with the clear flow case where no porous insert was used. It is shown that higher heat transfer rates are achieved when using porous inserts at the expense of a reasonable pressure drop, which depends on the permeability of the porous matrix.
机译:目前的实验工作研究了插入管道中的金属多孔基质对传热速率的影响。管道受到恒定且均匀的热通量。研究了多孔基质的孔隙率和厚度对传热速率和压降的影响。即,沿管道加热部分的表面温度分布,该部分的压降以及空气的入口温度用数据采集系统连续监测,并在达到稳定状态时记录下来。对于一系列雷诺数1000-4500所获得的结果包括层流和湍流两种形式。同样,将结果与不使用多孔插件的畅通情况进行比较。结果表明,当使用多孔插入物时,以合理的压降为代价可以获得更高的传热速率,压降取决于多孔基体的渗透性。

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