Ray flow methods are an efficient tool to estimate vibro-acoustic or electromagnetic energy transport in complex domains at high-frequencies. Here, a Petrov-Galerkin discretization of a phase-space boundary integral equation for transporting wave energy densities on two-dimensional surfaces is proposed. The directional dependence of the energy density is approximated at each point on the boundary in terms of a finite local set of directions propagating into the domain. The direction of propagation can be preserved for transport across multi-component domains when the directions within the local set are inherited from a global direction set. The range of applicability and computational cost of the method will be explored through a series of numerical experiments, including wave problems from both acoustics and elasticity in both single and multi-component domains. The domain geometries considered range from both regular and irregular polygons to curved surfaces, including a cast aluminium shock tower from a Range Rover car.
翻译:Ray 流法是估计高频复杂领域振动声波或电磁能传输的有效工具。 这里, 提出了在二维表面运输波能密度的相位空间边界分界方程式的Petrov- Galerkin离散法。 能量密度的方向依赖度在边界的每个点都大致为向外向向向向向向, 向外传播的方向可以保留, 用于跨多个组成部分域的运输, 当本地组合内的方向从一个全球方向数据集继承时。 方法的应用范围和计算成本将通过一系列数字实验加以探讨, 包括单一和多构面领域的声学和弹性的波问题。 所考虑的领域地理分布范围从常规和非正规多边形到弯曲表面, 包括一个区域路虎车的铸铝冲击塔。