World's Best Scientists 2026 revealed!

D-Index & Metrics

Mechanical and Aerospace Engineering

D-Index
36
Citations
5987
World Ranking
2501
National Ranking
304

Overview

Hang Ding is affiliated with the University of Science and Technology of China and specializes in the field of engineering, with a significant focus on computational mechanics. Their research activity encompasses areas such as fluid dynamics and heat transfer, surface modification and superhydrophobicity, and the stability and controllability of differential equations.

The scientist's work spans main topics including:

  • Fluid Dynamics and Heat Transfer
  • Surface Modification and Superhydrophobicity
  • Stability and Controllability of Differential Equations
  • Advanced Mathematical Physics Problems
  • Advanced Mathematical Modeling in Engineering
  • Fluid Dynamics Simulations and Interactions
  • Nonlinear Partial Differential Equations

Their research covers several subfields such as computational mechanics, surfaces, coatings and films, applied mathematics, control and systems engineering, and electrical and electronic engineering.

Frequently published in journals related to fluid mechanics and applied physics, their common publication venues include:

  • Physics of Fluids
  • Journal of Fluid Mechanics
  • SSRN Electronic Journal
  • Journal of Computational Physics
  • Nonlinearity

They have contributed to various papers, including:

  • Local existence, global existence and blow-up of solutions to a nonlocal Kirchhoff diffusion problem (2020, Nonlinearity)
  • Origin of Batch Hydrothermal Fluid Behavior and Its Influence on Nanomaterial Synthesis (2020, Matter)
  • A fully 3D simulation of fluid-structure interaction with dynamic wetting and contact angle hysteresis (2020, Journal of Computational Physics)
  • Directed motion of an impinging water droplet-seesaw effect (2020, Journal of Materials Chemistry A)
  • Head-on collision of two immiscible droplets of different components (2020, Physics of Fluids)

Hang Ding has collaborated frequently with other researchers, including Jun Zhou, Chunyu Zhang, Haoran Liu, Er Qiang Li, and Yi Shen, indicating an active engagement in collaborative research within their fields of expertise.

Best Publications

  • Diffuse interface model for incompressible two-phase flows with large density ratios

    Hang Ding;Peter D.M. Spelt;Chang Shu

  • Local radial basis function-based differential quadrature method and its application to solve two-dimensional incompressible Navier–Stokes equations

    C Shu;H Ding;K.S Yeo

  • Wetting condition in diffuse interface simulations of contact line motion.

    Hang Ding;Peter D. M. Spelt

  • Numerical Simulations of Flows with Moving Contact Lines

    Yi Sui;Hang Ding;Peter D.M. Spelt

  • Simulation of incompressible viscous flows past a circular cylinder by hybrid FD scheme and meshless least square-based finite difference method

    H. Ding;C. Shu;K.S. Yeo;D. Xu

  • Numerical simulation of flows around two circular cylinders by mesh‐free least square‐based finite difference methods

    H. Ding;C. Shu;K. S. Yeo;D. Xu

  • Inertial effects in droplet spreading: A comparison between diffuse-interface and level-set simulations

    Hang Ding;Peter D. M. Spelt

  • Numerical computation of three-dimensional incompressible viscous flows in the primitive variable form by local multiquadric differential quadrature method

    H. Ding;C. Shu;K.S. Yeo;D. Xu

  • Onset of motion of a three-dimensional droplet on a wall in shear flow at moderate Reynolds numbers

    Hang Ding;Peter D. M. Spelt

  • Development of least-square-based two-dimensional finite-difference schemes and their application to simulate natural convection in a cavity

    H. Ding;C. Shu;K.S. Yeo;D. Xu

  • A diffuse-interface immersed-boundary method for two-dimensional simulation of flows with moving contact lines on curved substrates

    Hao-Ran Liu;Hang Ding

  • Linear stability analysis and numerical simulation of miscible two-layer channel flow

    K. C. Sahu;H. Ding;Prashant Valluri;O. K. Matar

  • An upwind local RBF-DQ method for simulation of inviscid compressible flows

    C. Shu;H. Ding;H.Q. Chen;T.G. Wang

  • Diffuse interface simulation of ternary fluids in contact with solid

    Chun-Yu Zhang;Hang Ding;Peng Gao;Yan-Ling Wu

  • Meshfree weak–strong (MWS) form method and its application to incompressible flow problems

    G. R. Liu;Y. L. Wu;H. Ding

  • Sliding, pinch-off and detachment of a droplet on a wall in shear flow

    Hang Ding;Mohammad N. H. Gilani;Peter D. M. Spelt

  • Solution of partial differential equations by a global radial basis function-based differential quadrature method

    C Shu;H Ding;K.S Yeo

  • SIMULATION OF NATURAL CONVECTION IN ECCENTRIC ANNULI BETWEEN A SQUARE OUTER CYLINDER AND A CIRCULAR INNER CYLINDER USING LOCAL MQ-DQ METHOD

    H. Ding;C. Shu;K. S. Yeo;Z. L. Lu

  • Pressure-driven miscible two-fluid channel flow with density gradients

    K. C. Sahu;H. Ding;Prashant Valluri;O. K. Matar

  • Dynamics of drop impact onto a solid sphere: spreading and retraction

    Yang Zhu;Hao-Ran Liu;Kai Mu;Peng Gao

  • Linear and nonlinear spatio-temporal instability in laminar two-layer flows

    Prashant Valluri;L. Ó. Náraigh;H. Ding;P. D. M. Spelt

  • Pressure-driven miscible two-fluid channel flow with density gradients

    Hang Ding;Kirti Sahu;Prashant Valluri;Omar Matar

Frequent Co-Authors

Omar Matar
Omar Matar Imperial College London
Kirti Chandra Sahu
Kirti Chandra Sahu Indian Institute of Technology Hyderabad
Xi-Yun Lu
Xi-Yun Lu University of Science and Technology of China
Chang Shu
Chang Shu National University of Singapore
Ting Si
Ting Si University of Science and Technology of China
Khoon Seng Yeo
Khoon Seng Yeo National University of Singapore
James J. Feng
James J. Feng University of British Columbia
Xi Zhu
Xi Zhu Chinese University of Hong Kong
Shu-Hong Yu
Shu-Hong Yu University of Science and Technology of China
Lei Jiang
Lei Jiang Chinese Academy of Sciences

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