Distributed local spline simulator for wave propagation

01/12/2023
by   Xu Guo, et al.
0

Numerical simulation of wave propagation in elastic media faces the challenges arising from increasing demand of high resolution in modern 3-D imaging applications, which requires a balance between efficiency and accuracy in addition to being friendly to the distributed high-performance computing environment. In this paper, we propose a distributed local spline simulator (LOSS) for solving the wave equation. LOSS uses patched cubic B-splines to represent the wavefields and attains an accurate evaluation of spatial derivatives with linear complexity. In order to link the adjacent patches, a perfectly matched boundary condition is introduced to give a closure of local spline coefficients. Owing to the rapid decay property of the local wavelets in dual space, it can recover the global spline as accurately as possible only at the cost of local communications among adjacent neighbors. Several typical numerical examples, including 2-D acoustic wave equation and P- and S- wave propagation in 3-D homogenous or heterogenous media, are provided to validate its convergence, accuracy and parallel scalability.

READ FULL TEXT

page 17

page 18

page 23

page 24

page 27

research
03/22/2020

Efficient and Stable Finite Difference Modelling of Acoustic Wave Propagation in Variable-density Media

In this paper, we consider the development and analysis of a new explici...
research
05/09/2019

An Efficient and high accuracy finite-difference scheme for the acoustic wave equation in 3D heterogeneous media

Efficient and accurate numerical simulation of 3D acoustic wave propagat...
research
06/29/2018

Shifted Laplacian multigrid for the elastic Helmholtz equation

The shifted Laplacian multigrid method is a well known approach for prec...
research
07/22/2020

Solving Schrödinger's equation by B-spline collocation

B-spline collocation techniques have been applied to Schrödinger's equat...
research
08/03/2020

A Matrix Basis Formulation For The Green's Functions Of Maxwell's Equations And The Elastic Wave Equations In Layered Media

A matrix basis formulation is introduced to represent the 3 x 3 dyadic G...
research
06/24/2021

Time-Domain Analysis of Left-Handed Materials Based on a Dispersive Meshless Method with PML Absorbing Boundary Condition

In this paper, we have proposed a dispersive formulation of scalar-based...
research
04/23/2020

Simulating Anisoplanatic Turbulence by Sampling Inter-modal and Spatially Correlated Zernike Coefficients

Simulating atmospheric turbulence is an essential task for evaluating tu...

Please sign up or login with your details

Forgot password? Click here to reset