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HFE-7100 pool boiling heat transfer and critical heat flux in inclined narrow spaces

机译:HFE-7100池在狭窄狭窄空间中的沸腾传热和临界热通量

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摘要

Experiments were performed to examine the pool boiling heat transfer and critical heat flux on a smooth copper circular surface, confined by a face-to-face parallel unheated surface, by changing both the orientation and the gap between the surfaces. Pool boiling data at atmospheric pressure were obtained for saturated HFE-7100. The gaps between the boiling surface and adiabatic one were 0.5, 1.0, 2.0, 3.5, 5.0, 10.0 and 20.0 mm. For each configuration, boiling curves were obtained up to the thermal crisis. The surface orientations investigated were 0° (horizontal upward surface), 45°, 90° and 135°. It was observed that the heat transfer coefficient improves at low wall superheat when the distance between heated and unheated surfaces decreases. However, at high wall superheat, a drastic reduction in heat transfer as well as CHF appears for confined boiling. For a fixed channel width, the CHF value strongly depends on the channel orientation, assuming a maximum value for near-vertical channels with up-facing heated surface. CHF data were compared with various literature correlations; a new empirical correlation that takes into account channel gap effects is proposed for horizontal confined surfaces.
机译:进行了实验,通过改变表面的方向和间隙,检查了光滑的铜圆形表面上的沸腾沸腾传热和临界热通量,该表面由面对面平行的未加热表面限制。对于饱和的HFE-7100,在大气压下获得了池沸腾数据。沸腾表面与绝热表面之间的间隙为0.5、1.0、2.0、3.5、5.0、10.0和20.0 mm。对于每种配置,均获得了直至热危机为止的沸腾曲线。研究的表面取向为0°(水平向上表面),45°,90°和135°。观察到,当加热和未加热表面之间的距离减小时,在低壁过热时传热系数提高。但是,在高壁过热情况下,密闭沸腾的传热和CHF急剧降低。对于固定的通道宽度,CHF值强烈取决于通道方向,假设加热表面朝上的近垂直通道的最大值。 CHF数据与各种文献相关性进行了比较;针对水平受限表面,提出了一种新的考虑通道间隙效应的经验相关性。

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