A superconvergent alpha finite element method (SαFEM) for acoustic problems
Chunxu Wang, Wei Li, Cong Cheng, Xiangyu You, Yingbin Chai
Abstract
Chunxu Wang, Wei Li, Cong Cheng, Xiangyu You, Yingbin Chai
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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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