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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Experimental investigation and a new predictive tool for thermal performance of pulsating heat pipes
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Experimental investigation and a new predictive tool for thermal performance of pulsating heat pipes

机译:脉动热管热性能的实验研究及新预测工具

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In the present study, binary-fluid-charged uniform and nonuniform flat plate closed loop pulsating heat pipes (FP-CLPHP) are experimentally investigated in comparative manner, and a novel correlation with innovative point of view is derived over a consolidated database. In the experimental process, three different filling ratio (30, 50, 70), three different volumetric mixing ratio (W:M = 1:1, W:M = 1:3, W:M = 3:1) and two different inclination angle (0 degrees and 90 degrees) are taken into consideration. The angles represent the conditions with and without gravity support, and the mixtures are constituted by mixing water (W) and methanol (M). It is concluded that uniform FP-CLPHP cannot operate at horizontal position (0 degrees), while nonuniform design can operate nearly independent from orientation or gravity support. The mixture of W:M = 1:3 provides optimum conditions from the perspective of thermal performance. A new-type-correlation including cross-sectional ratio is proposed in the form of non-dimensional thermal resistance (R-Nth). The mean absolute error of the correlation is 14.7, and it can successfully predict 90.7 of the experimental data in +/- 30 error band. The correlation directly gives useful information about a FP-CLPHP can work or not work, and how its performance can be improved. The values of R-Nth lower than 0.65 correspond to successful operation of FP-CLPHPs.
机译:本研究通过对比研究了二元流体带电均匀和非均匀平板闭环脉动热管(FP-CLPHP)的实验研究,并在统一数据库上推导了具有创新观点的新相关性。在实验过程中,考虑了三种不同的填充比例(30%、50%、70%)、三种不同的体积混合比(W:M=1:1、W:M=1:3、W:M=3:1)和两种不同的倾角(0度和90度)。角度表示有和没有重力支撑的条件,混合物由水 (W) 和甲醇 (M) 混合构成。结果表明,均匀的FP-CLPHP不能在水平位置(0度)下工作,而非均匀设计几乎可以独立于方向或重力支撑。从热性能的角度来看,W:M = 1:3的混合物提供了最佳条件。以无量纲热阻(R-Nth)的形式提出了一种包括截面比的新型相关性。相关性的平均绝对误差为14.7%,在+/- 30%的误差范围内可以成功预测90.7%的实验数据。这种相关性直接提供了有关FP-CLPHP可以工作或不能工作的有用信息,以及如何提高其性能。R-Nth 的值低于 0.65 对应于 FP-CLPHP 的成功运行。

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