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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental investigation of the thermal management of flat-plate closed-loop pulsating heat pipes with interconnecting channels
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Experimental investigation of the thermal management of flat-plate closed-loop pulsating heat pipes with interconnecting channels

机译:具有连通通道的平板式闭环脉动热管热管理的实验研究

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A desired circulatory flow in flat-plate closed-loop pulsating heat pipes (FP-CLPHPs), which may ameliorate electronic thermal management, was achieved by using the new idea of interconnecting channels (ICs) to decrease flow resistance in one direction and increase the total heat transfer of fluid. In order to experimentally investigate the effects of the IC, two aluminum flat-plate thermal spreaders one with ICs (IC-FP-CLPHP) and one without them were fabricated. The FP-CLPHPs were charged with ethanol as working fluid with filling ratios of 35%, 50%, 65%, and 80% by volume. Performance of interconnecting channels in different heat inputs was explored, and the results demonstrated the higher performance of pulsating heat pipes with ICs in comparison with heat pipes without them in a wide range of heat inputs and filling ratios. It has been observed that the most efficient performance of IC-FP-CLPHP occurred at the filling ratio of 65%. Flow visualization indicated that interconnecting channels affect the flow regime and enhance flow circulation and heat transfer in CLPHPs. In furtherance of investigating the viability of the idea, a numerical procedure has been followed on a single-phase liquid to show the role of interconnecting channels in achieving one-way flow. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过使用互连通道(IC)的新思想来减小一个方向的流动阻力并增加通气量,可以在平板式闭环脉动热管(FP-CLPHP)中获得理想的循环流量,从而改善电子热管理。流体的总热传递。为了实验研究IC的效果,制造了两块铝制平板散热器,其中一个带有IC(IC-FP-CLPHP),另一个没有IC。 FP-CLPHP装有乙醇作为工作流体,其填充率为35%,50%,65%和80%(体积)。探究了在不同热输入中互连通道的性能,结果表明,在没有大范围的热输入和填充率的情况下,带有IC的脉动热管与不带IC的热管相比,具有更高的性能。已经观察到,IC-FP-CLPHP的最有效性能出现在65%的填充率下。流动可视化表明,相互连通的通道会影响流态,并增强CLPHP中的流动循环和传热。为了进一步研究该想法的可行性,对单相液体进行了数值模拟,以显示互连通道在实现单向流动中的作用。 (C)2015 Elsevier Ltd.保留所有权利。

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