首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Nucleate boiling from smooth and rough surfaces - Part 2: Analysis of surface roughness effects on nucleate boiling
【24h】

Nucleate boiling from smooth and rough surfaces - Part 2: Analysis of surface roughness effects on nucleate boiling

机译:光滑和粗糙表面上的核沸腾-第2部分:分析表面粗糙度对核沸腾的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The effect of surface roughness on nucleate boiling heat transfer is not clearly understood. This study is devised to conduct detailed heat transfer and bubble measurements during boiling on a heater surface with controlled roughness. This second of two companion papers presents an analysis of heat transfer and bubble ebullition in nucleate boiling with new measures of surface roughness: area ratio, surface mean normal angle, and maximum idealized surface curvature. An additional length scale of importance, the maximum base diameter of an emergent bubble, is identified. Measurements of bubble departure diameters, growth periods, ebullition periods, and void fraction above the surface are obtained from high-speed videographic visualizations by an automated procedure. Correlations of heat transfer coefficient and bubble ebullition characteristics with different measures of surface roughness are compared in terms of relative uncertainty. The data set of results for pool boiling in the perfluorinated dielectric liquid, FC-72, are found to correlate best with a length-scale filtered value of average roughness R _(a, filt). Over a larger database with three different data sets including FC-72, FC-77, and water at atmospheric pressure, the most reliable correlations were obtained with the appropriately filtered area ratio. FC-72 bubble growth curves are well correlated for all test conditions with the normalized relationship D *~(t *) ~(1/3). Finally, the maximum void fraction in the region above the surface is correlated with normalized heat flux for these data and for water as the two-thirds power of heat flux.
机译:表面粗糙度对成核沸腾传热的影响尚不清楚。本研究旨在在粗糙度受控的加热器表面上进行沸腾过程中进行详细的传热和气泡测量。这两篇附带的论文的第二篇文章对表面沸腾的新测量方法进行了分析,分析了核沸腾中的传热和气泡沸腾:面积比,表面平均法向角和最大理想表面曲率。确定了另一个重要的长度尺度,即冒出气泡的最大基径。气泡离去直径,生长周期,沸腾周期和表面上方的空隙率的测量值是通过自动化程序从高速视频可视化获得的。根据相对不确定度,比较了传热系数和气泡沸腾特性与表面粗糙度的不同度量之间的相关性。发现全氟化介电液体FC-72中池沸腾的结果数据集与平均粗糙度R _(a,过滤)的长度尺度过滤值最相关。在具有三个不同数据集(包括FC-72,FC-77和大气压下的水)的更大数据库上,通过适当过滤的面积比可获得最可靠的相关性。 FC-72气泡生长曲线在所有测试条件下均具有良好的相关性,归一化关系为D *〜(t *)〜(1/3)。最后,对于这些数据,对于水来说,表面上方区域中的最大空隙率与归一化热通量相关,而水是热通量的三分之二。

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