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A nonlinear model for aerodynamic configuration of wake behind horizontal-axis wind turbine 被引量:2
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作者 Deshun LI Tao GUO +4 位作者 Rennian LI Congxin YANG Zhaoxue CHENG Ye LI Wenrui HU 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2019年第9期1313-1326,共14页
Determination of the aerodynamic configuration of wake is the key to analysis and evaluation of the rotor aerodynamic characteristics of a horizontal-axis wind turbine. According to the aerodynamic configuration, the ... Determination of the aerodynamic configuration of wake is the key to analysis and evaluation of the rotor aerodynamic characteristics of a horizontal-axis wind turbine. According to the aerodynamic configuration, the real magnitude and direction of the onflow velocity at the rotor blade can be determined, and subsequently, the aerodynamic force on the rotor can be determined. The commonly employed wake aerodynamic models are of the cylindrical form instead of the actual expanding one. This is because the influence of the radial component of the induced velocity on the wake configuration is neglected. Therefore, this model should be called a "linear model". Using this model means that the induced velocities at the rotor blades and aerodynamic loads on them would be inexact. An approximately accurate approach is proposed in this paper to determine the so-called "nonlinear" wake aerodynamic configuration by means of the potential theory, where the influence of all three coordinate components of the induced velocity on wake aerodynamic configuration is taken into account to obtain a kind of expanding wake that approximately looks like an actual one. First, the rotor aerodynamic model composed of axial (central), bound, and trailing vortexes is established with the help of the finite aspect wing theory. Then, the Biot-Savart formula for the potential flow theory is used to derive a set of integral equations to evaluate the three components of the induced velocity at any point within the wake. The numerical solution to the integral equations is found, and the loci of all elementary trailing vortex filaments behind the rotor are determined thereafter. Finally, to formulate an actual wind turbine rotor, using the nonlinear wake model, the induced velocity everywhere in the wake, especially that at the rotor blade, is obtained in the case of various tip speed ratios and compared with the wake boundary in a neutral atmospheric boundary layer. Hereby, some useful and referential conclusions are offered for the aerodynamic c 展开更多
关键词 nonlinear WAKE aerodynamic model vortex-induced velocity INTEGRAL equation of vortex-induced velocity horizontal-axis wind TURBINE
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风力机风轮气动计算中的一种数值解法 被引量:11
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作者 程兆雪 杨从新 李仁年 《力学与实践》 CSCD 北大核心 2007年第6期44-47,55,共5页
在风力机风轮空气动力学计算中出现一叶片径向环量分布积分方程的求解问题.方程中的被积函数包含待求环量的导数,是个积分-微分方程.给出该方程的合理解法,以获取较准确的风轮气动特性.文中先简述了该积分-微分方程的来源.继而给出其两... 在风力机风轮空气动力学计算中出现一叶片径向环量分布积分方程的求解问题.方程中的被积函数包含待求环量的导数,是个积分-微分方程.给出该方程的合理解法,以获取较准确的风轮气动特性.文中先简述了该积分-微分方程的来源.继而给出其两种数值解法及被积函数奇异性的处理方法.最后将所给方法的气动计算结果与其它方法的结果作了比较,以说明所给方法的有效性.同时还指出其不足并给出改进的预想方法. 展开更多
关键词 积分-微分方程 数值解法 风力机 环量 旋涡诱导速度
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