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An $hp$ Error Analysis of HDG for Dynamic Poroelasticity

Published: March 11, 2025 | arXiv ID: 2503.08360v1

By: Salim Meddahi

Potential Business Impact:

Simulates how earthquakes move through wet ground.

Business Areas:
Field-Programmable Gate Array (FPGA) Hardware

This study introduces a hybridizable discontinuous Galerkin (HDG) method for simulating low-frequency wave propagation in poroelastic media. We present a novel four-field variational formulation and establish its well-posedness and energy stability. Our \(hp\)-convergence analysis of the HDG method for spatial discretization is complemented by a Crank-Nicolson scheme for temporal discretization. Numerical experiments validate the theoretical convergence rates and demonstrate the effectiveness of the method in accurately capturing poroelastic dynamics.

Page Count
26 pages

Category
Mathematics:
Numerical Analysis (Math)