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Nonlinearly preconditioned semismooth Newton algorithms for nonlinear nonsmooth systems
Journal article
Yang, Haijian, Ma, Tian Hao, Hwang, Feng Nan, Cai, Xiao Chuan. Nonlinearly preconditioned semismooth Newton algorithms for nonlinear nonsmooth systems[J]. International Journal of Computer Mathematics, 2024, 101(6), 601-622.
Authors:
Yang, Haijian
;
Ma, Tian Hao
;
Hwang, Feng Nan
;
Cai, Xiao Chuan
Favorite
|
TC[WOS]:
0
TC[Scopus]:
0
IF:
1.7
/
1.5
|
Submit date:2024/08/05
Complementarity Problems
Flow Control
Nonlinear Preconditioning
Parallel Computing
Semismooth Newton Algorithm
A highly parallel algorithm for simulating the elastodynamics of a patient-specific human heart with four chambers using a heterogeneous hyperelastic model
Journal article
Jiang, Yi, Yan, Zhengzheng, Wang, Xinhong, Chen, Rongliang, Cai, Xiao Chuan. A highly parallel algorithm for simulating the elastodynamics of a patient-specific human heart with four chambers using a heterogeneous hyperelastic model[J]. Journal of Computational Physics, 2024, 508, 113027.
Authors:
Jiang, Yi
;
Yan, Zhengzheng
;
Wang, Xinhong
;
Chen, Rongliang
;
Cai, Xiao Chuan
Favorite
|
TC[WOS]:
0
TC[Scopus]:
1
IF:
3.8
/
4.5
|
Submit date:2024/05/16
Domain Decomposition
Finite Element
Fully Implicit Method
Human Heart
Hyperelasticity Model
Parallel Computing
On accelerating a multilevel correction adaptive finite element method for Kohn-Sham equation
Journal article
Hu, Guanghui, Xie, Hehu, Xu, Fei. On accelerating a multilevel correction adaptive finite element method for Kohn-Sham equation[J]. Journal of Computational Physics, 2023, 472.
Authors:
Hu, Guanghui
;
Xie, Hehu
;
Xu, Fei
Favorite
|
TC[WOS]:
2
TC[Scopus]:
2
IF:
3.8
/
4.5
|
Submit date:2023/02/08
Finite Element Method
Kohn-sham Equation
Multilevel Correction Method
Parallel Computing
Separately Handing Nonlinear Terms
A highly parallel fully implicit domain decomposition method for the simulation of the hemodynamics of a patient-specific artery at the full-body scale
Journal article
Qin, Shanlin, Chen, Rongliang, Wu, Bokai, Cai, Xiao Chuan. A highly parallel fully implicit domain decomposition method for the simulation of the hemodynamics of a patient-specific artery at the full-body scale[J]. Journal of Computational Physics, 2023, 472.
Authors:
Qin, Shanlin
;
Chen, Rongliang
;
Wu, Bokai
;
Cai, Xiao Chuan
Favorite
|
TC[WOS]:
1
TC[Scopus]:
3
IF:
3.8
/
4.5
|
Submit date:2023/02/08
Blood Flow Distribution
Domain Decomposition Method
Finite Element Method
Incompressible Navier-stokes Equations
Parallel Computing
Patient-specific-full-body Artery
An efficient two-level overlapping domain decomposition method for recovering unsteady sources of 3D parabolic problems
Journal article
Deng, Xiaomao, Liao, Zi Ju, Cai, Xiao Chuan. An efficient two-level overlapping domain decomposition method for recovering unsteady sources of 3D parabolic problems[J]. COMPUTERS & MATHEMATICS WITH APPLICATIONS, 2022, 111, 98-108.
