UM

Browse/Search Results:  1-4 of 4 Help

Selected(0)Clear Items/Page:    Sort:
A NURBS-Enhanced Finite Volume Method for Steady Euler Equations with Goal-Oriented h-Adaptivity Journal article
Meng, Xucheng, Hu, Guanghui. A NURBS-Enhanced Finite Volume Method for Steady Euler Equations with Goal-Oriented h-Adaptivity[J]. Communications in Computational Physics, 2022, 32(2), 490-523.
Authors:  Meng, Xucheng;  Hu, Guanghui
Favorite | TC[WOS]:5 TC[Scopus]:5  IF:2.6/2.9 | Submit date:2022/08/30
Steady Euler Equations  Nurbs-enhanced Finite Volume Method  Goal-oriented a Posteriori Error Estimation  Non-oscillatory K-exact Reconstruction  Point Inversion  
An h-adaptive finite element solution of the relaxation non-equilibrium model for gravity-driven fingers Journal article
Bian, Huanying, Shen, Yedan, Hu, Guanghui. An h-adaptive finite element solution of the relaxation non-equilibrium model for gravity-driven fingers[J]. Advances in Applied Mathematics and Mechanics, 2021, 13(6), 1418-1440.
Authors:  Bian, Huanying;  Shen, Yedan;  Hu, Guanghui
Favorite | TC[WOS]:4 TC[Scopus]:4  IF:1.5/1.1 | Submit date:2022/05/13
a Posteriori Error Estimation  Fingering Phenomenon  H-adaptive Mesh Method  Non-equilibrium Richard Equation  Porous Media Flow  
An h -Adaptive Finite Element Solution of the Relaxation Non-Equilibrium Model for Gravity-Driven Fingers Journal article
Huanying Bian, Yedan Shen, Guanghui HU. An h -Adaptive Finite Element Solution of the Relaxation Non-Equilibrium Model for Gravity-Driven Fingers[J]. Advances in Applied Mathematics and Mechanics, 2021, 13(6), 1418-1440.
Authors:  Huanying Bian;  Yedan Shen;  Guanghui HU
Favorite | TC[WOS]:4 TC[Scopus]:4  IF:1.5/1.1 | Submit date:2022/08/31
Non-equilibrium Richard Equation  H-adaptive Mesh Method  a Posteriori Error Estimation  Fingering Phenomenon  Porous Media Flow  
An h-adaptive finite element solution of the relaxation non-equilibrium model for gravity-driven fingers Journal article
Bian, H., Shen, Y., Hu, G.. An h-adaptive finite element solution of the relaxation non-equilibrium model for gravity-driven fingers[J]. Advances in Applied Mathematics and Mechanics, 2021, 1418-1440.
Authors:  Bian, H.;  Shen, Y.;  Hu, G.
Favorite |  | Submit date:2024/08/31
Non-equilibrium Richard equation  h-adaptive mesh method  a posteriori error estimation  fingering phenomenon  porous media flow