Skip to main content Skip to main navigation menu Skip to site footer
Advances in Applied Mathematics and Mechanics
  • Home
  • Editorial Board
  • Archives
  • Online First
  • Guide for Authors
  • Policies
    • Ethical Policy
    • The Use of Artificial Intelligence Policy
  • About
    • About the Journal
    • Order Journal
    • Contact Us
    • Announcements
  • Register
  • Login
  • Register
  • Login
  1. Home /
  2. Search

Search

Advanced filters
Published After
Published Before

Search Results

##search.searchResults.foundPlural##
  • A Novel Immersed Boundary Method Implemented by Imposing Reconstructed Velocity on Virtual Boundary

    Jingyang Wang, Chunhua Zhou
    2020-10-20
    49962 4605 Pages:83-100
  • A Boundary Condition-Implemented Immersed Boundary-Lattice Boltzmann Method and Its Application for Simulation of Flows Around a Circular Cylinder

    X. Wang, C. Shu, J. Wu, L. M. Yang
    2021-07-01
    43440 4595 Pages:811-829
  • Reduction of Numerical Oscillations in Simulating Moving-Boundary Problems by the Local DFD Method

    Yang Zhang, Chunhua Zhou
    2018-05-05
    44064 4462 Pages:145-165
  • A New Explicit Immersed Boundary Method for Simulation of Fluid-Solid Interactions

    B. Harikrishnan, Zhen Chen, Chang Shu
    2020-12-18
    61828 3975 Pages:261-284
  • A Variable Correction-Based Immersed Boundary Method for Compressible Flows over Stationary and Moving Bodies

    Junjie Wang, Yadong Li, Jie Wu, Fusheng Qiu
    2020-01-17
    47113 3218 Pages:545-563
  • Simulation of Incompressible Viscous Flows by Local DFD-Immersed Boundary Method

    Y. L. Wu, C. Shu, H. Ding
    2012-04-01
    40728 4180 Pages:311-324
  • An Immersed Boundary-Simplified Gas Kinetic Scheme for 2D Incompressible Flows with Curved and Moving Boundaries

    H. Dong, L. M. Yang
    2019-06-24
    45473 3227 Pages:1177-1199
  • Natural Convection in a Concentric Annulus: A Lattice Boltzmann Method Study with Boundary Condition-Enforced Immersed Boundary Method

    Yang Hu, Xiao-Dong Niu, Shi Shu, Haizhuan Yuan, Mingjun Li
    2013-05-01
    41800 4700 Pages:321-336
  • A Direct-Forcing Immersed Boundary Projection Method for Thermal Fluid-Solid Interaction Problems

    Cheng-Shu You, Po-Wen Hsieh, Suh-Yuh Yang
    2022-10-24
    43685 4155 Pages:1-29
  • Comparative Study of Implicit and Explicit Immersed Boundary-Lattice Boltzmann Methods for Simulation of Fluid-Structure Interactions

    J. Y. Shao, N. Y. Liu
    2018-09-17
    44700 3168 Pages:1173-1190
  • Fluid-Structure Interaction Simulation of Heart Valve Flows by a Hybrid Immersed-Boundary/Body-Fitted-Grid Method

    Jingyang Wang, Chunhua Zhou, Zhendong Xu
    2025-07-19
    7507 460 Pages:1456-1480
  • Direct Numerical Simulation of a Freely Falling Thick Disk

    Pan Zhang, Zhenhua Xia, Qingdong Cai
    2019-04-16
    48392 3170 Pages:608-618
  • A Numerical Study of Jet Propulsion of an Oblate Jellyfish Using a Momentum Exchange-Based Immersed Boundary-Lattice Boltzmann Method

    Hai-Zhuan Yuan, Shi Shu, Xiao-Dong Niu, Mingjun Li, Yang Hu
    2014-06-01
    42186 4263 Pages:307-326
  • Numerical Simulation of Interaction Between Red Blood Cell with Surrounding Fluid in Poiseuille Flow

