论文标题
柔性框架结构的空气动力学非线性分析的一致共旋转公式
A consistent co-rotational formulation for aerodynamic nonlinear analysis of flexible frame structures
论文作者
论文摘要
提交给空气动力载荷的结构的设计通常需要考虑流体结构相互作用的特定计算模型。使用结构框架元件的模型是在几种相关应用中开发的,例如高级飞机机翼,风力涡轮机叶片或电力传输线的设计。在提交流体流的柔性框架结构的情况下,对大型位移的惯性和空气动力的一致计算是一项艰巨的任务。在本文中,我们提出了一种新的公式,用于使用共旋转方法,准稳态理论和虚拟工作原理进行大型位移和旋转的空气动力计算。该公式与参考一致的共旋转公式相结合,用于计算内部和惯性力,提供一组统一的非线性平衡方程。在开源库ONSA中提出并实施了数值分辨率过程。提出的配方及其实施通过解决五个示例,包括现实的风力涡轮分析问题来验证。将提出的公式提供的结果与使用集体质量方法获得的分析溶液和解决方案进行了比较。所提出的配方为具有较大位移和旋转的数值问题提供了准确的解决方案。
The design of structures submitted to aerodynamic loads usually requires the development of specific computational models considering fluid-structure interactions. Models using structural frame elements are developed in several relevant applications such as the design of advanced aircraft wings, wind turbine blades or power transmission lines. In the case of flexible frame structures submitted to fluid flows, the consistent computation of inertial and aerodynamic forces for large displacements is a challenging task. In this article we present a novel formulation for the accurate computation of aerodynamic forces for large displacements and rotations using the co-rotational approach, the quasi-steady theory and the principle of virtual work. This formulation is coupled with a reference consistent co-rotational formulation for computing internal and inertial forces, providing a unified set of nonlinear balance equations. A numerical resolution procedure is proposed and implemented within the open-source library ONSAS. The proposed formulation and its implementation are validated through the resolution of five examples, including a realistic wind turbine analysis problem. The results provided by the proposed formulation are compared with analytic solutions and solutions obtained using a lumped mass approach. The proposed formulation provides accurate solutions for challenging numerical problems with large displacements and rotations.