首页> 外文期刊>International Journal of Heat and Mass Transfer >Visualization of convective boiling heat transfer in single microchannels with different shaped cross-sections
【24h】

Visualization of convective boiling heat transfer in single microchannels with different shaped cross-sections

机译:具有不同形状横截面的单个微通道中对流沸腾传热的可视化

获取原文
获取原文并翻译 | 示例
           

摘要

Convective boiling in transparent single microchannels with similar hydraulic diameters but different shaped cross-sections was visualized, along with simultaneous measurement of the local heat transfer coefficient. Two types of microchannels were tested: a circular Pyrex glass microtube (210 μm inner diameter) and a square Pyrex glass microchannel (214 μm hydraulic diameter). A 100-nm-thick semi-transparent ITO/Ag thin film sputtered on the outer wall of the microchannel was used for direct joule heating of the microchannel. The flow field visualization showed semi-periodic variation in the flow patterns in both the square and circular microchannels. Such variation was because the confined space limited the bubble growth in the radial direction. In the square microchannel, both the number of nucleation bubbles and the local heat transfer coefficient increased with decreasing vapor quality. The corners acted as active nucleation cavities, leading to the higher local heat transfer coefficient. In contrast, lack of cavities in the smooth glass circular microchannel yielded a relatively smaller heat transfer coefficient at lower vapor quality. Finally, the heat transfer coefficient was higher for the square microchannel because corners in the square microchannel acted as effective active nucleation sites.
机译:可视化了具有相似水力直径但形状不同的横截面的透明单个微通道中的对流沸腾,并同时测量了局部传热系数。测试了两种类型的微通道:圆形Pyrex玻璃微管(内径210μm)和方形Pyrex玻璃微管(水力直径214μm)。溅射在微通道外壁上的厚100 nm的半透明ITO / Ag薄膜用于直接焦耳加热微通道。流场可视化显示方形和圆形微通道中流型的半周期变化。这种变化是因为有限的空间限制了气泡在径向上的生长。在方形微通道中,成核气泡的数量和局部传热系数都随着蒸汽质量的降低而增加。角部充当主动形核腔,从而导致更高的局部传热系数。相反,在光滑的玻璃圆形微通道中没有空腔,从而在较低的蒸汽质量下产生了相对较小的传热系数。最后,正方形微通道的传热系数更高,因为正方形微通道中的角充当有效的活性成核位点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号