Comparison between the shifted-Laplacian preconditioning and the controllability methods for computational acoustics

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Processes that can be modelled with numerical calculations of acoustic pressure fields include medical and industrial ultrasound, echo sounding, and environmental noise. We present two methods for making these calculations based on Helmholtz equation. The first method is based directly on the complex-valued Helmholtz equation and an algebraic multigrid approximation of the discretized shifted-Laplacian operator; i.e. the damped Helmholtz operator as a preconditioner. The second approach returns to a transient wave equation, and finds the time-periodic solution using a controllability technique. We concentrate on acoustic problems, but our methods can be used for other types of Helmholtz problems as well. Numerical experiments show that the control method takes more CPU time, whereas the shifted-Laplacian method has larger memory requirement.

论文关键词:93B05,35J05,65N30,65N35,Helmholtz equation,Computational acoustics,Algebraic multigrid method,Preconditioner,Exact controllability,Finite element method,Spectral element method

论文评审过程:Received 30 November 2007, Revised 9 April 2008, Available online 12 August 2009.

论文官网地址:https://doi.org/10.1016/j.cam.2009.08.030