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Preconditioning technique for a simultaneous solution to wind-membrane interaction

机译:用于同时解决风膜相互作用的预处理技术

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A preconditioning technique is presented for a simultaneous solution to wind-membrane interaction. In the simultaneous equations, a linear elastic model was employed to deal with the fluid-structure data transfer at the interface. A Lagrange multiplier was introduced to impose the specified boundary conditions at the interface and strongly coupled simultaneous equations are derived after space and time discretization. An initial linear elastic model preconditioner and modified one were derived by treating the linearized elastic model equation as a saddle point problem, respectively. Accordingly, initial and modified fluid-structure interaction (FSI) preconditioner for the simultaneous equations were derived based on the initial and modified linear elastic model preconditioners, respectively. Wmd-membrane interaction analysis by the proposed preconditioners, for two and three dimensional membranous structures respectively, was performed. Comparison was made between the performance of initial and modified preconditioners by comparing parameters such as iteration numbers, relative residuals and convergence in FSI computation. The results show that the proposed preconditioning technique greatly improves calculation accuracy and efficiency. The priority of the modified FSI preconditioner is verified. The proposed preconditioning technique provides an efficient solution procedure and paves the way for practical application of simultaneous solution for wind-structure interaction computation.
机译:提出了一种预处理技术,用于同时解决风膜相互作用。在联立方程中,采用线性弹性模型来处理界面处的流体结构数据传输。引入拉格朗日乘数以在界面上施加指定的边界条件,并且在空间和时间离散化之后得出强耦合联立方程。通过将线性化弹性模型方程式视为鞍点问题,分别得出了初始线性弹性模型预处理器和经修改的预处理器。因此,分别基于初始和改进的线性弹性模型预处理器,导出了联立方程的初始和改进的流固耦合(FSI)预处理器。利用所提出的预处理器对两维和三维膜结构进行了Wmd-膜相互作用分析。通过比较FSI计算中的迭代次数,相对残差和收敛性等参数,对初始预处理器和修改后的预处理器的性能进行了比较。结果表明,所提出的预处理技术大大提高了计算精度和效率。修改后的FSI预调节器的优先级得到验证。所提出的预处理技术提供了有效的求解程序,为风-固相互作用计算的同时求解的实际应用铺平了道路。

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