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Modulated porous wick evaporator for loop heat pipes: Experiment

机译:用于循环热管的模块化多孔芯吸式蒸发器:实验

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摘要

The available studies indicate the significantly enhanced pool boiling heat transfer by the modulated porous wick sintered on the heater wall. This paper sinters the modulated porous wick as the primary wick on the evaporator wall for loop heat pipes (LHPs). Three types of evaporators were fabricated to integrate with other LHP components: MWE (microchannel/wick evaporator), MME (modulated monoporous wick evaporator) and MBE (modulated biporous wick evaporator). Experiments were performed with water as the working fluid at various tilt angles. The major findings are (1) MBE LHP significantly shortens start-up time and stabilizes all temperatures during the steady operation; (2) MBE LHP decreased the evaporator wall temperatures by 20~50 ℃ at moderate or high heat loads compared with MWE LHP at similar conditions; (3) MBE LHP achieved the evaporator wall temperature of 63 ℃ at the heat load of 200 W for the anti-gravity operation, under which the heat flux attained 40 W/cm~2, which is 1.7~6.7 times of those reported in references; (4) MBE behaves the nucleate boiling heat transfer at small head loads, and film evaporation heat transfer at moderate or large heat loads; (5) A properly designed MBE LHP achieved better performance when the evaporator is above the condenser; (6) Effect of liquid charge ratios was studied with the best liquid charge ratio of 51.3%. The best geometric parameters for porous stacks and vapor channels, as well as the best particle size were obtained. The MBE multiscale behavior majorly accounts for the performance improvement: small pores (~μm scale) creating great capillary force for liquid suction, large pores (~10μm scale) between clusters increasing surface area for liquid film evaporation, and vapor channels (~mm scale) for vapor venting. Besides, small contact thermal resistance and reduced heat flow path in the evaporator also improve the LHP performance.
机译:现有的研究表明,通过在加热器壁上烧结的调制多孔芯,熔池沸腾的传热显着增强。本文在循环热管(LHP)的蒸发器壁上烧结调制多孔芯作为主要芯。制造了三种类型的蒸发器以与其他LHP组件集成在一起:MWE(微通道/芯吸蒸发器),MME(调制式单孔芯蒸发器)和MBE(调制的双孔芯蒸发器)。以水作为工作流体以各种倾斜角度进行了实验。主要发现是:(1)MBE LHP在稳定运行期间显着缩短了启动时间并稳定了所有温度; (2)MBE LHP与MWE LHP在相同条件下相比,在中等或高热负荷下,蒸发器壁温降低了20〜50℃。 (3)MBE LHP在200 W的热负荷下进行反重力操作时,蒸发器壁温达到63℃,在此条件下,热通量达到40 W / cm〜2,是文献报道的1.7到6.7倍。参考; (4)MBE在小扬程载荷下表现出核沸腾传热,在中等或大载荷下表现出膜蒸发传热; (5)当蒸发器在冷凝器上方时,设计合理的MBE LHP可获得更好的性能; (6)研究了液体装料比率的效果,最佳液体装料比率为51.3%。获得了多孔烟囱和蒸汽通道的最佳几何参数,以及最佳的粒径。 MBE多尺度行为主要是性能的改善:小孔(〜μm尺度)为吸液提供了巨大的毛细作用力,簇之间的大孔(〜10μm尺度)增加了液膜蒸发的表面积,并形成了蒸汽通道(〜mm尺度) )进行蒸汽排放。此外,较小的接触热阻和减少的蒸发器中的热流路径也提高了LHP性能。

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  • 来源
  • 作者单位

    State Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources, North China Electric Power University, Beijing 102206, China;

    The Beijing Key Laboratory of Multiphase Flow and Heat Transfer, North China Electric Power University, Beijing 102206, China;

    The Beijing Key Laboratory of Multiphase Flow and Heat Transfer, North China Electric Power University, Beijing 102206, China;

    The Beijing Key Laboratory of Multiphase Flow and Heat Transfer, North China Electric Power University, Beijing 102206, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Loop heat pipe; Evaporator; Heat transfer; Modulated porous wick;

    机译:回路热管;蒸发器传播热量;调制多孔芯;

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