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首页> 外文期刊>International Journal for Numerical Methods in Fluids >3D simulation of wind turbine rotors at full scale. - Part II: Fluid-structure interaction modeling with composite blades
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3D simulation of wind turbine rotors at full scale. - Part II: Fluid-structure interaction modeling with composite blades

机译:风力涡轮机转子的3D模拟。 -第二部分:复合材料叶片的流固耦合模型

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摘要

In this two-part paper, we present a collection of numerical methods combined into a single framework, which has the potential for a successful application to wind turbine rotor modeling and simulation. In Part 1 of this paper we focus on: 1. The basics of geometry modeling and analysis-suitable geometry construction for wind turbine rotors; 2. The fluid mechanics formulation and its suitability and accuracy for rotating turbulent flows; 3. The coupling of air flow and a rotating rigid body. In Part 2, we focus on the structural discretization for wind turbine blades and the details of the fluid-structure interaction computational procedures. The methods developed are applied to the simulation of the NREL 5 MW offshore baseline wind turbine rotor. The simulations are performed at realistic wind velocity and rotor speed conditions and at full spatial scale. Validation against published data is presented and possibilities of the newly developed computational framework are illustrated on several examples.
机译:在这篇由两部分组成的论文中,我们提出了一组结合到单个框架中的数值方法,这些方法有可能成功应用于风力涡轮机转子建模和仿真。在本文的第1部分中,我们着重于:1.几何建模和分析的基础知识-适用于风力涡轮机转子的几何构造; 2.流体力学公式及其对湍流旋转的适用性和准确性; 3.气流与旋转的刚体的耦合。在第2部分中,我们着重于风力涡轮机叶片的结构离散化以及流固耦合计算程序的细节。所开发的方法适用于NREL 5兆瓦海上基准风力涡轮机转子的仿真。仿真是在实际风速和转子速度条件下以及在整个空间范围内进行的。提出了针对已发布数据的验证,并在几个示例中说明了新开发的计算框架的可能性。

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