首页> 外文期刊>International Journal of Heat and Mass Transfer >A generalized mathematical description for comparative assessment of various horizontal polar tube geometries with regard to external film condensation in presence of non-condensable gases
【24h】

A generalized mathematical description for comparative assessment of various horizontal polar tube geometries with regard to external film condensation in presence of non-condensable gases

机译:关于在不凝性气体存在下外部薄膜凝结的各种水平极管几何形状的比较评估的广义数学描述

获取原文
获取原文并翻译 | 示例
       

摘要

A generalized mathematical treatment is postulated to investigate the condensation heat transfer performance of horizontal tubes with varying geometries, with the presence of non-condensable gases in the free stream. The governing equations of mass, momentum and energy conservation in the liquid phase are solved semi-analytically, with matching constraints being imposed at the liquid-vapour interface, while the governing equations of energy and species conservation in the vapour phase are solved numerically. An air-water vapour system is considered for demonstrating the mathematical model. Special cases of the model are illustrated with the aid of elliptical and equiangular spiral geometries. It is revealed that the geometrical features of typical polar surfaces can turn out to be favourable in arresting probable drastic reductions in the condensation heat transfer rates that could be otherwise associated with the presence of non-condensable gases in the free stream. The favourable effects induced by polar surfaces become relatively more prominent, as percentage of non-condensable gases in the free stream increases. A geometrical shape function is also ascertained in this regard, which quantifies the extent of this augmentation in the heat transfer performance. In general, it is suggested that polar surfaces with higher values of the shape function over a majority of the azimuthal regime can turn out to be more desired choices for achieving enhanced rates of condensation heat transfer, provided that there are no serious manufacturability constraints.
机译:假定采用广义数学方法来研究具有不同几何形状的水平管的冷凝传热性能,并且在自由流中存在不可冷凝的气体。通过解析法求解液相中的质量,动量和能量守恒的控制方程,并在液-汽界面处施加匹配约束,而在数值上求解气相中的能量和物质守恒的控制方程。考虑使用空气-水蒸气系统来演示数学模型。该模型的特殊情况借助于椭圆和等角螺旋几何形状进行了说明。已经发现,典型的极性表面的几何特征在阻止冷凝传热速率的可能的急剧降低方面可能是有利的,否则冷凝的传热速率可能与自由流中存在的非冷凝气体有关。随着自由流中不可冷凝气体的百分比增加,极性表面引起的有利效果变得相对更加突出。在这方面,还确定了几何形状函数,其量化了传热性能的这种增强程度。通常,建议在大多数方位角范围内具有较高形状函数值的极性表面可能会成为实现冷凝热传递速率提高的更理想的选择,前提是没有严重的可制造性约束。

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