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Shape optimization under uncertainty for rotor blades of horizontal axis wind turbines

机译:水平轴风力发电机转子叶片不确定性下的形状优化

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We present a computational framework for the shape optimization of a Horizontal-Axis Wind Turbine (HAWT) rotor blade under uncertainty. Our framework integrates aerodynamic simulations based on the blade element method which utilizes reduced order models of the blade structure and wind load with design sensitivity analysis and nonlinear programming. The wind velocity is modeled as a stochastic process to account for variations in time and space. An additional stochastic process accounts for uncertainties in the structural material properties. The uncertainty propagation is based on a non-intrusive polynomial chaos expansion that allows accurate estimation of stochastic performance metrics such as generated power and structural compliance. Sensitivities of cost and constraint functions with respect to shape parameters namely twist angles are computed with an efficient scheme to enable gradient based optimization. To demonstrate the effect of uncertainty, designs obtained from optimization under uncertainty are compared to those obtained from deterministic optimization. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们提出了一种计算框架,用于在不确定性条件下优化水平轴风力涡轮机(HAWT)转子叶片的形状。我们的框架集成了基于叶片单元法的空气动力学模拟,该方法利用叶片结构和风荷载的降阶模型以及设计灵敏度分析和非线性编程。风速被建模为随机过程,以考虑时间和空间的变化。另外的随机过程说明了结构材料特性的不确定性。不确定性传播基于非侵入式多项式混沌扩展,该扩展允许精确估计随机性能指标,例如发电量和结构顺应性。成本和约束函数对形状参数(即扭曲角)的敏感度通过有效的方案进行计算,以实现基于梯度的优化。为了证明不确定性的影响,将不确定性条件下的优化设计与确定性优化的设计进行了比较。 (C)2019 Elsevier B.V.保留所有权利。

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