The Numerical Assembly Technique is extended to investigate arbitrary planar frame structures with the focus on the computation of natural frequencies. This allows us to obtain highly accurate results without resorting to spatial discretization. To this end, we systematically introduce a frame structure as a set of nodes, beams, bearings, springs, and external loads and formulate the corresponding boundary and interface conditions. As the underlying homogeneous solution of the governing equations, we use a novel approach recently presented in the literature. This greatly improves the numerical stability and allows the stable computation of very high natural frequencies accurately. We show this numerically at two frame structures by investigation of the condition number of the system matrix and also by the use of variable precision arithmetic.
翻译:数字大会技术(Nualic Conference Conference Technique)被扩大,以调查任意的、以计算自然频率为重点的规划框架结构。这使我们能够在不使用空间离散方式的情况下获得非常准确的结果。 为此,我们系统地引入一个框架结构,作为一组节点、梁、轴承、弹簧和外部载荷,并设计相应的边界和界面条件。作为治理方程的基本同质解决方案,我们使用文献中最近提出的一种新颖方法。这大大提高了数字稳定性,并使得能够精确地计算非常高的自然频率。我们通过调查系统矩阵的条件号以及使用可变精确的算术,在两个框架结构中显示了这一数字结构。