Study of the thermal characteristics of propellant tanks in microgravity and its application to propellant gauging

Zhoumo Zeng, Hexin Gao, Jin Zhang, Xiaobo Rui, Lei Qi, Yong Chen, Zongyu Wu, Yuhao Cui, Yao Yu, Yu Wu, Yu Zhang
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Abstract

The use of the thermal propellant gauging(TPG) method in mass detection of propellant in aerospace tanks inevitably involves the continuous heating of the tank, and the understanding of the heat transfer mechanism of the tanks in a microgravity environment plays a guiding role in the implementation of the TPG. In this paper, the thermal characteristics of propellant tanks under microgravity are investigated by simulation and it is found that with the weakening of gravity, the heat transfer slows down and 'heat concentration' occurs in the vicinity of the heater. The effect of this property on the implementation of the TPG was then investigated by simulation, and it was found that in the microgravity environment, the accuracy of the TPG detection can be improved by adjusting the locations of the heaters and temperature sensors on the external side of the tank wall.
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研究微重力状态下推进剂贮箱的热特性及其在推进剂测量中的应用
采用热推进剂测量(TPG)方法对航天贮箱中的推进剂进行质量检测,不可避免地要对贮箱进行持续加热,了解贮箱在微重力环境下的传热机理对 TPG 的实施具有指导作用。本文通过模拟研究了推进剂贮箱在微重力环境下的热特性,发现随着重力的减弱,热传递速度减慢,加热器附近会出现 "热集中 "现象。然后通过模拟研究了这一特性对 TPG 实施的影响,发现在微重力环境下,通过调整加热器和温度传感器在贮箱壁外侧的位置,可以提高 TPG 检测的准确性。
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