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Full visualization and startup performance of an ammonia pulsating heat pipe

机译:氨脉动热管的全面可视化和启动性能

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In this paper, a novel study on full visualization and startup performances of pulsating heat pipe using ammonia as working fluid are experimented. The tested pulsating heat pipe, consisting of 6 turns, is fully made of quartz glass tubes with 6mm outer diameter and 2mm inner diameter. The filling ratio is 70%. Wall temperature fluctuations of several key positions are recorded under a series charge of heat inputs. The visualization investigation is conducted to observe the oscillations and circulation flows with the advantage of high quality digital video camera, by which the unique thermodynamic behaviors are able to recognize and analyze more easily. The experimental results show that the startup power required by the ammonia Pulsating Heat Pipe (PHP) is very small, owing to particular identities of ammonia. It is observed that there are also some unevenly distributions in slug-train during initial and operating state. Phenomena such as circulation flows and local oscillations coupling breaking up of bubbles and formation of slugs are observed.
机译:本文对以氨为工作液的脉动热管的全可视化和启动性能进行了新颖的研究。经过测试的脉动热管由6匝组成,完全由石英玻璃管制成,外径为6mm,内径为2mm。填充率为70%。在一系列热输入的作用下,记录了几个关键位置的壁温波动。借助高质量的数码摄像机进行可视化研究,以观察振荡和循环流,从而可以更轻松地识别和分析独特的热力学行为。实验结果表明,由于氨的特殊性,氨脉动热管(PHP)所需的启动功率很小。可以看出,在初始和运行状态下,弹头运动中也存在一些不均匀的分布。观察到诸如循环流和局部振荡的现象,这些现象耦合了气泡的破裂和弹头的形成。

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