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THERMAL AND VISUAL OBSERVATION OF WATER AND ACETONE OSCILLATING HEAT PIPES

机译:水和丙酮振荡热管的热和肉眼观察

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Identical oscillating heat pipes (OHP) charged separately with water and acetone were observed thermally and visually at varying condenser temperatures and heat inputs. Neutron radiography allowed visualization of hydrogen rich liquid water and acetone within the copper OHP. Four identical 6 turn OHPs were constructed; two as open loop and two close loop. One set of open and close loop OHP was charged with acetone and an open and close loop OHP were charged with water at fill ratios of 50%. The OHPs were also instrumented with 24 thermocouples, heated with a strip heater and cooled with heavy water. Both thermal and visual data were collected simultaneously. The experiments show that at low heat flux and condenser temperature, the acetone OHP performed better than the water OHP. Using neutron radiography, the acetone OHP was seen to have higher fluid velocity than the water OHP. The fluid flow pattern was also more consistent throughout the entire close loop acetone OHP including full circulation of the fluid. The close loop water OHP never fully circulates through the turn connecting the two sides. Lastly, neutron radiography shows that the open loop OHPs not only have less fluid motion at the side turns, the interior turns also have reduced fluid motion compared to the close loop OHPs.
机译:在不同的冷凝器温度和热量输入下,从视觉上观察到分别装有水和丙酮的相同振荡热管(OHP)。中子射线照相可以观察到OHP铜中的富氢液态水和丙酮。构造了四个相同的6转OHP。两个为开环,两个为闭环。在一组开环和闭环OHP中装入丙酮,在开环和闭环OHP中装入水,填充率为50%。还为OHP配备了24个热电偶,并通过带状加热器加热并用重水冷却。同时收集热和视觉数据。实验表明,在低热通量和冷凝器温度下,丙酮OHP的性能优于水OHP。使用中子射线照相术,可以看出丙酮OHP的流速高于水OHP的流速。在整个闭环丙酮OHP包括整个流体循环中,流体的流动模式也更加一致。闭环水OHP永远不会通过连接两侧的转弯完全循环。最后,中子射线照相表明,与闭环OHP相比,开环OHP不仅在侧弯处具有较小的流体运动,而且内弯也具有减小的流体运动。

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