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Effect of non-condensable gas on the startup of a loop heat pipe

机译:不凝性气体对回路热管启动的影响

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摘要

It is essential to address the startup issues prior to the wide application of loop heat pipes (LHPs) in both space and terrestrial surroundings. As non-condensable gas (NCG) is an important factor affecting the startup behavior, its effects on the startup performance of an ammonia-stainless steel LHP with and without preconditioning were experimentally investigated in this work. Nitrogen with controlled amounts was used to simulate the NCG, and the temperature overshoot, liquid superheat and startup time were employed as the evaluation criteria. Four situations relating to initial liquid/vapor distribution in the evaporator were examined: (1) both evaporator core and vapor grooves are filled with liquid, (2) vapor exists in vapor grooves and the evaporator core is filled by liquid, (3) vapor grooves are filled by liquid and vapor exists in the evaporator core, and (4) vapor exists in both evaporator core and vapor grooves. Experimental results showed that with NCG presence in the LHP, the startup could only proceed in situation 1 with preconditioning, while it could proceed in situations 1, 3 or 4 without preconditioning. For the startup in situation 1, a larger NCG inventory led to much degraded startup performance, and a higher startup heat load could benefit the startup. For the startup in situation 3, the most difficult startup situation, NCG resulted in a very high temperature overshoot, which may even exceed the maximum allowable value. For the startup in situation 4, the existence of NCG in the vapor grooves could facilitate the evaporation there, leading to a very desirable startup.
机译:在环路热管(LHP)在空间和地面环境中广泛应用之前,必须解决启动问题。由于不可冷凝气体(NCG)是影响启动行为的重要因素,因此在这项工作中,通过实验研究了其对带预处理和不带预处理的氨不锈钢LHP的启动性能的影响。以控制量的氮气模拟NCG,以温度超调,液体过热和启动时间为评估标准。检查了与蒸发器中初始液体/蒸气分布有关的四种情况:(1)蒸发器芯和蒸气槽都充满了液体,(2)蒸气槽中存在蒸气,蒸发器芯被液体充满了,(3)蒸气槽被液体填充,并且蒸发器芯中存在蒸气,并且(4)蒸发器芯和蒸气槽中均存在蒸气。实验结果表明,在LHP中存在NCG的情况下,启动只能在情况1中进行预处理,而在情况1、3或4中无需进行预处理就可以进行。对于处于情况1的启动,更大的NCG库存会导致启动性能大大降低,并且更高的启动热负荷可能会使启动受益。对于情况3(最困难的启动情况)下的启动,NCG导致非常高的温度过冲,甚至可能超过最大允许值。对于情况4中的启动,蒸气槽中存在NCG可以促进那里的蒸发,从而导致非常理想的启动。

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