大连理工大学  登录  English 
赵广
点赞:

教授   博士生导师   硕士生导师

任职 : 《推进技术》、《航空动力学报》青年编委,中国振动工程学会转子动力学专业委员会常务理事

性别: 男

毕业院校: 哈尔滨工业大学

学位: 博士

所在单位: 能源与动力学院

学科: 动力机械及工程. 流体机械及工程

办公地点: 大连理工大学西部校区能动学院621房间

联系方式: 电子邮件:zhaoguang@dlut.edu.cn

电子邮箱: zhaoguang@dlut.edu.cn

简洁有效联系方式——电子邮件 : QQ:5845867及QQ信箱

手机版

访问量:

开通时间: ..

最后更新时间: ..

Numerical and Experimental Investigations on the Hydrodynamic Performance of a Tidal Current Turbine

点击次数:

论文类型: 期刊论文

发表时间: 2018-04-01

发表刊物: JOURNAL OF OFFSHORE MECHANICS AND ARCTIC ENGINEERING-TRANSACTIONS OF THE ASME

收录刊物: SCIE、EI、Scopus

卷号: 140

期号: 2

ISSN号: 0892-7219

摘要: In this paper, numerical and experimental investigations are presented on the hydrodynamic performance of a horizontal tidal current turbine (TCT) designed and made by our Dalian University of Technology (DUT) research group. Thus, it is given the acronym: DUTTCT. An open- source computational fluid dynamics (CFD) solver, called PIMPLEDYM-FOAM, is employed to perform numerical simulations for design analysis, while experimental tests are conducted in a DUT towing tank. The important factors, including selfstarting velocity, tip speed ratio (TSR), and yaw angle, which play important roles in the turbine output power, are studied in the investigations. Results obtained show that the maximum power efficiency of the newly developed turbine (DUTTCT) could reach up to 47.6%, and all its power efficiency is over 40% in the TSR range from 3.5 to 6; the selfstarting velocity of DUTTCT is about 0.745 m/s; and the yaw angle has negligible influence on its efficiency as it is less than 10 deg.

辽ICP备05001357号 地址:中国·辽宁省大连市甘井子区凌工路2号 邮编:116024
版权所有:大连理工大学