Novel Partitioned Time-Stepping Algorithms for Fast Computation of Random Interface-Coupled Problems with Uncertain Parameters

被引:1
作者
Sun, Yizhong [1 ]
Wang, Jiangshan [1 ]
Zheng, Haibiao [2 ]
机构
[1] East China Normal Univ, Sch Math Sci, Shanghai, Peoples R China
[2] East China Normal Univ, Sch Math Sci, Key Lab Math & Engn Applicat, Shanghai Key Lab PMMP,Minist Educ, Shanghai, Peoples R China
来源
NUMERICAL MATHEMATICS-THEORY METHODS AND APPLICATIONS | 2024年 / 17卷 / 01期
关键词
Scalar auxiliary variable; ensemble algorithm; random interface-coupled problems; implicit-explicit partitioned method; data-passing partitioned method; ENSEMBLE ALGORITHM; ERROR ANALYSIS; SAV SCHEMES; FLOW; STABILITY; EFFICIENT; MODEL;
D O I
10.4208/nmtma.OA-2023-0109
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
The simulation of multi-domain, multi-physics mathematical models with uncertain parameters can be quite demanding in terms of algorithm design and computation costs. Our main objective in this paper is to examine a physical interface coupling between two random dissipative systems with uncertain parameters. Due to the complexity and uncertainty inherent in such interface-coupled problems, uncertain diffusion coefficients or friction parameters often arise, leading to considering random systems. We employ Monte Carlo methods to produce independent and identically distributed deterministic heat-heat model samples to address random systems, and adroitly integrate the ensemble idea to facilitate the fast calculation of these samples. To achieve unconditional stability, we introduce the scalar auxiliary variable (SAV) method to overcome the time constraints of the ensemble implicit-explicit algorithm. Furthermore, for a more accurate and stable scheme, the ensemble data-passing algorithm is raised, which is unconditionally stable and convergent without any auxiliary variables. These algorithms employ the same coefficient matrix for multiple linear systems and enable easy parallelization, which can significantly reduce the computational cost. Finally, numerical experiments are conducted to support the theoretical results and showcase the unique features of the proposed algorithms.
引用
收藏
页码:145 / 180
页数:36
相关论文
共 29 条
[1]   A COUPLED MULTIPHYSICS MODEL AND A DECOUPLED STABILIZED FINITE ELEMENT METHOD FOR THE CLOSED-LOOP GEOTHERMAL SYSTEM [J].
Al Mahbub, Md Abdullah ;
He, Xiaoming ;
Nasu, Nasrin Jahan ;
Qiu, Changxin ;
Wang, Yifan ;
Zheng, Haibiao .
SIAM JOURNAL ON SCIENTIFIC COMPUTING, 2020, 42 (04) :B951-B982
[2]  
Bresch D., 2006, International Journal of Applied Mathematics and Computer Science, P419
[3]   FINITE ELEMENT APPROXIMATIONS FOR STOKES-DARCY FLOW WITH BEAVERS-JOSEPH INTERFACE CONDITIONS [J].
Cao, Yanzhao ;
Gunzburger, Max ;
Hu, Xiaolong ;
Hua, Fei ;
Wang, Xiaoming ;
Zhao, Weidong .
SIAM JOURNAL ON NUMERICAL ANALYSIS, 2010, 47 (06) :4239-4256
[4]   Generalized SAV approaches for gradient systems [J].
Cheng, Qing ;
Liu, Chun ;
Shen, Jie .
JOURNAL OF COMPUTATIONAL AND APPLIED MATHEMATICS, 2021, 394 (394)
[5]  
Connors JM, 2018, INT J NUMER ANAL MOD, V15, P492
[6]   DECOUPLED TIME STEPPING METHODS FOR FLUID-FLUID INTERACTION [J].
Connors, Jeffrey M. ;
Howell, Jason S. ;
Layton, William J. .
SIAM JOURNAL ON NUMERICAL ANALYSIS, 2012, 50 (03) :1297-1319
[7]   PARTITIONED TIME STEPPING FOR A PARABOLIC TWO DOMAIN PROBLEM [J].
Connors, Jeffrey M. ;
Howell, Jason S. ;
Layton, William J. .
SIAM JOURNAL ON NUMERICAL ANALYSIS, 2009, 47 (05) :3526-3549
[8]   Existence and uniqueness of global weak solutions to a Cahn-Hilliard-Stokes-Darcy system for two phase incompressible flows in karstic geometry [J].
Han, Daozhi ;
Wang, Xiaoming ;
Wu, Hao .
JOURNAL OF DIFFERENTIAL EQUATIONS, 2014, 257 (10) :3887-3933
[9]   New development in freefem++ [J].
Hecht, F. .
JOURNAL OF NUMERICAL MATHEMATICS, 2012, 20 (3-4) :251-265
[10]   Numerical analysis of two-grid decoupling finite element scheme for Navier-Stokes/Darcy model [J].
Hou, Yanren ;
Xue, Dandan .
COMPUTERS & MATHEMATICS WITH APPLICATIONS, 2022, 113 :45-51