首页> 外文期刊>International Journal of Heat and Mass Transfer >A Photographic study of subcooled flow boiling burnout at high heat flux and velocity
【24h】

A Photographic study of subcooled flow boiling burnout at high heat flux and velocity

机译:高热通量和高速度过冷流动沸腾燃尽的摄影研究

获取原文
获取原文并翻译 | 示例
           

摘要

The present paper reports the results of a visualization study of the burnout in subcooled flow boiling of water, with square cross section annular geometry (formed by a central heater rod contained in a duct characterized by a square cross section). The coolant velocity is in the range 3-10 m/s. High speed movies of flow pattern in subcooled flow boiling of water from the onset of nucleate boiling up to physical burnout of the heater are recorded. From video images (single frames taken with a stroboscope light and an exposure time of 1 μs), the following general behaviour of vapour bubbles was observed: when the rate of bubble generation is increasing, with bubbles growing in the superheated layer close to the heating wall, their coalescence produces a type of elongated bubble called vapour blanket. One of the main features of the vapour blanket is that it is rooted to the nucleation site on the heated surface. Bubble dimensions are given as a function of thermal-hydraulic tested conditions for the whole range of velocity until the burnout region. A qualitative analysis of the behaviour of four stainless steel heater wires with different macroscopic surface finishes is also presented, showing the importance of this parameter on the dynamics of the bubbles and on the critical heat flux.
机译:本论文报告了过冷流动沸腾中的烧尽的可视化研究结果,其横截面为方形截面环形几何形状(由包含在以方形截面为特征的管道中的中央加热棒形成)。冷却剂速度在3-10 m / s的范围内。记录了从核沸腾开始到加热器实际烧尽的过冷水沸腾中的流态高速电影。从视频图像(用频闪仪光和1μs的曝光时间拍摄的单帧图像)中,观察到以下气泡的一般行为:当气泡的生成速率增加时,在靠近加热层的过热层中气泡生长在墙壁上,它们的聚结会产生一种称为蒸气毯的细长气泡。蒸气覆盖层的主要特征之一是它扎根于加热表面上的成核位置。在整个速度范围内,直至烧尽区域,气泡尺寸都是根据热工测试条件的函数给出的。还对四种具有不同宏观表面光洁度的不锈钢加热丝的行为进行了定性分析,表明该参数对气泡动力学和临界热通量的重要性。

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