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有限元法(FEM)是广泛接受的分析耦合结构声(SA)系统动力响应的预报工具。由于随频率增加计算模型也增加导致基于单元的方法在实际中约束在低频段。一种替代方法是基于间接Trefftz法的基于波动方法(WBM)。但WBM的不足之处在于高计算效率只针对中度复杂的几何模型。为了利用两者的优势:FEM的广泛应用和WBM的高收敛特性,提出了混合FE-WB预报法(FEM-WBM)。基本原理是将FE模型中较大且几何简单的部分采用WBM代替。得到的耦合模型仍具有较少的自由度。简要描述了FEM、WWBM以及混合FEM-WBM的理论基础。最后将该方法应用于一个简单的结构声模型,理论分析结果与数值仿真计算结果吻合较好,该混合方法有潜力覆盖中频段。 相似文献
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大跨越分裂导线静,动特性的计算分析 总被引:3,自引:0,他引:3
以中山口大跨越分裂导线为力实际背景,给出了导线静态开头和张力的计算方法,推导了三分裂导线的单元矩阵,最后用有限地计算了中山口大跨越导线铅垂南面的固有频率和振型,计算结果与实测基本一致,表明用有限元法为基础建立大跨越分裂导线的气动弹性模型,即舞动数学模型是有效而可行的。 相似文献
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Based on the indirect Trefftz approach, a wave number method (WNM) is proposed to deal with three-dimensional steady-state acoustic problems. In the WNM, the dynamic pressure response variable is approximated by a set of wave functions, which exactly satisfy the Helmholtz equation. The set of wave functions comprise the exact solutions of the homogeneous part of the governing equations and some particular solution functions. The unknown coefficients of the wave functions can be obtained by enforcing the pressure approximation to satisfy the boundary conditions. Compared with the boundary element method (BEM), the WNM have a smaller system matrix, and is applicable to the radiation problems since the wave functions are independent of the domain size. A 3D acoustic cavity is exemplified to show the properties of the method. The results show that the wave number method is more efficient than the BEM, and it is fairly accurate. 相似文献
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