首页> 外文期刊>International Journal of Heat and Mass Transfer >Pool boiling heat transfer enhancement over cylindrical tubes with water at atmospheric pressure, Part I: Experimental results for circumferential rectangular open microchannels
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Pool boiling heat transfer enhancement over cylindrical tubes with water at atmospheric pressure, Part I: Experimental results for circumferential rectangular open microchannels

机译:大气压下水在圆柱管上的池沸腾传热的增强,第一部分:圆周矩形开放微通道的实验结果

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摘要

A two-part experimental study is conducted on pool boiling heat transfer over enhanced cylindrical microchannel test surfaces with water at atmospheric pressure. The objective of this work is to investigate the heat transfer enhancement and study the effects of geometric parameters on the pool boiling performance of the open microchannel surfaces over circular tubes. The effects of the horizontal and vertical orientation on heat transfer enhancement are also studied. In this part of the study, the results for the circumferential rectangular microchannels are presented. A maximum heat transfer coefficient of 129kW/m~2K was achieved with test surface CRM3 in the horizontal orientation at a heat flux of 1095 kW/m~2. The corresponding values for the vertical orientation are 109 kW/m~2 K and 1093 kW/m~2, respectively. The critical heat flux limit was also extended by a factor of 1.6 or more over a plain tube.
机译:分为两部分的实验研究是在大气压下用水在增强的圆柱形微通道测试表面上进行池沸腾传热。这项工作的目的是研究传热的增强并研究几何参数对圆形管上开放微通道表面池沸腾性能的影响。还研究了水平和垂直方向对热传递增强的影响。在这部分研究中,介绍了圆周矩形微通道的结果。测试表面CRM3在水平方向上以1095 kW / m〜2的热通量实现了最大传热系数129kW / m〜2K。垂直方向的相应值分别为109 kW / m〜2 K和1093 kW / m〜2。在普通管上,临界热通量极限也扩大了1.6倍或更多。

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