累加器(密码学)
过冷
机械
热电效应
液压蓄能器
物理
毛细管作用
热电冷却
控制理论(社会学)
温度控制
动压
水冷
控制系统
压力控制
压力梯度
热力学
饱和(图论)
低温泵
蒸汽压
温度梯度
工作液
材料科学
内压
压缩流体
热交换器
分离器(采油)
运动仿真
循环(图论)
作者
Jieni Wang,Jingzhi Zhou,Qihan Chen,Kai Zhang,Xunfeng Li
摘要
To address the challenge of dynamic regulation of phase-change pressure in a mechanically pumped two-phase loop system in microgravity, this paper proposes a two-phase thermally controlled accumulator with a longitudinal gradient capillary wick. The stability and responsiveness of the system pressure are investigated. A streamlined, integrated two-phase experimental apparatus is established to systematically analyze the dynamic variations in pressure and thermodynamic behavior at different initial subcooling levels and vapor volume change rates. The results indicate that the accumulator's design can autonomously regulate internal fluid distribution and maintain a relatively stable vapor volume, thereby mitigating pressure oscillations induced by the interchange of working fluid mass. Furthermore, the variations in reservoir saturation temperature are confined to 1.1 °C without active regulation. The influence of subcooling on system pressure variations during phase change is also discussed, indicating that an active control strategy involving external cooling and internal heating for thermoelectric coolers should be implemented. This study provides a qualitative foundation for optimizing the accumulator structure and formulating the active control strategy.
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