World's Best Scientists 2026 revealed!
Wei-Xi Huang

Wei-Xi Huang

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
32
Citations
3853
World Ranking
3175
National Ranking
394

Overview

Wei-Xi Huang is affiliated with Tsinghua University in China, focusing primarily on Engineering. Their research spans several subfields including Computational Mechanics, Aerospace Engineering, Environmental Engineering, Biomedical Engineering, and Mechanical Engineering. The volume of publications in these domains highlights a broad engagement with both theoretical and applied aspects of engineering.

The scientist's main research topics include:

  • Fluid Dynamics and Turbulent Flows
  • Wind and Air Flow Studies
  • Lattice Boltzmann Simulation Studies
  • Fluid Dynamics and Vibration Analysis
  • Biomimetic flight and propulsion mechanisms
  • Aerodynamics and Acoustics in Jet Flows
  • Fluid Dynamics Simulations and Interactions

Wei-Xi Huang has contributed to multiple recent papers that reflect these interests. Notable publications include:

  • "Vortex dynamics and hydrodynamic performance enhancement mechanism in batoid fish oscillatory swimming" (2021), Journal of Fluid Mechanics
  • "Active control for drag reduction of turbulent channel flow based on convolutional neural networks" (2020), Physics of Fluids
  • "Specialization of tuna: A numerical study on the function of caudal keels" (2020), Physics of Fluids
  • "Ultrastretchable Electrically Self-Healing Conductors Based on Silver Nanowire/Liquid Metal Microcapsule Nanocomposites" (2023), Nano Letters
  • "Non-monotonic effect of mass loading on turbulence modulations in particle-laden channel flow" (2020), Physics of Fluids

The frequent coauthors of Wei-Xi Huang include Chunxiao Xu, Hyung Jin Sung, Jun-Duo Zhang, Jingwei Jiang, and Lihao Zhao. These collaborators have contributed to numerous joint works, indicating ongoing research partnerships within their fields.

Publication venues where Wei-Xi Huang frequently contributes are:

  • Physics of Fluids with 29 publications
  • Journal of Fluid Mechanics with 13 publications
  • International Journal of Heat and Fluid Flow with 4 publications
  • Journal of Computational Physics with 4 publications
  • SSRN Electronic Journal with 3 publications

This profile reflects a researcher with consistent contributions focused on fluid dynamics and related engineering fields, publishing in specialized journals and collaborating with a core group of coauthors on topics involving both simulation and experimental approaches to complex fluid behaviors.

Best Publications

  • Simulation of flexible filaments in a uniform flow by the immersed boundary method

    Wei-Xi Huang;Soo Jai Shin;Hyung Jin Sung

  • Three-dimensional simulation of a flapping flag in a uniform flow

    Wei-Xi Huang;Hyung Jin Sung

  • An immersed boundary method for fluid–flexible structure interaction

    Wei-Xi Huang;Hyung Jin Sung

  • Recent trends and progress in the immersed boundary method

    Wei-Xi Huang;Fang-Bao Tian

  • Constructive and destructive interaction modes between two tandem flexible flags in viscous flow

    Sohae Kim;Wei-Xi Huang;Hyung Jin Sung

  • Assessment of regularized delta functions and feedback forcing schemes for an immersed boundary method

    Soo Jai Shin;Wei-Xi Huang;Hyung Jin Sung

  • Simulation of liquid transfer between separating walls for modeling micro-gravure-offset printing

    Wei-Xi Huang;Seung-Hyun Lee;Hyung Jin Sung;Taik-Min Lee

  • Three-dimensional simulation of elastic capsules in shear flow by the penalty immersed boundary method

    Wei-Xi Huang;Cheong Bong Chang;Hyung Jin Sung

  • An improved penalty immersed boundary method for fluid-flexible body interaction

    Wei-Xi Huang;Cheong Bong Chang;Hyung Jin Sung

  • Vortex dynamics and hydrodynamic performance enhancement mechanism in batoid fish oscillatory swimming

    Dong Zhang;Qiao-Gao Huang;Guang Pan;Li-Ming Yang

  • Vortex shedding from a circular cylinder near a moving wall

    Wei-Xi Huang;Hyung Jin Sung

  • Interaction modes of multiple flexible flags in a uniform flow

    Emad Uddin;Wei-Xi Huang;Hyung Jin Sung

  • Actively flapping tandem flexible flags in a viscous flow

    Emad Uddin;Wei-Xi Huang;Hyung Jin Sung

  • A dynamic wall model for large eddy simulation of turbulent flow over complex/moving boundaries based on the immersed boundary method

    Ming Ma;Wei-Xi Huang;Chun-Xiao Xu

  • A Sharp-Interface Immersed Boundary Method for Simulating Incompressible Flows with Arbitrarily Deforming Smooth Boundaries

    Zuo Cui;Zuo Cui;Zixuan Yang;Hong Zhou Jiang;Wei Xi Huang

  • Transient response of Reynolds stress transport to spanwise wall oscillation in a turbulent channel flow

    Chun-Xiao Xu;Wei-Xi Huang

  • Active control for drag reduction of turbulent channel flow based on convolutional neural networks

    Bing-Zheng Han;Wei-Xi Huang

  • Specialization of tuna: A numerical study on the function of caudal keels

    Jun-Duo Zhang;Hyung Jin Sung;Wei-Xi Huang

  • Simulation of swimming oblate jellyfish with a paddling-based locomotion

    Sung Goon Park;Cheong Bong Chang;Wei Xi Huang;Hyung Jin Sung

  • An efficient immersed boundary projection method for flow over complex/moving boundaries

    Ru-Yang Li;Chun-Mei Xie;Wei-Xi Huang;Chun-Xiao Xu

  • Self-propelled heaving and pitching flexible fin in a quiescent flow

    Boyoung Kim;Sung Goon Park;Weixi Huang;Hyung Jin Sung

  • Improvement of mass source/sink for an immersed boundary method

    Wei-Xi Huang;Hyung Jin Sung

  • Origin of effectiveness degradation in active drag reduction control of turbulent channel flow at Reτ = 1000

    Bing Qing Deng;Wei Xi Huang;Chun Xiao Xu

Frequent Co-Authors

Hyung Jin Sung
Hyung Jin Sung Korea Advanced Institute of Science and Technology
Helge I. Andersson
Helge I. Andersson Norwegian University of Science and Technology
Xi-Qiao Feng
Xi-Qiao Feng Tsinghua University
Shiguang Miao
Shiguang Miao China Meteorological Administration
Yin Lu Young
Yin Lu Young University of Michigan–Ann Arbor
Fang-Bao Tian
Fang-Bao Tian University of New South Wales

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