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Establishment, Verification and Application of a Correlation to Predict the Maximum Heat Flux of a Horizontal Closed-Loop Pulsating Heat Pipe

机译:预测水平闭环脉动热管最大热通量的相关性的建立,验证和应用

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Problem statement: In heat pipe design, it was very important to be sure that the desired heat pipe would not operate in the MHF state. In the case of a vertical CLPHP, the MHF state and maximum heat flux could be predicted by using the correlation, while, in the case of a horizontal CLPHP, there had been no study presented how to calculate the maximum heat flux. Therefore, it was necessary to establish the correlation. Approach: To establish a correlation to predict the maximum heat flux of a horizontal closed-loop pulsating heat pipe and to verify a reliability of the correlation which was used to predict the maximum heat flux of the heat pipe used in an actual application especially when geometrical variables, working fluid properties and also heating and cooling medium types were extremely different from variables, properties and mediums used in the study to establish the correlation. The correlation to predict the maximum heat flux of a horizontal CLPHP was established after actual cause and trends of various parameters obtained from past quantitative and qualitative studies were determined and analyzed. After that, the correlation was calculated to predict the maximum heat flux of a closed-loop pulsating heat pipe which was applied to be a flat plate solar collector. The closed-loop pulsating heat pipe was made from a copper capillary tube with the evaporator section length of 1.0 m, the condenser section length of 0.2 m and the inner diameter of 1.06 mm and bent into 75 turns. R134a was filled as working fluid. Results: The correlation was successfully established after analysis on trends of effects of geometrical variables on the maximum heat flux and analysis on sequence and cause of the maximum heat flux state were done. It was seen that the maximum heat fluxes calculated from the correlation were higher than actual heat fluxes that the heat pipe could transfer entire range of operation, in turn; they were higher than the heat fluxes at the normal operating state. Conclusion: It was found that the maximum heat flux of a horizontal closed-loop pulsating heat pipe could be accurately predicted with a coefficient of determination and standard deviation of 0.68 and35% respectively. In addition, the correlation has been verified that it could be reliably used to predict the maximum heat flux although variables were not in a range used in experiments for the correlation establishment.
机译:问题陈述:在热管设计中,确保所需的热管不会在MHF状态下运行非常重要。在垂直CLPHP的情况下,可以通过使用相关性预测MHF状态和最大热通量,而在水平CLPHP的情况下,没有研究提出如何计算最大热通量。因此,有必要建立相关性。方法:建立相关性以预测水平闭环脉动热管的最大热通量,并验证该相关性的可靠性,该相关性用于预测实际应用中尤其是几何形状的热管的最大热通量变量,工作流体特性以及加热和冷却介质类型与本研究中用于建立相关性的变量,特性和介质有很大不同。在确定和分析从过去的定量和定性研究获得的各种参数的实际原因和趋势之后,建立了预测水平CLPHP的最大热通量的相关性。此后,计算相关性以预测应用于平板太阳能集热器的闭环脉动热管的最大热通量。闭环脉动热管由蒸发器段长为1.0m,冷凝器段长为0.2m,内径为1.06mm的铜毛细管制成,弯曲成75匝。 R134a被填充为工作流体。结果:通过分析几何变量对最大热通量的影响趋势并分析了最大热通量状态的顺序和原因,成功建立了相关性。可以看出,根据相关性计算出的最大热通量要比热管可依次转移整个工作范围的实际热通量高。它们高于正常工作状态下的热通量。结论:发现水平闭环脉动热管的最大热通量可以准确确定,测定系数和标准偏差分别为0.68和35%。此外,相关性已被证实可以可靠地用于预测最大热通量,尽管变量不在相关性建立实验中使用的范围内。

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