Gsell Daniel, Leutenegger Tobias, Dual Jürg
Institute of Mechanical Systems, ETH Zürich, Swiss Federal Institute of Technology, CH-8092 Zürich, Switzerland.
J Acoust Soc Am. 2004 Dec;116(6):3284-93. doi: 10.1121/1.1625934.
Wave propagation along circular cylindrical structures is important for nondestructive-testing applications and shocks in tubes. To simulate elastic wave propagation phenomena in such structures the governing equations in cylindrical coordinates are solved numerically. To reduce the required amount of computer memory and the computational time, the stress components are eliminated in the equilibrium equations. In the resulting coupled partial differential equations, in which only the three displacement components are involved, the derivatives with respect to spatial coordinates and time are approximated using second order central differences. This leads to the present new approach, which is both accurate and efficient. In order to obtain a stable scheme the displacements must be allocated on a staggered grid. The von Neumann stability analysis is performed and the result is compared with an existing empirical criterion. Mechanical energies are observed in order to validate the finite-difference code. Since no material damping or energy dissipation is taken into account in the equations of motion, the total energy must remain constant over time. Only negligible variations are observed during long-term simulations. Dispersion relations are used to check the physical behavior of the waves calculated with the proposed finite-difference method: Theoretically calculated curves are compared with values obtained by a spectrum estimation method, applied to the results of a simulation.
沿圆柱结构的波传播对于无损检测应用和管道中的冲击而言至关重要。为了模拟此类结构中的弹性波传播现象,需对圆柱坐标系中的控制方程进行数值求解。为减少所需的计算机内存量和计算时间,在平衡方程中消除应力分量。在由此产生的仅涉及三个位移分量的耦合偏微分方程中,使用二阶中心差分近似空间坐标和时间的导数。这就产生了目前这种既准确又高效的新方法。为获得稳定格式,位移必须分配在交错网格上。进行冯·诺依曼稳定性分析,并将结果与现有的经验准则进行比较。通过观察机械能来验证有限差分代码。由于运动方程中未考虑材料阻尼或能量耗散,总能量必须随时间保持恒定。在长期模拟中仅观察到可忽略不计的变化。色散关系用于检验用所提出的有限差分方法计算出的波的物理行为:将理论计算曲线与应用于模拟结果的谱估计方法获得的值进行比较。