The Alamo multiphysics solver for phase field simulations with strong-form mechanics and block structured adaptive mesh refinement

Fuente: arXiv
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Main Authors: Runnels, Brandon, Agrawal, Vinamra, Meier, Maycon
Format: Preprint
Published: 2025
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author Runnels, Brandon
Agrawal, Vinamra
Meier, Maycon
author_facet Runnels, Brandon
Agrawal, Vinamra
Meier, Maycon
contents Alamo is a high-performance scientific code that uses block-structured adaptive mesh refinement to solve such problems as: the ignition and burn of solid rocket propellant, plasticity, damage and fracture in materials undergoing loading, and the interaction of compressible flow with eroding solid materials. Alamo is powered by AMReX, and provides a set of unique methods, models, and algorithms that enable it to solve solid-mechanics problems (coupled to other physical behavior such as fluid flow or thermal diffusion) using the power of block-structured adaptive mesh refinement.
format Preprint
id arxiv_https___arxiv_org_abs_2503_08917
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Alamo multiphysics solver for phase field simulations with strong-form mechanics and block structured adaptive mesh refinement
Runnels, Brandon
Agrawal, Vinamra
Meier, Maycon
Computational Physics
Alamo is a high-performance scientific code that uses block-structured adaptive mesh refinement to solve such problems as: the ignition and burn of solid rocket propellant, plasticity, damage and fracture in materials undergoing loading, and the interaction of compressible flow with eroding solid materials. Alamo is powered by AMReX, and provides a set of unique methods, models, and algorithms that enable it to solve solid-mechanics problems (coupled to other physical behavior such as fluid flow or thermal diffusion) using the power of block-structured adaptive mesh refinement.
title The Alamo multiphysics solver for phase field simulations with strong-form mechanics and block structured adaptive mesh refinement
topic Computational Physics
url https://arxiv.org/abs/2503.08917