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A numerical solution to fluid-structure interaction of membrane structures under wind action

机译:风作用下膜结构流固耦合的数值解

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摘要

A numerical simultaneous solution involving a linear elastic model was applied to study the fluid-structure interaction (FSI) of membrane structures under wind actions, i.e., formulating the fluid-structure system with a single equation system and solving it simultaneously. The linear elastic model was applied to managing the data transfer at the fluid and structure interface. The monolithic equation of the FSI system was formulated by means of variational forms of equations for the fluid, structure and linear elastic model, and was solved by the Newton-Raphson method. Computation procedures of the proposed simultaneous solution are presented. It was applied to computation of flow around an elastic cylinder and a typical FSI problem to verify the validity and accuracy of the method. Then fluid-structure interaction analyses of a saddle membrane structure under wind actions for three typical cases were performed with the method. Wind pressure, wind-induced responses, displacement power spectra, aerodynamic damping and added mass of the membrane structure were computed and analyzed.
机译:应用包含线性弹性模型的数值同时解法研究了风作用下膜结构的流固耦合(FSI),即用单个方程组公式化流固系统并同时求解。线性弹性模型用于管理流体和结构界面处的数据传输。 FSI系统的整体方程是通过流体,结构和线性弹性模型方程的变分形式来制定的,并通过牛顿-拉夫森方法进行求解。介绍了所提出的同时解决方案的计算程序。将其应用于弹性圆柱体绕流计算和典型的FSI问题,以验证该方法的有效性和准确性。然后对该方法对三种典型情况下的风作用下鞍膜结构进行流固耦合分析。计算并分析了风压,风致响应,位移功率谱,空气动力学阻尼和膜结构的附加质量。

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