Wang Huiqing, Hornikx Maarten
Building Physics and Services, Department of the Built Environment, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.
J Acoust Soc Am. 2020 Apr;147(4):2534. doi: 10.1121/10.0001128.
The time-domain nodal discontinuous Galerkin (TD-DG) method is emerging as a potential wave-based method for three-dimensional (3D) room acoustics modeling, where high-order accuracy in the low frequency range, geometrical flexibility, and accurate modeling of boundary conditions are of critical importance. This paper presents a formulation of broadband time-domain impedance boundary conditions (TDIBCs) of locally-reacting surfaces in the framework of the TD-DG method. The formulation is based on the approximation of the plane-wave reflection coefficient at normal incidence in the frequency domain using a sum of template rational functions, which can be directly transformed to the time-domain. The coupling of the TDIBCs with the discontinuous Galerkin discretization is achieved through the characteristic waves of the upwind flux along the boundary, where a series of first-order auxiliary differential equations is time-integrated in a high-order way. To verify the performance of the formulation, various numerical tests of single reflection scenarios are shown to demonstrate the cost efficiency and memory-efficiency of high-order basis functions, among which a 3D application to an impedance boundary of rigidly backed glass-wool baffle for room acoustic purposes is presented.
时域节点间断伽辽金(TD-DG)方法正逐渐成为一种用于三维(3D)室内声学建模的潜在波动方法,在低频范围内的高阶精度、几何灵活性以及边界条件的精确建模至关重要。本文提出了一种在TD-DG方法框架下局部反应表面的宽带时域阻抗边界条件(TDIBCs)的公式。该公式基于频域中垂直入射平面波反射系数的近似,使用模板有理函数之和,可直接转换到时域。TDIBCs与间断伽辽金离散化的耦合通过沿边界的迎风通量的特征波实现,其中一系列一阶辅助微分方程以高阶方式进行时间积分。为验证该公式的性能,展示了各种单反射场景的数值测试,以证明高阶基函数的成本效率和内存效率,其中给出了一个用于室内声学目的的刚性支撑玻璃棉挡板阻抗边界的三维应用。