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Study of the heat transfer capacity of thermosyphon cooling system under the inclined condition

机译:倾斜条件下热旋流式冷却系统的传热能力研究

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Machine applications with superconductors attract much interest in the industry. It is crucial to maintaining the operating temperature range between 28 K and 40 K for high-temperature superconductor (HTS) field poles. A thermosyphon (TS) is a suitable choice for HTS applications' cooling system. The cryo-mechanical system composition is simple, lightweight and based on natural convection therefore not using any mechanical pump. Considering the rotating application, an adiabatic tube is necessary to carry the cryogen from the vertical condenser portion toward the horizontal evaporator part. However, this tube shape prevents the natural convection when in an inclined configuration which can occur for applications such as ship propulsion and electrical aircraft motors or generators. In this work, we focused on and investigated the heat transfer capacity of TS for inclinations. The results show that the TS cooling system employing the coaxial tubes architecture maintained the natural convection even under inclined conditions
机译:具有超导体的机器应用吸引了对该行业的兴趣。对于高温超导体(HTS)场磁极,将工作温度范围保持在28 k和40k之间至关重要。热旋流素(TS)是HTS应用的冷却系统的合适选择。冷冻机械系统组合物简单,轻巧,基于自然对流,因此不使用任何机械泵。考虑到旋转施加,绝热管是必须从垂直冷凝器部分朝向水平蒸发器部分携带冷冻剂的。然而,当诸如船舶推进和电气飞机电动机或发电机之类的应用时,该管状可以防止自然对流。在这项工作中,我们专注于并调查了Ts倾斜的传热能力。结果表明,采用同轴管架构的TS冷却系统即使在倾斜条件下也保持自然对流

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