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February 28, 2026Журнал вычислительной математики и математической физики / Computational Mathematics and Mathematical Physics0 citations

Grid-Characteristic Method With Implicit Schemes and Contact Conditions at the Material Interface

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EPE.A. Pesnya

Key Points

  • The aim is to improve the modeling of elastic wave propagation in heterogeneous media using a modified grid-characteristic method.
  • Modification of the grid-characteristic method for stability and accuracy.
  • Use of implicit and explicit numerical solution schemes.
  • Formulation of contact conditions for reflected and refracted waves.
  • Numerical experiments on one-dimensional and two-dimensional problems.
  • The method achieves high modeling accuracy.
  • Can describe complex wave patterns in heterogeneous media.
  • Convergence order estimated for various schemes.

Abstract

The paper presents a modified grid-characteristic method for modeling the propagation of elastic waves in heterogeneous media with explicit material boundaries. The proposed approach is based on the use of implicit and explicit numerical solution schemes, which together ensure stability and accuracy at large time steps and small space steps in areas with elongated shapes. The correct formulation of contact conditions between materials was implemented both in the form of reflected and refracted waves, and by modifying the lines of the system of equations for the implicit scheme. Numerical experiments for one-dimensional and two-dimensional problems, including wave modeling in multilayer structures and glass composites, are presented. The convergence order has been estimated for various schemes. The results show the possibility of the developed method to provide high modeling accuracy and the ability to describe complex wave patterns in heterogeneous media.

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Cite This Study

E.A. Pesnya (2025) studied this question.

synapsesocial.com/papers/69a287240a974eb0d3c029bfhttps://doi.org/10.7868/s3034533225110158
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