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Heat Conduction Effect on Oscillating Heat Pipe Operation

机译:导热对振荡热管运行的影响

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摘要

The effect of heat conduction through the adiabatic section on the oscillating motion and heat transfer performance in an oscillating heat pipe (OHP) was investigated experimentally. Two, closed loop, six-turn OHPs were constructed: one with a separate copper block for the evaporator and condenser sections (split block design) and one using a single continuous copper block for the evaporator, adiabatic, and condenser sections (continuous block design). The results show that the presence of heat conduction directly from the evaporator wall to the adiabatic section and from the adiabatic section to the condenser of a heat pipe will reduce the oscillating amplitude of the evaporator, adiabatic, and condenser temperatures. It was also found that in addition to a higher level of temperature uniformity, the continuous block design results in better heat transfer performance than a heat pipe without conduction through the adiabatic section.
机译:实验研究了通过绝热部分的热传导对振荡热管(OHP)中的振荡运动和传热性能的影响。构造了两个闭环,六圈OHP:一个用于蒸发器和冷凝器部分的单独的铜块(分体式设计),另一个用于蒸发器,绝热和冷凝器部分的单独的连续铜块(连续式体设计) )。结果表明,直接从蒸发器壁到绝热段以及从绝热段到热管冷凝器的热传导会降低蒸发器的振荡幅度,绝热和冷凝器温度。还发现,除了更高的温度均匀性水平之外,连续块设计还比没有通过绝热段传导的热管产生更好的传热性能。

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