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The numerical investigation of heat transfer and pressure drop of turbulent flow in a triangular microchannel

机译:三角形微通道中湍流传热和压力下降的数值研究

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摘要

In this presentation, the flow and heat transfer inside a microchannel with a triangular section, have been numerically simulated. In this three-dimensional simulation, the flow has been considered turbulent. In order to increase the heat transfer of the channel walls, the semi-truncated and semi-attached ribs have been placed inside the channel and the effect of forms and numbers of ribs has been studied. In this research, the base fluid is Water and the effect of volume fraction of Al2O3 nanoparticles on the amount of heat transfer and physics of flow have been investigated. The presented results are including of the distribution of Nusselt number in the channel, friction coefficient and Performance Evaluation Criterion of each different arrangement. The results indicate that, the ribs affect the physics of flow and their influence is absolutely related to Reynolds number of flow. Also, the investigation of the used semi-truncated and semi-attached ribs in Reynolds number indicates that, although heat transfer increases, but more pressure drop arises. Therefore, in this method, in order to improve the heat transfer from the walls of microchannel on the constant heat flux, using the pump is demanded.
机译:在该呈现中,在数值模拟了具有三角形部分的微通道内的流动和传热。在这三维模拟中,流动已被认为是湍流的。为了增加沟道壁的传热,已经放置在通道内部的半截短和半连接肋,并且已经研究了肋骨的形式和数量的效果。在该研究中,基础流体是水,研究了Al 2 O 3纳米颗粒的体积分数对热传递量和流动物理量的影响。所提出的结果包括在通道,摩擦系数和每个不同布置的效果评估标准中的孤立数的分布。结果表明,肋骨影响流动的物理学,它们的影响绝对是与雷诺流量的流量。而且,雷诺数中使用的半截短和半连接肋的研究表明,尽管传热增加,但出现了更多的压降。因此,在该方法中,为了提高从微通道壁的热传递,要求使用泵。

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