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Autori principali: Kachanovska, Maryna, Savchuk, Adrian
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2511.11103
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author Kachanovska, Maryna
Savchuk, Adrian
author_facet Kachanovska, Maryna
Savchuk, Adrian
contents In this work, we investigate time-dependent wave scattering by multiple small particles of arbitrary shape. To approximate the solution of the associated boundary-value problem, we derive an asymptotic model that is valid in the limit as the particle size tends to zero. Our method relies on a boundary integral formulation, semi-discretized in space using a Galerkin approach with appropriately chosen basis functions, s.t. convergence is achieved as the particle size vanishes rather than by increasing the number of basis functions. Since the computation of the Galerkin matrix involves double integration over particles, the method can become computationally demanding when the number of obstacles is large. To address this, we also derive a simplified model and consider the Born approximation to improve computational efficiency. For the high-order models, we provide an error analysis, supported and validated by numerical experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2511_11103
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Asymptotic models for time-domain scattering by small particles of arbitrary shapes
Kachanovska, Maryna
Savchuk, Adrian
Numerical Analysis
Analysis of PDEs
35L05, 35C20, 35B40
In this work, we investigate time-dependent wave scattering by multiple small particles of arbitrary shape. To approximate the solution of the associated boundary-value problem, we derive an asymptotic model that is valid in the limit as the particle size tends to zero. Our method relies on a boundary integral formulation, semi-discretized in space using a Galerkin approach with appropriately chosen basis functions, s.t. convergence is achieved as the particle size vanishes rather than by increasing the number of basis functions. Since the computation of the Galerkin matrix involves double integration over particles, the method can become computationally demanding when the number of obstacles is large. To address this, we also derive a simplified model and consider the Born approximation to improve computational efficiency. For the high-order models, we provide an error analysis, supported and validated by numerical experiments.
title Asymptotic models for time-domain scattering by small particles of arbitrary shapes
topic Numerical Analysis
Analysis of PDEs
35L05, 35C20, 35B40
url https://arxiv.org/abs/2511.11103