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Experimental study of the liquid/vapor phase change in a porous media of two-phase heat transfer devices

机译:两相传热装置多孔介质中液/气相变化的实验研究

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The study presents an experimental examination of heat and mass transfer with phase change in a porous media composed of copper foam. The aim of the study involves separately examining the effect of the adverse hydrostatic head, subcooling at the wick inlet and wick properties (porosity and average pore diameter) on the heat and mass transfer inside porous media. The experimental results indicate that an increase in the adverse hydrostatic head from Delta h = 0.5 cm to Delta h = 2 cm increases the casing temperature of 5 degrees C for low heat loads and 40 degrees C for high heat loads owing the vapor breakthrough toward the wick inlet. The results also suggest that the heat transfer coefficient and the critical heat flux are reduced by approximately 27% (for a heat load of 106 W) and 17%, respectively for the same adverse hydrostatic head variation. The increase in the subcooling at the wick inlet reduces the thermal performance of the evaporator. With respect to wick property effects, the results indicate that the porosity and average pore diameter significantly impact the phase change phenomenon inside the porous wick and the casing temperature. There are optimal values of porosity and average pore diameter leading to the best thermal performance of the capillary evaporator.
机译:该研究呈现了由铜泡沫组成的多孔介质中的相变的热量和质量转移的实验检查。该研究的目的涉及单独检查不良静水头,在芯吸入物和芯子性质(孔隙率和平均孔径)上的效果对多孔介质内的热量和质量转移。实验结果表明,来自ΔH= 0.5cm至δH= 2cm的不利静水脊髓的增加将5摄氏度的壳体温度增加了5摄氏度,并且对于蒸汽突破朝向的蒸汽突破而增加40℃。威克入口。结果还表明传热系数和临界热通量分别在相同的不利静水压头变异中减小约27%(用于106W的热负荷106W)和17%。灯芯入口中的过冷的增加降低了蒸发器的热性能。关于威克属性效应,结果表明孔隙率和平均孔径显着影响多孔芯内部的相变现象和壳体温度。有孔隙率和平均孔径的最佳值,导致毛细管蒸发器的最佳热性能。

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