个人信息Personal Information
教授
博士生导师
硕士生导师
任职 : "大连理工大学-大连斯频德”联合研究中心主任
性别:男
毕业院校:西安交通大学
学位:博士
所在单位:能源与动力学院
学科:热能工程
办公地点:大连理工大学西部校区知行楼420
联系方式:Tel: 13109836979 微信号:18642809658
电子邮箱:zhuxiaojing@dlut.edu.cn
Experimental study on the pressure drop characteristics of steam-water two-phase flow at a low mass velocity in a four-head rifled tube
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论文类型:期刊论文
发表时间:2017-07-25
发表刊物:APPLIED THERMAL ENGINEERING
收录刊物:SCIE、EI、Scopus
卷号:122
页面范围:148-157
ISSN号:1359-4311
关键字:Rifled tube; Steam-water two-phase flow; Pressure drop characteristic; Self-compensating; Low mass velocity
摘要:The pressure drop characteristics of steam-water two-phase flow at a low mass velocity in a four-head rifled tube were experimentally studied under an adiabatic condition with pressure ranging from 11.3 to 21.5 MPa, mass velocity ranging from 250 to 1200 kg/m(2) s, and steam quality ranging from 0 to 1. A test section composed of a 2000 mm long horizontal tube and 3500 mm long vertical tube was set up to fully evaluate the pressure drop characteristics, including the gravitational pressure drop and frictional pressure drop. It was found that the self-compensating characteristic is present in the four-head rifled tube when the mass velocity is lower than a certain critical value. The major parameters affecting the two-phase multiplier are pressure and steam quality. The two-phase multiplier increases with increasing steam quality and decreases with increasing pressure. In the near-critical pressure region, the two-phase frictional pressure drop approaches that of single phase flow because the density difference between water and steam is small. A new correlation for the two-phase multiplier for the frictional pressure drop of steam-water two-phase flow in the four-head rifled tube was proposed based on a total of 516 experimental data points, with a root mean square error of less than 20%. Comparing these results with previous correlations, the two-phase frictional pressure drop in the rifled tube is lower than those studied by previous scholars under low-velocity conditions, especially in the high steam quality region. The results provide instructive guidelines to improve the design and operational safety of a supercritical circulating fluidized bed boiler. (C) 2017 Elsevier Ltd. All rights reserved.