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Characteristics of low-temperature short heat pipes with a nozzle-shaped vapor channel

机译:喷嘴状蒸气通道的低温短热管的特性

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摘要

This paper presents the results of experimental and numerical studies of heat transfer and swirling pulsating flows in short low-temperature heat pipes whose vapor channels have the form of a conical nozzle. It has been found that as the evaporator of the heat pipe is heated, pressure pulsations occur in the vapor channel starting at a certain threshold value of the heat power, which is due to the start of boiling in the evaporator. The frequency of the pulsations has been measured, and their dependence on the superheat of the evaporator has been determined. It has been found that in heat pipes with a conical vapor channel, pulsations occur at lower evaporator superheats and the pulsation frequency is greater than in heat pipes of the same size with a standard cylindrical vapor channel. It has been shown that the curve of the heat-transfer coefficient versus thermal load on the evaporator has an inflection corresponding to the start of boiling in the capillary porous evaporator of the heat pipe.
机译:本文介绍了在短的低温热管中传热和涡旋脉动流的实验和数值研究的结果,这些短热管的蒸汽通道为圆锥形喷嘴。已经发现,当加热热管的蒸发器时,由于热蒸发器中开始沸腾,从热功率的某个阈值开始在蒸汽通道中产生压力脉动。已经测量了脉动的频率,并且已经确定了它们对蒸发器过热的依赖性。已经发现,在具有锥形蒸气通道的热管中,在较低的蒸发器过热处产生脉动,并且脉动频率大于具有标准圆柱形蒸气通道的相同尺寸的热管中的脉动频率。已经表明,在蒸发器上的传热系数对热负荷的曲线具有与在热管的毛细管多孔蒸发器中开始沸腾相对应的弯曲。

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