Abstract
The diffraction of a time-harmonic plane wave on collinear finite defects in a square lattice is studied. This problem is reduced to a matrix Wiener-Hopf equation. This work adapts the recently developed iterative Wiener-Hopf method to this situation. The method was motivated by wave scattering in continuous media but it is shown here that it can also be employed in a discrete lattice setting. The numerical results are validated against a different method using discrete Green’s functions. Unlike the latter approach, the complexity of the present algorithm is shown to be virtually independent of the length of the cracks.
Original language | English |
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Article number | 103332 |
Journal | WAVE MOTION |
Early online date | 27 Apr 2024 |
DOIs | |
Publication status | E-pub ahead of print - 27 Apr 2024 |
Keywords
- discrete Wiener–Hopf equations
- iterative methods
- square lattice
- finite crack
- acoustic waves scattering