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首页> 外文期刊>International Communications in Heat and Mass Transfer >Heat transfer enhancement in pool boiling of liquid nitrogen using a low thermal conductive layer with openings
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Heat transfer enhancement in pool boiling of liquid nitrogen using a low thermal conductive layer with openings

机译:使用带开口的低导热层的液氮池沸腾的热传递增强

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摘要

A method of enhancing the heat transfer of a metal surface in pool boiling of liquid nitrogen by attaching a low thermal conductive layer with openings was proposed and evaluated. This method was proposed to improve a previously investigated method that used a layer without openings and had a low heat flux in a smaller degree of superheat range. Five surfaces of a copper plate, 6 mm in thickness and 50 mm in width and depth, were covered with polystyrene foam. The copper plate was soaked in liquid nitrogen, and its temperature variation was observed. The results indicate that the temperature of the plate with a layer having openings decreased three times faster than that of the plate without a layer. Furthermore, the temperature of the plate with a layer having openings decreased faster than that of the plate with a layer not having any openings. The heat flux of the plate with a layer having openings increased in both low and high degree of superheat ranges.
机译:提出了一种通过附着具有开口的低导热层的低导热层来增强液氮泡沫沸腾中金属表面的传热的方法。 提出了该方法以改善使用没有开口的层的先前研究的方法,并且在较小程度的过热范围内具有低热量通量。 用聚苯乙烯泡沫覆盖铜板的五个厚度和50mm的厚度为50mm的表面。 将铜板浸泡在液氮中,并且观察其温度变化。 结果表明,具有开口的层的板的温度比没有层的板更快地降低三倍。 此外,具有开口的层的板的温度比具有不具有任何开口的层的层的速度更快地降低。 具有开口的层的板的热通量在低和高度的过热范围内增加。

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