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Aerodynamic wind-turbine rotor design using surrogate modeling and three-dimensional viscous-inviscid interaction technique

机译:采用替代建模和三维粘性 - 非粘性相互作用技术的气动风力发电机转子设计

摘要

In this paper a surrogate optimization methodology using a three-dimensional viscous-inviscid interaction code for the aerodynamic design of wind-turbine rotors is presented. The framework presents aunique approach because it does not require the commonly-used blade element momentum (BEM)method. The three-dimensional viscous-inviscid interaction code used here is the accurate and fastMIRAS code developed at the Technical University of Denmark. In comparison with BEM, MIRAS is ahigher-fidelity aerodynamic tool and thus more computationally expensive as well. Designing a rotorusing MIRAS instead of an inexpensive BEM code represents a challenge, which is resolved by using theproposed surrogate-based approach. As a verification case, the methodology is applied to design a modelwind-turbine rotor and is compared in detail with the one designed with BEM. Results demonstrate thatnearly identical aerodynamic performance can be achieved using the new design method and that themethodology is effective for the aerodynamic design of wind-turbine rotors.
机译:本文提出了一种替代优化方法,该方法使用了三维粘性-无粘相互作用代码对风力涡轮机转子进行了空气动力学设计。该框架提出了一种独特的方法,因为它不需要常用的叶片元素动量(BEM)方法。此处使用的三维粘性-无粘性交互代码是丹麦技术大学开发的精确且快速的MIRAS代码。与BEM相比,MIRAS是更高保真度的气动工具,因此在计算上也更加昂贵。使用MIRAS而不是廉价的BEM代码设计转子是一个挑战,这可以通过使用基于代理的方法解决。作为验证案例,该方法学被用于设计模型风轮机转子,并与采用BEM设计的方法进行了详细的比较。结果表明,使用新的设计方法可以实现几乎相同的空气动力学性能,并且该方法对于风力涡轮机转子的空气动力学设计是有效的。

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