2018Unpublished venueRequires access

A superconvergent alpha finite element method (SαFEM) for acoustic problems

Chunxu Wang, Wei Li, Cong Cheng, Xiangyu You, Yingbin Chai

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Abstract

With the aim to overcome the “overly-soft” property of FEM and decrease the numerical error, a superconvergent alpha FEM (SαFEM) using the standard triangle meshes is proposed to solve acoustic problems. Based on this method, a linear acoustic pressure gradient is obtained from the original constant acoustic pressure gradient using a particular numerical operation. Using a appropriate parameter α, which is equipped in the procedure, SαFEM could obtain appropriate stiffness. Therefore, the numerical error in acoustic analysis based on FEM can be significantly decreased. Through a number of numerical examples, we can find that this proposed SαFEM has superconvergence property and are able to acquire better solutions compared to FEM in acoustic analysis.

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What this paper is about

With the aim to overcome the “overly-soft” property of FEM and decrease the numerical error, a superconvergent alpha FEM (SαFEM) using the standard triangle meshes is proposed to solve acoustic problems. Based on this method, a linear acoustic pressure gradient is obtained from the original constant acoustic pressure gradient using a particular numerical operation. Using a appropriate parameter α, which is equipped in the procedure, SαFEM could obtain appropriate stiffness. Therefore, the numerical error in acoustic analysis based on FEM can be significantly decreased. Through a number of numerical examples, we can find that this proposed SαFEM has superconvergence property and are able to acquire better solutions compared to FEM in acoustic analysis.

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Available abstract

With the aim to overcome the “overly-soft” property of FEM and decrease the numerical error, a superconvergent alpha FEM (SαFEM) using the standard triangle meshes is proposed to solve acoustic problems. Based on this method, a linear acoustic pressure gradient is obtained from the original constant acoustic pressure gradient using a particular numerical operation. Using a appropriate parameter α, which is equipped in the procedure, SαFEM could obtain appropriate stiffness. Therefore, the numerical error in acoustic analysis based on FEM can be significantly decreased. Through a number of numerical examples, we can find that this proposed SαFEM has superconvergence property and are able to acquire better solutions compared to FEM in acoustic analysis.

Key concepts: Superconvergence, Finite element method, Polygon mesh, Stiffness, Mixed finite element method, Mathematics, Computer science, Structural engineering

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