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A procedure for choosing optimal materials of wind turbine flexible blades

机译:选择风力涡轮机柔性叶片最佳材料的过程

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The question of the scope and the applicability of a new passive pitch control method using homogeneous soft blades is studied. After reminding the role of pitch control in wind turbines, the model for the deformation of wind turbine flexible blades is presented. The soft blade is modeled as a thin plate with the Kirchhoff-Love plate theory. Centrifugal and aerodynamic forces are considered. First, the model finds the optimal variation of the pitch angle of rigid blades with respect to the operation range. Then using a reduced parameter set of three dimensionless numbers (θ_0, C_Y, C_c), the model also quickly determines the soft materials which passively reproduce the more accurately the optimal variation of the pitch angle on the operation range found previously. Numerical results show that already existing soft materials can passively mimic the ideal pitch angle variation, leading to an efficiency gain of 8%.
机译:研究了使用均匀软叶片的新型被动俯仰控制方法的范围和适用性。提出了在风力涡轮机中的音高控制作用之后,提出了用于风力涡轮机柔性叶片变形的模型。软刀片模拟为具有Kirchhoff-Love板理论的薄板。考虑了离心和空气动力力。首先,该模型发现相对于操作范围的刚性叶片的俯仰角的最佳变化。然后,使用三维无量纲数(θ_0,c_y,c_c)的减少参数集,该模型还快速确定了在先前发现的操作范围内更准确地再现桨距角的最佳变化的软材料。数值结果表明,已经存在的软材料可以被动地模仿理想的俯仰角变化,导致效率增益为8%。

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