首页> 外文会议>International Congress on Advances in Nuclear Power Plants >Development of a Prototypical Condensation Model for the Nearly Horizontal Heat Exchanger Tube of the APR+ PAFS (Passive Auxiliary Feed-water System)
【24h】

Development of a Prototypical Condensation Model for the Nearly Horizontal Heat Exchanger Tube of the APR+ PAFS (Passive Auxiliary Feed-water System)

机译:APR + PAFS近水平换热管的原型冷凝模型的开发(无源辅助饲料系统)

获取原文

摘要

A new condensation heat transfer model based on the flow regime in the nearly horizontal tube has been developed for the Passive Auxiliary Feed-water System (PAFS) of Korean Advanced Power Reactor Plus (APR+). This study focused on the stratified flow in horizontal pipes in which two different heat transfer mechanisms are involved. The void fraction was determined from the 1-D separated flow model (SFM) which incorporates closure relations for shear stress defined by single-phase based expressions and geometric relations for a concave interface using the eccentric circles. The wetted angle proposed by Hart correlation (1989) was used to classify flow regimes into annular, stratified-wavy and stratified-smooth flow. The new film condensation heat transfer correlation based on Nusselt integral analysis (1916) was proposed to predict the heat transfer coefficient affected by the vapor flow on the upper portion of tube in the stratified flow. Furthermore, the convective heat transfer correlation for single-phase heat transfer was used to predict the heat transfer coefficient for condensate flowing on the entire perimeter of annular flow and the bottom of the stratified flow. Finally, the new condensation heat transfer model package was evaluated against available experimental data for water and it shows good results.
机译:对于韩国先进电源抗型电抗器加(APR +)的无源辅助进料水系统(PAF),已经开发了一种基于几乎水管中的流动状态的新的冷凝传热模型。该研究专注于水平管中的分层流动,其中涉及两种不同的传热机制。从1-D分离的流动模型(SFM)确定空隙部分,该流量模型(SFM)包含由使用偏心圆圈的单相表达式和几何关系限定的闭合关系,用于使用偏心圆圈的凹形界面。 HART相关(1989)提出的湿法角度用于将流动制度分类为环形,分层波状和分层流动。提出了基于氮的新膜凝结传热相关性(1916),以预测由分层流动的管上部上部受到蒸汽流动影响的传热系数。此外,用于单相传热的对流传热相关性用于预测流动在环形流动周围的整个周边的冷凝物和分层流的底部的传热系数。最后,评估新的缩合传热模型包装对水的可用实验数据并显示出良好的结果。

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