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Effect of Reynolds asymmetry and use of porous media in the counterflow double-pipe heat exchanger for passive heat transfer enhancement

机译:雷诺不对称和在逆流双管热交换器中使用多孔介质的效果,用于被动热传递增强

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In order to enhance the heat transfer in a double-pipe counterflow heat exchanger, the use of porous media and nanofluid is analyzed. The effect of complete filling of one or both channels of the heat exchanger with porous metal foams on the heat transfer and pumping power has been studied, considering laminar flow with various Reynolds numbers (Re = 100 to 2000) and porous media (Da = 0.1 to 10(-4)). As a novelty, in order to select proper porous media with an appropriate Reynolds number in each channel, this study focused on the coupling of Re asymmetry and porous medium properties used in the inner and outer channels of the heat exchanger. Flow through porous media is simulated by the non-Darcy law and two-phase mixture model used for the nanofluid flow. Results are presented and investigated in terms of the effectiveness (epsilon-NTU method) and the performance evaluation criterion (PEC). It is shown that the effectiveness could only depict the thermal performance, while the PEC reflects the influences of the porous media on both the pumping power and the heat transfer. Use of porous media in both channels (case D) has led to the highest effectiveness (between 0.6 and 1). In addition, PEC study reveals that the optimal Re values exist for flow in each one of the channels and that case D has the highest PEC (more than 4). To maximize the PEC, for the cases with only one porous channel (B and C), the channel which does not include porous media should have the highest Re, while a low or moderate Re should be selected for the porous channel. However, for case D, Re-i should have its highest value, while Re-o has an optimal value in the range of 500 to 1000.
机译:为了增强双管逆流热交换器中的传热,分析了多孔介质和纳米流体的使用。研究了在热转印和泵送动力上与多孔金属泡沫的一个或两个通道完全填充的效果,考虑到具有各种雷诺数的层流(RE = 100至2000)和多孔介质(DA = 0.1到10(-4))。作为一种新颖性,为了在每个通道中选择具有适当的雷诺数的适当的多孔介质,该研究集中于热交换器内外通道中使用的RE不对称和多孔介质特性的耦合。通过用于纳米流体流动的非达灵法和两相混合模型模拟通过多孔介质的流动。在有效性(EPSILON-NTU方法)和性能评估标准(PEC)方面提出和研究了结果。结果表明,有效性只能描绘热性能,而PEC反映了多孔介质对泵送动力和传热的影响。在两个通道中使用多孔介质(案例D)导致最高有效性(0.6和1之间)。此外,PEC的研究表明,在每个通道中的流动中存在最佳RE值,并且该情况D具有最高的PEC(超过4)。为了最大化PEC,对于仅具有一个多孔通道(B和C)的情况,不包括多孔介质的通道应该具有最高的RE,而应为多孔通道选择低或中等的RE。但是,对于案例D,RE-I应该具有最高值,而RE-O的最佳值在500到1000的范围内。

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