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Evaporation heat transfer characteristic of porous wick in an open capillary evaporator

机译:开孔蒸发器中多孔芯的蒸发传热特性

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An open capillary evaporator is proposed to study the evaporation heat transfer performance of porous wick. Both temperature and evaporating mass are measured in this system. Besides, the temperature and relative height of the supplied fluid can be adjusted. A composite porous wick is tested through the constant and variable heat load operation, and it reaches a maximum heat load of 320 W, which corresponds to a heat flux of 25.5 W/cm(2). Two types of the evaporator wall temperature curve are observed, and the effect of the initial condition is considered. Intermittent fluid supply appears and causes a temperature overshoot of the evaporator wall. But continuous intermittent fluid supply and small amount of fast-replenishing fluid does not cause the temperature overshoot. The influence of adding water on temperature overshoot is also studied. The boiling and evaporation occur at different heat loads, and the two heat transfer modes coexist at moderate heat load. The transition in heat transfer modes leads to that the evaporation heat transfer coefficient first increases and then decreases with the increase of heat load. This study is helpful to analyze the evaporation heat transfer performance of porous wick and understand the operating characteristics of loop heat pipe.
机译:提出了一种开放的毛细管蒸发器来研究多孔芯的蒸发传热性能。在该系统中测量温度和蒸发质量。此外,可以调节所提供的流体的温度和相对高度。通过恒定和可变热负荷操作测试复合多孔芯,并且达到320W的最大热负荷,其对应于25.5W / cm(2)的热通量。观察到两种类型的蒸发器壁温度曲线,考虑初始条件的效果。出现间歇性流体供应并导致蒸发器壁的温度过冲。但是连续间歇性流体供应和少量的快速补充液不会导致温度过冲。还研究了加水对温度过冲的影响。在不同的热负荷下发生沸腾和蒸发,并且两个传热模式在中等热负荷时共存。传热模式中的过渡导致蒸发传热系数首先增加,然后随热负荷的增加而降低。该研究有助于分析多孔芯的蒸发传热性能,了解环热管的操作特性。

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