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
超临界水冷堆类三角形子通道流动传热特性研究
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发表时间:2016-01-01
发表刊物:原子能科学技术
期号:7
页面范围:1193-1199
ISSN号:1000-6931
摘要:The physical model of the sub-channel within a triangular rod bundle,of which the rod diameter is 8 mm and the pitch-to-diameter ratio is 1.4,was built to numerically investigate the flow and heat transfer characteristics of supercritical water in the sub-channels of supercritical water-cooled reactor.The numerical investigation was performed within the range of pressure from 23 to 28 MPa,mass fluxes from 700 to 1 300 kg/(m2 ·s),and heat fluxes from 200 to 1 000 kW/m2 .By using the Reynolds stress turbulence model SSG,the effects of mass flux,pressure and heat flux on the flow and heat transfer characteristics were analyzed in detail,as well as the secondary flow characteristics in different enthalpy regions.The results show that the numerical results agree well with experimental results.The higher the mass flux is,the better the heat transfer performs.In the pseudo-critical enthalpy region,the peak of heat transfer coefficient decreases greatly with the increase of pressure and heat flux.The high heat flux induces high inner wall temperature and might cause the heat transfer deterioration. The obvious secondary flow is found in the direction perpendicular to the main flow,and six symmetrical vortices are formed in the cross section of sub-channel.The velocity of the secondary flow reaches a peak near the narrow gap.Although the structures of the secondary flow are similar in different enthalpy regions,the secondary flow velocity increases with bulk enthalpy.
备注:新增回溯数据