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Design of shape-adaptive wind turbine blades using Differential Stiffness Bend-Twist coupling

机译:基于差刚度弯扭耦合的风轮叶片形状设计

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The design of horizontal axis wind turbines (HAWT) has faced limitations in size and uncontrollable wind behaviour. Shape-adaptive wind turbine blades are proposed as one of the solutions to these design constraints, as they can improve the performance of the blades under varying operating conditions without increasing the size of the blades. A novel Differential Stiffness Bend-Twist coupling (DSBT) concept is proposed in this paper to control the deformation behaviour of the blades. The DSBT concept achieves bend-twist coupling in the global structure while allowing the main deformation of the structural sub-components to remain in pure bending. By eliminating the need to design bend-twist coupled parts, this simplifies the material design and potentially enhances the manufacturability. An analytical conceptual model was developed to study the fundamental behaviour of DSBT structures under bending loads. The feasibility analysis demonstrated that the DSBT concept could achieve bend-twist coupling by altering the flexural stiffness distribution of stiffeners attached to the skin of the structure. A preliminary design scheme for the DSBT blades was also developed with the material design of stiffeners identified as an area to be optimised. The genetic algorithm (GA) was coupled with the Finite Element Method to search for the optimal flexure stiffness values. GA was reused to evaluate the required composite layup based on the stiffness requirements. Thus the design satisfies the requirements for strength and stiffness to enable DSBT.
机译:水平轴风力涡轮机(HAWT)的设计在尺寸和不可控制的风能方面都面临着局限性。提出了形状适应性风力涡轮机叶片作为这些设计约束的解决方案之一,因为它们可以在变化的工作条件下提高叶片的性能,而无需增加叶片的尺寸。本文提出了一种新颖的差刚度弯扭耦合(DSBT)概念来控制叶片的变形行为。 DSBT概念在整体结构中实现了弯扭耦合,同时允许结构子组件的主要变形保持纯弯曲。通过消除设计弯扭耦合零件的需求,这简化了材料设计并潜在地提高了可制造性。建立了一个分析概念模型来研究DSBT结构在弯曲载荷下的基本行为。可行性分析表明,DSBT概念可以通过更改附着在结构蒙皮上的加劲肋的挠曲刚度分布来实现弯扭耦合。还开发了DSBT叶片的初步设计方案,其中加固件的材料设计被确定为需要优化的区域。遗传算法(GA)与有限元方法结合使用,以寻找最佳的弯曲刚度值。 GA被重新用于根据刚度要求评估所需的复合铺层。因此,该设计满足了实现DSBT的强度和刚度要求。

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