Thermal performance of ammonia-based thin flat loop heat pipe fabricated by additive manufacturing

IF 5 2区 工程技术 Q1 ENGINEERING, MECHANICAL International Journal of Heat and Mass Transfer Pub Date : 2024-11-05 DOI:10.1016/j.ijheatmasstransfer.2024.126382
Makoto Kamata , Kazuki Hayashi , Noriyuki Watanabe , Kazuhiro Nakazawa , Takeshi Tsuru , Yuki Akizuki , Hosei Nagano
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Abstract

A 3 mm thick loop heat pipe (LHP) charged with ammonia for the heat dissipation under low temperature environment was designed, fabricated, and evaluated experimentally. A thin and flat thermal path, which keeps the temperature of the heat source lower than -25 °C by dissipating 10 W heat load to the heat sink of -35 °C, is required for the imaging sensor for a satellite. In this study, a 3 mm thick loop heat pipe (LHP) charged with ammonia was proposed. The monolithic fabrication by additive manufacturing was utilized for the pressure resistant rib structure for high vapor pressure of ammonia. The LHP satisfying the required thermal performance and pressure resistivity was designed based on the simulation. The condenser of the fabricated LHP was connected to the cold plate, and the basic thermal performance was evaluated in the constant temperature chamber ranging the ambient temperature under the horizontal orientation. Under the ambient temperature of -35 °C, the evaporator temperature was -26.2 °C when 10 W heat load was applied; thus, the requirement was satisfied. The effective thermal conductivity of 6050–7730 W/(m·K) was shown when heat load of 5 to 15 W was applied under the ambient temperature ranging from -45 to 20 °C. The orientation dependence was also investigated under top heat and bottom heat orientation, and the similar performance as the horizontal orientation was observed. A power cycle test under horizontal orientation demonstrated the fast temperature response and hysteresis-free performance; thus, preferable characteristics as a thermal device was exhibited. The experimental results were compared with the simulation and agreed upon the simulation results.
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利用增材制造技术制造的氨基薄扁环形热管的热性能
为了在低温环境下进行散热,我们设计、制造并实验评估了一种充有氨气的 3 毫米厚环形热管(LHP)。卫星的成像传感器需要一个薄而平坦的热路径,通过向-35 °C的散热器耗散10 W的热负荷来保持热源温度低于-25 °C。本研究提出了一种充有氨气的 3 毫米厚环形热管(LHP)。利用增材制造技术进行整体制造,形成了适用于高蒸气压氨气的抗压肋骨结构。在模拟的基础上,设计出了满足热性能和耐压性要求的 LHP。将制作好的 LHP 冷凝器连接到冷板上,并在恒温室中评估了水平方向下环境温度范围内的基本热性能。在-35 °C的环境温度下,当施加 10 W 热负荷时,蒸发器温度为-26.2 °C,因此满足了要求。在环境温度为 -45 至 20 °C、热负荷为 5 至 15 W 时,有效热导率为 6050-7730 W/(m-K)。还研究了顶热和底热取向下的取向依赖性,观察到的性能与水平取向类似。在水平方向上进行的功率循环测试表明,该器件具有快速的温度响应和无滞后性能,因此具有作为热器件的优越性能。实验结果与模拟结果进行了比较,并与模拟结果一致。
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来源期刊
CiteScore
10.30
自引率
13.50%
发文量
1319
审稿时长
41 days
期刊介绍: International Journal of Heat and Mass Transfer is the vehicle for the exchange of basic ideas in heat and mass transfer between research workers and engineers throughout the world. It focuses on both analytical and experimental research, with an emphasis on contributions which increase the basic understanding of transfer processes and their application to engineering problems. Topics include: -New methods of measuring and/or correlating transport-property data -Energy engineering -Environmental applications of heat and/or mass transfer
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