World's Best Scientists 2026 revealed!

Overview

Guiyong Zhang is affiliated with Dalian University of Technology in China and has a focus on engineering, particularly within computational mechanics and ocean engineering.

Their research spans several subfields of study, including:

  • Computational Mechanics
  • Ocean Engineering
  • Aerospace Engineering
  • Mechanics of Materials
  • Mechanical Engineering

Guiyong Zhang's main topics of work include:

  • Fluid Dynamics Simulations and Interactions
  • Fluid Dynamics and Heat Transfer
  • Lattice Boltzmann Simulation Studies
  • Ship Hydrodynamics and Maneuverability
  • Fluid Dynamics and Vibration Analysis
  • Surface Modification and Superhydrophobicity
  • Arctic and Antarctic ice dynamics

The scientist has published extensively in the following venues:

  • Ocean Engineering
  • Physics of Fluids
  • Default Digital Object Group
  • SSRN Electronic Journal
  • Applied Ocean Research

Recent papers by Guiyong Zhang include:

  • Numerical simulation of the effect of waves on cavity dynamics for oblique water entry of a cylinder, 2020, Journal of Hydrodynamics
  • Experimental study on the effects of brash ice on the water-exit dynamics of an underwater vehicle, 2021, Applied Ocean Research

Additional significant papers although not authored by Zhang encompass:

  • Experimental study on the influence of the angle of attack on cavity evolution and surface load in the water entry of a cylinder, 2020, Ocean Engineering
  • A review of advances in modeling hydrodynamics and hydroelasticity for very large floating structures, 2023, Ocean Engineering
  • Numerical estimation of ship resistance in broken ice and investigation on the effect of floe geometry, 2020, Marine Structures

Frequently collaborating co-authors include:

  • Tiezhi Sun
  • Bo Zhou
  • Zhifan Zhang
  • Zhi Zong
  • Zhe Sun

Best Publications

  • A face‐based smoothed finite element method (FS‐FEM) for 3D linear and geometrically non‐linear solid mechanics problems using 4‐node tetrahedral elements

    T. Nguyen-Thoi;G.R. Liu;G.R. Liu;K.Y. Lam;Guiyong Zhang;Guiyong Zhang

  • A meshfree radial point interpolation method (RPIM) for three-dimensional solids

    Gui-Rong Liu;Gui-Rong Liu;Guiyong Zhang;YuanTong Gu;Y Wang

  • A LINEARLY CONFORMING POINT INTERPOLATION METHOD (LC-PIM) FOR 2D SOLID MECHANICS PROBLEMS

    G.R. Liu;Guiyong Zhang;K.Y. Dai;Y.Y. Wang

  • Upper bound solution to elasticity problems: A unique property of the linearly conforming point interpolation method (LC-PIM)

    G.R. Liu;G.R. Liu;Guiyong Zhang;Guiyong Zhang

  • EDGE-BASED SMOOTHED POINT INTERPOLATION METHODS

    G.R. Liu;G.R. Liu;Guiyong Zhang

  • A normed G space and weakened weak (W2) formulation of a cell-based smoothed point interpolation method

    G.R. Liu;G.R. Liu;Guiyong Zhang

  • An edge-based smoothed finite element method (ES-FEM) for analyzing three-dimensional acoustic problems

    Z.C. He;Z.C. He;G.R. Liu;G.R. Liu;Z.H. Zhong;S.C. Wu

  • A linearly conforming point interpolation method (LC-PIM) for three-dimensional elasticity problems

    Guiyong Zhang;G.R. Liu;G.R. Liu;Y.Y. Wang;H.T. Huang

  • A nodal integration technique for meshfree radial point interpolation method (NI-RPIM)

    G.R. Liu;G.R. Liu;Guiyong Zhang;Y.Y. Wang;Z.H. Zhong

  • Analysis of plates and shells using an edge-based smoothed finite element method

    Xiangyang Cui;Xiangyang Cui;Gui-Rong Liu;Gui-Rong Liu;Guang-yao Li;GuiYong Zhang

  • A novel singular node‐based smoothed finite element method (NS‐FEM) for upper bound solutions of fracture problems

    G.R. Liu;G.R. Liu;L. Chen;T. Nguyen-Thoi;T. Nguyen-Thoi;K.Y. Zeng

  • A three-dimensional nonlinear meshfree algorithm for simulating mechanical responses of soft tissue

    Guiyong Zhang;Adam Wittek;Grand Joldes;X. Jin

  • An edge-based smoothed tetrahedron finite element method (ES-T-FEM) for 3D static and dynamic problems

    Z. C. He;G. Y. Li;Z. H. Zhong;A. G. Cheng

  • An ES-FEM for accurate analysis of 3D mid-frequency acoustics using tetrahedron mesh

    Z. C. He;G. Y. Li;Z. H. Zhong;A. G. Cheng

  • An edge-based smoothed point interpolation method (ES-PIM) for heat transfer analysis of rapid manufacturing system

    S.C. Wu;S.C. Wu;G.R. Liu;G.R. Liu;X.Y. Cui;X.Y. Cui;T.T. Nguyen

  • A coupled ES-FEM/BEM method for fluid–structure interaction problems

    Z.C. He;Z.C. He;G.R. Liu;G.R. Liu;Z.H. Zhong;Guiyong Zhang

  • An Information Roadmap Method for Robotic Sensor Path Planning

    G. Zhang;S. Ferrari;M. Qian

  • THE UPPER BOUND PROPERTY FOR SOLID MECHANICS OF THE LINEARLY CONFORMING RADIAL POINT INTERPOLATION METHOD (LC-RPIM)

    Guiyong Zhang;G.R. Liu;G.R. Liu;T.T. Nguyen;C.X. Song

  • Dispersion error reduction for acoustic problems using the edge‐based smoothed finite element method (ES‐FEM)

    Z. C. He;Z. C. He;A. G. Cheng;G. Y. Zhang;Z. H. Zhong

  • Coupled analysis of 3D structural-acoustic problems using the edge-based smoothed finite element method/finite element method

    Z. C. He;G. R. Liu;Z. H. Zhong;G. Y. Zhang

Frequent Co-Authors

Gui-Rong Liu
Gui-Rong Liu University of Cincinnati
Xiangyang Cui
Xiangyang Cui Hunan University
YuanTong Gu
YuanTong Gu Queensland University of Technology
Trung Nguyen-Thoi
Trung Nguyen-Thoi Van Lang University
Karol Miller
Karol Miller University of Western Australia
Samuel H. Huang
Samuel H. Huang University of Cincinnati
Yiming Rong
Yiming Rong Southern University of Science and Technology
Xu Han
Xu Han Hebei University of Technology
Jun Cheng
Jun Cheng University of Chinese Academy of Sciences
Yat Li
Yat Li University of California, Santa Cruz

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