Authors:
Deng, Xiaomao
;
Liao, Zi Ju
;
Cai, Xiao Chuan
Favorite
|
TC[WOS]:
3
TC[Scopus]:
4
IF:
2.9
/
2.6
|
Submit date:2022/05/04
Domain Decomposition
Inverse Problems
Parallel Computing
Source Identification
A Task-Parallel and Reconfigurable FPGA-Based Hardware Implementation of Extreme Learning Machine
Conference paper
Huang, Hui, Rong, Hai Jun, Yang, Zhao Xu. A Task-Parallel and Reconfigurable FPGA-Based Hardware Implementation of Extreme Learning Machine[C]:Association for Computing Machinery, 2022, 194-202.
Authors:
Huang, Hui
;
Rong, Hai Jun
;
Yang, Zhao Xu
Favorite
|
TC[Scopus]:
1
|
Submit date:2022/05/17
Extreme Learning Machine
Field-programmable Gate Array
Reconfigurable Architecture
Task-parallel Computing
A parallel domain decomposition method for large eddy simulation of blood flow in human artery with resistive boundary condition
Journal article
Liao, Zi Ju, Qin, Shanlin, Chen, Rongliang, Cai, Xiao Chuan. A parallel domain decomposition method for large eddy simulation of blood flow in human artery with resistive boundary condition[J]. COMPUTERS & FLUIDS, 2022, 232, 105201.
Authors:
Liao, Zi Ju
;
Qin, Shanlin
;
Chen, Rongliang
;
Cai, Xiao Chuan
Favorite
|
TC[WOS]:
6
TC[Scopus]:
7
IF:
2.5
/
2.7
|
Submit date:2022/02/21
Computational Hemodynamics
Domain Decomposition
Finite Element Method
Large Eddy Simulation
Parallel Computing
Resistive Boundary Condition
Large eddy simulation of the wind flow in a realistic full-scale urban community with a scalable parallel algorithm
Journal article
Yan, Zhengzheng, Chen, Rongliang, Cai, Xiao Chuan. Large eddy simulation of the wind flow in a realistic full-scale urban community with a scalable parallel algorithm[J]. Computer Physics Communications, 2022, 270, 108170.
Authors:
Yan, Zhengzheng
;
Chen, Rongliang
;
Cai, Xiao Chuan
Favorite
|
TC[WOS]:
7
TC[Scopus]:
7
IF:
7.2
/
6.6
|
Submit date:2022/02/21
Domain Decomposition Method
Large Eddy Simulation
Parallel Computing
Unstructured Mesh
Urban Wind Flow
Summation pollution of principal component analysis and an improved algorithm for location sensitive data
Journal article
Li, Jingwei, Cai, Xiao Chuan. Summation pollution of principal component analysis and an improved algorithm for location sensitive data[J]. Numerical Linear Algebra with Applications, 2021, 28(5), e2370.
Authors:
Li, Jingwei
;
Cai, Xiao Chuan
Favorite
|
TC[WOS]:
4
TC[Scopus]:
5
IF:
1.8
/
1.8
|
Submit date:2021/12/08
Dimensionality Reduction
Domain Decomposition
Image Recognition
Parallel Computing
Principle Component Analysis
Subspace Optimization
Efficient parallel simulation of hemodynamics in patient-specific abdominal aorta with aneurysm
Journal article
Qin, Shanlin, Wu, Bokai, Liu, Jia, Shiu, Wen Shin, Yan, Zhengzheng, Chen, Rongliang, Cai, Xiao Chuan. Efficient parallel simulation of hemodynamics in patient-specific abdominal aorta with aneurysm[J]. COMPUTERS IN BIOLOGY AND MEDICINE, 2021, 136, 104652.
Authors:
Qin, Shanlin
;
Wu, Bokai
;
Liu, Jia
;
Shiu, Wen Shin
;
Yan, Zhengzheng
; et al.
Favorite
|
TC[WOS]:
25
TC[Scopus]:
27
IF:
7.0
/
6.7
|
Submit date:2021/12/08
Abdominal Aorta With Aneurysm
Blood Flow
Domain Decomposition
Finite Element
Fully Implicit Time Integration
Parallel Computing