    Reza Esmaily, Nader Pourmahmoud, Iraj Mirzaee
    2018-09-17
    45740 5092 Pages:62-76
  • Numerical Investigation of "Frog-Leap" Mechanisms of Three Particles Aligned Moving in an Inclined Channel Flow

    Xiao-Dong Niu, Ping Hu, Xing-Wei Zhang, Hui Meng, Hiroshi Yamaguchi, Yuhiro Iwamoto
    2018-03-30
    41526 3119 Pages:207-228
  • The Fictitious Domain Method with Sharp Interface for Elasticity Systems with General Jump Embedded Boundary Conditions

    Mohamed Kara, Salim Mesbahi, Philippe Angot
    2020-10-20
    49530 4513 Pages:119-139
  • Large Eddy Simulation of the Vortex-Induced Vibration of a Circular Cylinder by Using the Local Domain-Free Discretization Method

    Tianmei Pu, Yang Zhang, Chunhua Zhou
    2022-08-08
    270436 3767 Pages:1456-1476
  • The Ghost Cell Method and Its Applications for Inviscid Compressible Flow on Adaptive Tree Cartesian Grids

    Jianming Liu, Ning Zhao, Ou Hu
    2018-08-10
    41404 4658 Pages:664-682
  • A Method of Lines Based on Immersed Finite Elements for Parabolic Moving Interface Problems

    Tao Lin, Yanping Lin, Xu Zhang
    2021-01-13
    42468 4124 Pages:548-568
  • Sensitivity Analysis of Inflow Conditions and Turbulence Models on Wind Turbine Wake Simulation Using an AD/RANS Approach

    Linlin Tian, Chunling Zhu, Ning Zhao, Wei Zhong, Yilei Song
    2018-09-17
    47118 3394 Pages:978-997
  • The Pressure-Streamfunction MFS Formulation for the Detection of an Obstacle Immersed in a Two-Dimensional Stokes Flow

    A. Karageorghis, D. Lesnic
    2010-02-01
    40028 3747 Pages:183-199
  • The Sensitivity Analysis for the Flow Past Obstacles Problem with Respect to the Reynolds Number

    Kazufumi Ito, Zhilin Li, Zhonghua Qiao
    2012-04-01
    42637 4647 Pages:21-35
  • Numerical Investigation of the Dynamics of a Flexible Filament in the Wake of Cylinder

    Ru-Nan Hua, Luoding Zhu, Xi-Yun Lu
    2014-06-01
    43801 4224 Pages:478-493
  • Numerical Study of Heat Transfer from Two Cylinders in Tandem with Transverse Oscillation

    W. W. Ren, J. Y. Shao, L. M. Yang, T. Q. Li
    2020-07-24
    48985 3216 Pages:1137-1165
  • Particle Scale Numerical Simulation on Momentum and Heat Transfer of Two Tandem Spheroids: An IB-LBM Study

    Chunhai Ke, Shi Shu, Hao Zhang, Haizhuan Yuan
    2021-07-01
    48219 3991 Pages:1497-1526
  • An Adaptive Time and Space Discretization Approach for Simulating Unsteady Navier-Stokes Flows

    Biao Peng, Chunhua Zhou, Junqiang Ai
    2019-01-11
    44173 3108 Pages:406-427
1 - 26 of 26 items
Global Science Press

A fast-growing scientific publisher based in Hong Kong & Vancouver, connecting researchers worldwide across mathematics, chemistry, physics, and computational sciences.

Quick Links
  • Browse Journals
  • Publish with Us
  • Open Access
  • Ethical Policy
  • Terms & Conditions
Resources
  • Partner with Us
  • For Authors
  • For Institutions
  • For Librarians
  • Editorial Process
About
  • About GSP
  • Contact Us
  • For Agents
  • For Users
© %2026 Global Science Press. All rights reserved.