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首页> 外文期刊>International Journal of Refrigeration >Experimental investigation on a mechanically pumped two-phase cooling loop with dual-evaporator
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Experimental investigation on a mechanically pumped two-phase cooling loop with dual-evaporator

机译:具有双蒸发器的机械泵送两相冷却回路的实验研究

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This paper describes a well-known space activate thermal control system, two-phase mechanically pumped cooling loop (MPCL) with two evaporators, in ground-based testing. Each evaporator has an outer diameter of 3 mm and a length of 10 m and the total loop of the system is about 40 m. Tests conducted mainly included stable operation tests under sinusoidal temperature boundary condition and unbalanced heat load tests. Experimental data showed that the loop operated stably at about 30℃ variation of the boundary temperature without any temperature overshoot. Meanwhile, the operating temperature could be controlled within ±0.1℃ of the set point temperature with the new design based on TECs. Furthermore, heat load unbalanced between the two evaporators was also successfully demonstrated that the loop has a heat transport capability to deal with the maximal unbalanced heat loads limitation as Top_Load/Bottom_Load = 0 W/160 W or Top_Load/ Bottom_Load = 130 W/0 W. When the heat load limitation is reached in one evaporator and a dry-out appears, some heat load employed on the other side such as 10 W will recover it to the set point evaporation temperature. In conclusion, important performance characteristics demonstrated by this MPCL included: (1) operation of the system about 30 m with a mechanical pump; (2) robustness and reliability of an MPCL with multiple evaporators; (3) effectiveness of TECs in controlling the MPCL operating temperature; (4) dealing with a large unbalanced heat load among MPCL evaporators; and (5) easy recovery from the pulse boiling or a dried out state.
机译:本文在地面测试中介绍了一种著名的空间激活热控制系统,即带有两个蒸发器的两相机械泵送冷却回路(MPCL)。每个蒸发器的外径为3 mm,长度为10 m,系统的总回路约为40 m。进行的测试主要包括在正弦温度边界条件下的稳定运行测试和不平衡的热负荷测试。实验数据表明,该环路在边界温度变化约30℃时稳定运行,而没有任何温度超调。同时,基于TEC的新设计可以将工作温度控制在设定温度的±0.1℃之内。此外,还成功证明了两个蒸发器之间的不平衡热负荷,表明回路具有传热能力,可以应对最大不平衡热负荷限制,例如Top_Load / Bottom_Load = 0 W / 160 W或Top_Load / Bottom_Load = 130 W / 0 W当在一个蒸发器中达到热负荷极限并出现干dry现象时,另一侧采用的一些热负荷(例如10 W)会将其恢复到设定蒸发温度。总之,此MPCL展示的重要性能特征包括:(1)系统在约30 m的机械泵下运行; (2)具有多个蒸发器的MPCL的坚固性和可靠性; (3)TEC在控制MPCL工作温度方面的有效性; (4)处理MPCL蒸发器之间较大的不平衡热负荷; (5)易于从脉冲沸腾或干燥状态中恢复。

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