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NUMERICAL AND EXPERIMENTAL INVESTIGATIONS ON LONGITUDINAL VORTEX GENERATOR FOR HEAT TRANSFER ENHANCEMENT IN RECTANGULAR CHANNEL

机译:矩形通道传热增强纵向涡流发电机的数值和实验研究

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In this article, longitudinal vortex generator (LVG) for heat transfer enhancement in rectangular channel is investigated numerically and experimentally. Two symmetrical delta shaped plates are placed vertically at the bottom of a rectangular channel and a pair of longitudinal vortices are generated and transferred downstream. These vortices were clockwise and counterclockwise, respectively. Correspondingly, the flow has the tendency to shoot to the surface opposite to the one with the LVG, then it separates into two steams and runs back to the LVG surface. Local heat transfer enhancement in the rectangular channel varies due to this fountain effect. Size effects were discussed for two types of LVG. With the same height, the wider LVG has better thermal performance within the rectangular geometry limit. One specific LVG was fabricated and tested experimentally and results show significant heat transfer enhancement. It indicated that the LVG can enhance the heat transfer significantly and the numerical results are reliable.
机译:在本文中,在数值和实验上研究了矩形通道中的传热增强的纵向涡流发生器(LVG)。在矩形通道的底部垂直放置两个对称的δ形板,并且在下游产生并转移一对纵向涡旋。这些涡流分别是顺时针和逆时针。相应地,流动具有与LVG的与液体相对的表面射击的趋势,然后将其分成两个蒸汽并返回到LVG表面。矩形通道中的局部传热增强由于该喷泉效应而变化。讨论了两种类型的LVG尺寸效应。具有相同的高度,更宽的LVG在矩形几何极限内具有更好的热性能。实验制造和测试一种特异性LVG,结果显示出显着的传热增强。它表明,LVG可以显着增强热传递,数值结果是可靠的。

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