World's Best Scientists 2026 revealed!

D-Index & Metrics

Mathematics

D-Index
40
Citations
6181
World Ranking
2071
National Ranking
879

Overview

Weizhang Huang is affiliated with the University of Kansas in the United States and is primarily engaged in research within the field of Engineering. Their work encompasses a variety of subfields including Computational Mechanics, Computational Theory and Mathematics, Mechanics of Materials, Atmospheric Science, and Numerical Analysis.

Their research focuses on advanced numerical methods and modeling techniques applied to complex engineering problems. Key topics covered in their publications include:

  • Advanced Numerical Methods in Computational Mathematics
  • Computational Fluid Dynamics and Aerodynamics
  • Numerical methods in engineering
  • Advanced Mathematical Modeling in Engineering
  • Meteorological Phenomena and Simulations
  • Computational Geometry and Mesh Generation
  • Differential Equations and Numerical Methods

Weizhang Huang has contributed notably to the academic literature with papers published in well-regarded venues such as the Journal of Scientific Computing, Communications in Computational Physics, and others. Selected recent publications include:

  • A High-Order Well-Balanced Positivity-Preserving Moving Mesh DG Method for the Shallow Water Equations With Non-Flat Bottom Topography, 2021, Journal of Scientific Computing
  • A Well-Balanced Positivity-Preserving Quasi-Lagrange Moving Mesh DG Method for the Shallow Water Equations, 2021, Communications in Computational Physics
  • A Quasi-Conservative Discontinuous Galerkin Method for Multi-component Flows Using the Non-oscillatory Kinetic Flux II: ALE Framework, 2021, Journal of Scientific Computing
  • Exploring the Effects of Prescribed Fire on Tick Spread and Propagation in a Spatial Setting, 2022, Computational and Mathematical Methods in Medicine
  • An adaptive spot placement method on Cartesian grid for pencil beam scanning proton therapy, 2021, Physics in Medicine and Biology

The scientist has frequently collaborated with other researchers, with notable co-authors being Jinye Shen, Jianxian Qiu, Zhuoran Wang, Suzanne M. Shontz, and Min Zhang.

Their work appears often in specific publication venues, with multiple contributions to:

  • arXiv (Cornell University)
  • Journal of Scientific Computing
  • Communications in Computational Physics
  • Journal of Computational Physics
  • SSRN Electronic Journal

Overall, Weizhang Huang's research integrates mathematical and computational approaches to various engineering problems emphasizing numerical techniques for simulations, modeling, and computational fluid dynamics.

Best Publications

  • Adaptive Moving Mesh Methods

    Weizhang Huang;Robert D. Russell

  • Moving mesh partial differential equations (MMPDES) based on the equidistribution principle

    Weizhang Huang;Yuhe Ren;Robert D. Russell

  • Adaptivity with moving grids

    Chris J. Budd;Weizhang Huang;Robert D. Russell

  • Moving Mesh Methods Based on Moving Mesh Partial Differential Equations

    Weizhang Huang;Yuhe Ren;Robert D. Russell

  • Moving Mesh Methods for Problems with Blow-up

    Chris J. Budd;Weizhang Huang;Robert D. Russell

  • Anr-Adaptive Finite Element Method Based upon Moving Mesh PDEs

    Weiming Cao;Weizhang Huang;Robert D Russell

  • Moving Mesh Strategy Based on a Gradient Flow Equation for Two-Dimensional Problems

    Weizhang Huang;Robert D. Russell

  • Metric tensors for anisotropic mesh generation

    Weizhang Huang

  • A Study of Monitor Functions for Two-Dimensional Adaptive Mesh Generation

    Weiming Cao;Weizhang Huang;Robert D. Russell

  • Practical aspects of formulation and solution of moving mesh partial differential equations

    Weizhang Huang

  • Variational mesh adaptation: isotropy and equidistribution

    Weizhang Huang

  • Variational mesh adaptation II: error estimates and monitor functions

    Weizhang Huang;Weiwei Sun

  • The Adaptive Verlet Method

    Weizhang Huang;Benedict Leimkuhler

  • Analysis of Moving Mesh Partial Differential Equations with Spatial Smoothing

    Weizhang Huang;Robert D. Russell

  • A Moving Mesh Method Based on the Geometric Conservation Law

    Weiming Cao;Weizhang Huang;Robert D. Russell

  • Mathematical Principles of Anisotropic Mesh Adaptation

    Weizhang Huang

  • The pseudospectral method for solving differential eigenvalue problems

    Weizhang Huang;David M. Sloan

  • A moving collocation method for solving time dependent partial differential equations

    Weizhang Huang;Robert D. Russell

  • Pole condition for singular problems: the pseudospectral approximation

    Weizhang Huang;David M. Sloan

  • A simple adaptive grid method in two dimensions

    Weizhang Huang;David M. Sloan

Frequent Co-Authors

Robert D. Russell
Robert D. Russell Simon Fraser University
Shicheng Zhang
Shicheng Zhang China University of Petroleum, Beijing
Chris Budd
Chris Budd University of Bath
Weiwei Sun
Weiwei Sun United International College
Ricardo Carretero-González
Ricardo Carretero-González San Diego State University
Benedict Leimkuhler
Benedict Leimkuhler University of Edinburgh
Yinnian He
Yinnian He Xi'an Jiaotong University
Tao Tang
Tao Tang Hong Kong Baptist University

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