返回
Bayesian Inversion with Open-Source Codes for Various One-Dimensional Model Problems in Computational Mechanics
DOI:10.1007/s11831-022-09751-6.png)
摘要
En 中文
The complexity of many problems in computational mechanics calls for reliable programming codes and accurate simulation systems. Typically, simulation responses strongly depend on material and model parameters, where one distinguishes between backward and forward models. Providing reliable information for the material/model parameters, enables us to calibrate the forward model (e.g., a system of PDEs). Markov chain Monte Carlo methods are efficient computational techniques to estimate the posterior density of the parameters. In the present study, we employ Bayesian inversion for several mechanical problems and study its applicability to enhance the model accuracy. Seven different boundary value problems in coupled multi-field (and multi-physics) systems are presented. To provide a comprehensive study, both rate-dependent and rate-independent equations are considered. Moreover, open source codes (https://doi.org/10.5281/zenodo.6451942) are provided, constituting a convenient platform for future developments for, e.g., multi-field coupled problems. The developed package is written in MATLAB and provides useful information about mechanical model problems and the backward Bayesian inversion setting.
Keyword:
PHASE-FIELD MODEL
GRADIENT DAMAGE MODELS
BRITTLE-FRACTURE
VARIATIONAL APPROACH
FATIGUE
FORMULATION
PLASTICITY
期刊
IF:
12.1
论文数:
1.8K
被引数:
1.2W
机构
引用论文
A phase field model for rate-independent crack propagation: Robust algorithmic implementation based on operator splits与速率无关的裂纹扩展的相场模型: 基于算子分裂的鲁棒算法实现
Fatigue phase-field damage modeling of rubber using viscous dissipation: Crack nucleation and propagation使用粘性耗散的橡胶的乏力相场损伤建模: 裂纹成核和扩展

