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A multi-domain Fourier pseudospectral time-domain method for the linearized Euler equations

机译:线性化Euler方程的多域Fourier伪谱时域方法

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The Fourier pseudospectral time-domain (F-PSTD) method is computationally one of the most cost-efficient methods for solving the linearized Euler equations for wave propagation through a medium with smoothly varying spatial inhomogeneities in the presence of rigid boundaries. As the method utilizes an equidistant discretization, local fine scale effects of geometry or medium inhomogeneities require a refinement of the whole grid which significantly reduces the computational efficiency. For this reason, a multi-domain F-PSTD methodology is presented with a coarse grid covering the complete domain and fine grids acting as a subgrid resolution of the coarse grid near local fine scale effects. Data transfer between coarse and fine grids takes place utilizing spectral interpolation with super-Gaussian window functions to impose spatial periodicity. Local time stepping is employed without intermediate interpolation. The errors introduced by the window functions and the multi-domain implementation are quantified and compared to errors related to the initial conditions and from the time iteration scheme. It is concluded that the multi-domain methodology does not introduce significant errors compared to the single-domain method. Examples of scattering from small scale density scatters, sound reflecting from a slitted rigid object and sound propagation through a jet are accurately modelled by the proposed methodology. For problems that can be solved by F-PSTD, the presented methodology can lead to a significant gain in computational efficiency.
机译:傅里叶拟谱时域(F-PSTD)方法是计算线性欧拉方程的最经济有效的方法之一,该方程用于求解在刚性边界存在的情况下通过空间平滑度不均匀变化的介质传播的波。由于该方法利用等距离散化,因此几何形状或介质不均匀性的局部精细比例效应需要对整个网格进行优化,这会大大降低计算效率。因此,提出了一种多域F-PSTD方法,该方法具有覆盖整个域的粗网格和在局部精细尺度效应附近充当粗网格的子网格分辨率的细网格。粗网格和细网格之间的数据传输是利用频谱插值和超高斯窗口函数进行的,以施加空间周期性。采用本地时间步进而无需中间插值。量化由窗口函数和多域实现引入的误差,并将其与与初始条件和时间迭代方案相关的误差进行比较。结论是,与单域方法相比,多域方法不会引入重大错误。通过所提出的方法可以准确地模拟小规模密度散射的散射,从狭缝刚性物体反射的声音以及通过喷嘴传播的声音。对于F-PSTD可以解决的问题,所提出的方法可以大大提高计算效率。

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