Experimental Study on Flow Patterns and Pressure Drop of Decaying Swirling Gas-Liquid Flow in a Vertical Pipe

Jiarong Zhang, Li Liu, L. Shuai, Gu Hanyang
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Abstract

Vertical swirling gas-liquid flow is a kind of complex two-phase flow containing a nonzero tangential velocity component in engineering applications. The accurate flow regime characterization, phase distribution information and pressure drop data about vertical swirling flow are the basis for the optimization of steam generator (SG), which can greatly reduce the cost and improve the safety of nuclear plants. To get these key parameters of swirling vertical flow, we have made a comprehensive visualization experiment in a vertical pipe with 30mm diameter and 5m length by high-speed camera. The experimental pipe is separated into swirling part and non-swirling part. We have set three observation section with different vertical heights in the swirling part. Changing the flow rate of water and gas, different swirling flow pattern photos can be captured by high-speed camera. Based on the photos of different positions and image-processing MATLAB code, we can get three flow regime maps and figure out the decaying law of swirling gas-liquid flow. The pressure drop can be recorded by rotameter at each position. The decaying law of pressrure drop can be concluded from it. These data can be a guide for designing gas-liquid separator in SG to improve the efficiency of nuclear plant.
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垂直管道中衰减旋流气液流型及压降的实验研究
在工程应用中,垂直旋流是一种含非零切向速度分量的复杂两相流。准确的垂直旋流流型表征、相分布信息和压降数据是蒸汽发生器优化的基础,可以大大降低成本,提高核电站的安全性。为了得到旋流式垂直流动的这些关键参数,我们在直径30mm、长度5m的垂直管道中,利用高速摄像机进行了综合可视化实验。实验管分为旋流部分和非旋流部分。我们在旋流部分设置了三个垂直高度不同的观测段。通过改变水和气体的流速,高速摄像机可以捕捉到不同的旋流模式的照片。根据不同位置的照片和图像处理的MATLAB代码,可以得到三种流型图,并计算出旋转气液流动的衰减规律。每个位置的压降可用转子表记录。由此可以得出压降的衰减规律。这些数据可以指导SG气液分离器的设计,提高核电站的效率。
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