首页> 外文会议>International Conference on Nuclear Engineering >AN ADVANCED ULTRASONIC TECHNIQUE FOR FLOW AND VOID FRACTION MEASUREMENTS OF TWO-PHASE FLOW
【24h】

AN ADVANCED ULTRASONIC TECHNIQUE FOR FLOW AND VOID FRACTION MEASUREMENTS OF TWO-PHASE FLOW

机译:两相流流量和空隙分数测量先进的超声波技术

获取原文

摘要

In this paper, we present a hybrid type contrapropagating transmission ultrasonic technique (CPTU) for flow and time averaging ultrasonic transmission intensity void fraction measurements (TATIU) of air-water two-phase flow, which is tested in the new two-phase flow test section mounted recently onto an existing single phase flow rig at the Nuclear Engineering Institute (IEN)/CNEN, Brazil. The circular pipe test section is made of 51.2 mm stainless steel, followed by a transparent extruded acrylic pipe aimed at flow visualization. The two-phase flow rig operates in several flow regimes: bubbly, smooth stratified, wavy stratified and slug flow. The observed flow patterns are compared with the Mandhane et al.'s experimental and Lightstone et al.'s numerical flow regime map for horizontal two phase flows. These flow patterns will be identified by time averaging transmission intensity ultrasonic techniques which have been developed to meet this particular application. A contrapropagating transmission ultrasonic flowmeter is used to measure the flow rate of liquid phase. A pulse-echo TATIU ultrasonic technique used to measure the void fraction of the horizontal test section assembling at IEN is presented. Other flow parameters can be deduced by processing the signals obtained by the CPTU ultrasonic flowmeter and the pulse-echo generator-receiver (TATIU system).
机译:在本文中,我们介绍了一种混合型对立传输超声波技术(CPTU),用于流动和时间平均超声波传输强度空隙率测量(TATIU)在新的两相流动测试中测试最近安装在核工程研究所(IEN)/ CNEN,巴西的现有单相流量钻机上。圆形管道试验部分由51.2毫米不锈钢制成,然后是透明挤出丙烯酸管,其旨在流动可视化。两相流量钻机在几个流动方案中运行:起泡,平滑分层,波浪分层和块状流动。将观察到的流动模式与Mandhane等人进行比较。实验和Lightstone等人。水平两相流动的数值流动制度映射。这些流动模式将通过时间平均传输强度超声技术识别,这已经开发出满足该特定应用。用于测量液相的流速的对立传输超声波流量计。提出了一种脉冲回波Tatiu超声波技术,用于测量在IEN上组装的水平测试部分的空隙分数。可以通过处理由CPTU超声波流量计和脉冲回波发生器 - 接收器(TATIU系统)获得的信号来推导其他流程参数。

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