张博

(教授)

 博士生导师  硕士生导师
学位:博士
性别:男
毕业院校:大连理工大学
所在单位:能源与动力学院
电子邮箱:zhangbo@dlut.edu.cn

论文成果

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Numerical study of the effects of wind shear coefficients on the flow characteristics of the near wake of a wind turbine blade

发表时间:2019-03-13 点击次数:

论文名称:Numerical study of the effects of wind shear coefficients on the flow characteristics of the near wake of a wind turbine blade
论文类型:期刊论文
发表刊物:PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART A-JOURNAL OF POWER AND ENERGY
收录刊物:SCIE、EI、Scopus
卷号:230
期号:1
页面范围:86-98
ISSN号:0957-6509
关键字:Near wake; velocity deficit; shear coefficient
摘要:This study investigates the effects of wind shear and wind shear coefficients on the near wake of a wind turbine. A wind turbine is subjected to the effects of wind shear, which leads to unsteady performance of the blade and characteristics of the blade near the wake. Wind shear coefficients of 0.1, 0.2, and 0.3 are used. The results are obtained using the three-dimensional incompressible Reynolds-Averaged Navier-Stokes equations, and the turbulence, are simulated via the shear-stress transport k- turbulence model. The flow of the air and, in particular, the axial velocity and tangential velocity are strongly affected by the rotation in the region of the blade near wake. There is an obvious velocity deficit at the near wake when the air flows over the blade, and this velocity deficit gradually decreases as the air flows downstream. The torque of the blade and the characteristics of the blade near wake periodically change with the effect of wind shear. The axial, tangential, and radial velocities and the turbulence intensity are strongly affected by wind shear at the region of the blade near wake, with the radial velocity particularly affected. The influence is more obvious as the shear coefficient increases. The effects of wind shear on the axial, tangential, and radial velocities and the turbulence intensity increase as the air flows downstream.
发表时间:2016-02-01