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Heat transfer characteristics of thermosyphon with N_2-Ar binary mixture working fluid

机译:N_2-Ar二元混合工作流体对热虹吸管的传热特性

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The N_2-Ar binary mixture is adopted as the working fluid of a cryogenic thermosyphon and the heat transfer performance of such thermosyphon is studied in the present research. The heat transfer of the binary mixture in the thermosyphon is discussed theoretically by considering the mass transfer of the components. Meanwhile, an experimental setup for investigating the heat transfer performance of the cryogenic thermosyphon is built. The condenser is cooled by the liquid nitrogen on the top and the evaporator is heated circumferentially by the resistive wire. The N_2-Ar binary mixture is charged into the cryogenic thermosyphon in different compositions, including pure N_2 and pure Ar. It is found that the N_2-Ar binary mixture can widen the operational temperature range of the cryogenic thermosyphon and it can work in the range of 64.0-150.0 K. The dry-out limit appears in the experiments for the cases with Ar fraction below 0.503. The heat transfer rate of the dry-out limit increases with the increase of Ar molar fraction until film boiling appears on the top of the condenser. The heat transfer rate limited by the film boiling can be determined based on the empirical correlations that are used to estimate the critical heat flux of liquid nitrogen boiling on the plate. The heat transfer processes in the evaporator and the condenser are discussed, and the thermal resistances are calculated by empirical correlations. The calculated results agree well with the experimental results.
机译:采用N_2-Ar二元混合物作为低温热虹吸管的工作流体,研究了这种热虹吸管的传热性能。理论上通过考虑组分的质量传递来讨论热虹吸管中二元混合物的热传递。同时,建立了用于研究低温热虹吸管传热性能的实验装置。冷凝器在顶部被液氮冷却,而蒸发器被电阻丝沿圆周加热。将N_2-Ar二元混合物以不同的成分(包括纯N_2和纯Ar)装入低温热虹吸管中。发现N_2-Ar二元混合物可以拓宽低温热虹吸管的工作温度范围,并且可以在64.0-150.0 K的范围内工作。对于Ar分数低于0.503的情况,实验中出现了干燥极限。干燥极限的传热速率随着Ar摩尔分数的增加而增加,直到薄膜沸腾出现在冷凝器的顶部。可以根据经验相关性确定受薄膜沸腾限制的传热速率,该经验相关性用于估计板上的液氮沸腾的临界热通量。讨论了蒸发器和冷凝器中的传热过程,并通过经验相关性计算了热阻。计算结果与实验结果吻合良好。

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