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Capillary Limit in a Loop Heat Pipe with Dual Evaporators

机译:带有双蒸发器的环路热管中的毛细管极限

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This paper describes a study on the capillary limit of a loop heat pipe (LHP) with two evaporators and two condensers.Both theoretical analysis and experimental invsetigation are performed.Experimental tests conducted include heat load to one evaporator only,even heat loads to both evaportors,and uneven heat loads to both evaporators.Test results show that after the capillary limit is exceeded,vapor will penetrate through the wick of the weaker evaporator,and the compensation chamber (CC) of that evaporator will control the loop operating temperature regardless of which CC has been in control prior to the event.Because the evaporator can tolerate vapor bubbles,the loop can continue to work after vapor pentration.As the loop operating temperature increases,the system pressure drop actually decreases due to a decreases in liquid and vapor vicositie.Thus,the loop may reach a new steady state at a higher operating temperature after vapor penetration.Furthermore,this process can be repeated wtih a modest increase in the heat load each time the capillary limit is exceeded until the evaporator temperature exceeds the maximum allowable value.When the heat load is applied to onhly one of the evaporators,the capillary limit can be identified by a rapid increase in the operating temperature and in the temperature difference between the evaporator and the CC.However,it is more difficult to identify when the capillary limit is exceeded if the heat load is applied to both evaporators.In all cases,the loop can recover by reducing the heat load to the loop.
机译:本文描述了在环路热管(LHP)与两个蒸发器和两个condensers.Both理论分析和实验invsetigation毛细管极限的研究是进行performed.Experimental试验包括热负荷一个蒸发器只,甚至热负荷两者evaportors和不均匀的热负荷两者evaporators.Test结果表明,在超过极限的毛细管后,蒸气将通过较弱的蒸发器的吸液芯穿透,而蒸发器的补偿室(CC)将控制回路的运行温度无论哪个CC已经之前event.Because一直在控制蒸发器可以容忍的蒸汽泡,环路可以蒸气pentration.As环路工作温度升高后继续工作,系统的压降实际上减少由于在液体和蒸气vicositie一个减小。因此,环路可以在蒸气penetration.Furthermore后一个较高的工作温度达到新的稳定状态,这个过程可以重复wtih每当超过毛细管限制,直到蒸发器的温度超过最大允许值。当该热负荷被施加到,毛细管限制可以通过在一个快速增加来鉴定该蒸发器中的一个onhly时间适度增加的热负荷工作温度和在蒸发器和CC.However之间的温度差,所以比较难以识别时,如果热负荷被施加到两个evaporators.In所有的情况下在超过极限的毛细管,环可以通过减小热回收加载到环路。

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