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Heat-Transfer Analysis in Heat Sink Embedded with a Thermosyphon

机译:嵌入热虹吸管的散热器中的传热分析

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A mathematical model for predicting the heat-transfer performance in a heat sink embedded with a closed two-phase thermosyphon is presented. The model includes boiling heat transfer in the evaporator, vapor flow influence on condensation heat transfer, and the effects of fin surface areas and airflow rates on the convection heat transfer. The results obtained from the model indicate that the heat-transfer resistance occurring in the evaporator is the primary factor affecting the total temperature drop in the heat sink embedded with a thermosyphon. Although the effect of vapor flow on the condensation heat transfer can be neglected, the condensation heat transfer in the condenser significantly depends on the type of working fluid. In addition, a new relationship between heat transfer and flow characteristics in terms of the Colburn factor j_H and the Reynolds number was developed to predict the forced airflow effect on the fin-tube condenser's heat-transfer performance. A correlation for boiling heat transfer occurring in the evaporator was also determined experimentally. To verify the prediction, an experimental investigation was conducted to measure the temperature drops from the evaporator to the forced airflow in the heat sink embedded with a thermosyphon charged with acetone. The results of this investigation will assist in the development of high heat-flux cooling devices capable of operating at power levels up to 120 W/cm2 with a low temperature drop.
机译:提出了一种数学模型,用于预测嵌有封闭两相热虹吸管的散热器中的传热性能。该模型包括蒸发器中的沸腾传热,蒸汽流对冷凝传热的影响以及翅片表面积和气流速率对流传热的影响。从模型获得的结果表明,蒸发器中发生的传热阻力是影响嵌有热虹吸管的散热器中总温度下降的主要因素。尽管可以忽略蒸气流对冷凝热传递的影响,但冷凝器中的冷凝热传递很大程度上取决于工作流体的类型。此外,根据科尔本因子j_H和雷诺数,传热和流动特性之间建立了新的关系,以预测强制气流对翅片管冷凝器传热性能的影响。还通过实验确定了在蒸发器中发生的沸腾传热的相关性。为了验证该预测,进行了一项实验研究,以测量从蒸发器到装有装有丙酮的热虹吸管的散热器中的强制气流的温度下降。这项研究的结果将有助于开发高热通量冷却设备,该设备能够在高达120 W / cm2的功率水平下运行且具有较低的温度降。

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