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Effect of a flow behavior on the thermal performance of closed-loop and closed-end pulsating heat pipes

机译:流动行为对闭环和闭端脉动热管热性能的影响

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In this study, the effect of a flow behavior is taken into account to determine which type of a pulsating heat pipe (PHP) performs better between a closed-loop pulsating heat pipe (CLPHP) and a closed-end pulsating heat pipe (CEPHP). The thermal performances of a CLPHP and a CEPHP are experimentally evaluated and compared. For this, MEMS techniques are used to fabricate silicon-based PHPs with ten turns. Pyrex glass covers the etched silicon wafer to visualize the flow behavior inside the PHPs. The PHPs have rectangular channels with a hydraulic diameter of 923μm. Ethanol and R-134a are used as the working fluids. Based on the experimental data, a criterion of a diameter ratio (D_hD_(h,crit)) is proposed to quantify the effect of a flow behavior on the thermal performance of two types of PHPs. A CEPHP performs better than a CLPHP when D_h/D_(h,crit) < 0.5. In the case of PHPs filled with ethanol (D_h/D_(h,crit) = 0.29), the CEPHP shows 33% lower thermal resistance and 20% higher maximum allowable heat flux than the CLPHP. In this case, an oscillation mode is observed inside both types of PHPs. In contrast, a CLPHP performs better than a CEPHP when D_h/D_(h,crit) > 0.5. In the case of PHPs filled with R-134a (D_h/D_(h,crit) = 0.69), the CLPHP shows 72% lower thermal resistance and 117% higher maximum allowable heat flux than the CEPHP. In this case, a circulation mode is observed inside the CLPHP, while an oscillation mode is observed inside the CEPHP. To explain why one type of PHP performs better than the other, an average volumetric fraction is introduced. An average volumetric fraction in the condenser section is experimentally shown to be a major contributor to the thermal performance; an increase of the average volumetric fraction in the condenser section leads to an improvement of the thermal performance due to enhanced latent heat transfer in the condenser section.
机译:在这项研究中,要考虑流动行为的影响,以确定哪种类型的脉动热管(PHP)在闭环脉动热管(CLPHP)和闭端脉动热管(CEPHP)之间表现更好。实验评估和比较了CLPHP和CEPHP的热性能。为此,MEMS技术用于制造十匝的硅基PHP。派热克斯玻璃覆盖蚀刻的硅晶片,以可视化PHP内部的流动行为。 PHP具有水力直径为923μm的矩形通道。乙醇和R-134a用作工作流体。基于实验数据,提出了直径比(D_h D_(h,crit))的准则,以量化流动行为对两种PHP的热性能的影响。当D_h / D_(h,crit)<0.5时,CEPHP的性能优于CLPHP。如果PHP充满乙醇(D_h / D_(h,crit)= 0.29),则CEPHP的热阻比CLPHP低33%,最大允许热通量高20%。在这种情况下,在两种类型的PHP中都观察到振荡模式。相反,当D_h / D_(h,crit)> 0.5时,CLPHP的性能要优于CEPHP。对于装有R-134a的PHP(D_h / D_(h,crit)= 0.69),CLPHP的热阻比CEPHP低72%,最大允许热通量高117%。在这种情况下,在CLPHP内部观察到循环模式,而在CEPHP内部观察到振荡模式。为了解释为什么一种类型的PHP性能优于另一种类型的PHP,引入了平均体积分数。实验表明,冷凝器部分的平均体积分数是热性能的主要贡献者。由于冷凝器部分中潜热传递的增强,冷凝器部分中平均体积分数的增加导致热性能的改善。

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  • 来源
    《International Journal of Heat and Mass Transfer》 |2020年第3期|119251.1-119251.9|共9页
  • 作者

  • 作者单位

    Department of Mechanical Engineering Korea Advanced Institute of Science and Technology 291 Daehak-ro Daejeon 34141 Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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