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Thermal Resistance of a Rotating Closed-Loop Pulsating Heat Pipe: Effect of Centrifugal Accelerations

机译:旋转闭环脉动热管的热阻:离心加速度的影响

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Objective of this study is to experimentally investigate the effect of centrifugal accelerations on thermal resistance of the rotating closed-loop pulsating heat pipe (RCLPHP). The RCLPHPs were made of a copper tube with internal diameter of 1.50 and 1.78 mm and bent into flower's petal-shape and arranged into a circle with 11 turns. The evaporator section located at the outer end of the bundle while the condenser section placed around the center of the RCLPHP with no adiabatic section. Both sections had an identical length of 50 mm. R123, and ethanol was filled as working fluid respectively. The RCLPHP was installed on the test rig and it was rotated by the DC motor at the centrifugal acceleration of 0.5, 1, 3, 5, 10, and 20 times of the gravitational acceleration considering at the connection between the evaporator and condenser section. Heat input was generated by electrical annular-plate heaters and varied from 30 to 50, 100, 150, and 200 W. Ceramic papers, wooden plate, and insulation sheet were consecutively attached on the outer side of the heaters in order to prevent the heat loss from the heater. It can be concluded that when the centrifugal acceleration increases, the thermal resistance continuously decreases since the condensate flows back to the evaporator section more rapidly.
机译:本研究的目的是通过实验研究离心加速度对旋转闭环脉动热管(RCLPHP)的热阻的影响。该rclphps由内径为1.50和1.78mm的铜管制成,并弯曲成花瓣形,并布置成11圈的圆圈。位于束的外端的蒸发器部分,而冷凝器部分放置在rclphp的中心,没有绝热部分。两段的相同长度为50毫米。 R123和乙醇分别作为工作流体填充。在试验台上安装了RCLPHP,并通过DC电动机在考虑在蒸发器和冷凝器部分之间的连接时的重力加速度的离心机加速度为0.5,1,3,5,10和20次的直流电动机旋转。热输入由电环形板加热器产生,并且在30至50,100,150和200W中变化。陶瓷纸,木板和绝缘板是连续连接在加热器的外侧,以防止热量从加热器中丢失。可以得出结论,当离心式加速度增加时,由于冷凝物流回到蒸发器部分,热阻连续减小。

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