ON THE HALF-SPACE MATCHING METHOD FOR REAL

被引:0
|
作者
Dhia, Anne-Sophie Bonnet-Ben [1 ]
Chandler-wilde, Simon N. [2 ]
Fliss, Sonia [1 ]
机构
[1] ENSTA Paris, Inst Polytech Paris, POEMS INRIA, CNRS, F-91128 Paris, Palaiseau, France
[2] Univ Reading, Dept Math & Stat, Reading RG6 6AX, England
关键词
Key words; Helmholtz equation; scattering; Sommerfeld radiation condition; integral equation; domain decomposition; rough surface scattering; HELMHOLTZ-EQUATION; INTEGRAL-EQUATIONS; SCATTERING; LAYER;
D O I
10.1137/21M1459216
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
The Half-Space Matching (HSM) method has recently been developed as a new method for the solution of two-dimensional scattering problems with complex backgrounds, providing an alternative to Perfectly Matched Layers (PML) or other artificial boundary conditions. Based on half-plane representations for the solution, the scattering problem is rewritten as a system coupling (1) a standard finite element discretization localized around the scatterer and (2) integral equations whose unknowns are traces of the solution on the boundaries of a finite number of overlapping half-planes contained in the domain. While satisfactory numerical results have been obtained for real wavenumbers, well-posedness and equivalence of this HSM formulation to the original scattering problem have been established for complex wavenumbers only. In the present paper we show, in the case of a homogeneous background, that the HSM formulation is equivalent to the original scattering problem also for real wavenumbers, and so is well-posed, provided the traces satisfy radiation conditions at infinity analogous to the standard Sommerfeld radiation condition. As a key component of our argument we show that if the trace on the boundary of a half-plane satisfies our new radiation condition, then the corresponding solution to the half-plane Dirichlet problem satisfies the Sommerfeld radiation condition in a slightly smaller half-plane. We expect that this last result will be of independent interest, in particular in studies of rough surface scattering.
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页码:1287 / 1311
页数:25
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