World's Best Scientists 2026 revealed!

D-Index & Metrics

Mathematics

D-Index
38
Citations
5798
World Ranking
2357
National Ranking
121

Mechanical and Aerospace Engineering

D-Index
48
Citations
8495
World Ranking
1298
National Ranking
159

Overview

Liancun Zheng is affiliated with the University of Science and Technology Beijing in China. They specialize in the field of Engineering, with a focus on Biomedical Engineering, Mechanical Engineering, Modeling and Simulation, Computational Mechanics, and Fluid Flow and Transfer Processes.

Their research topics cover several specific areas, including:

  • Nanofluid Flow and Heat Transfer
  • Fractional Differential Equations Solutions
  • Rheology and Fluid Dynamics Studies
  • Heat Transfer and Optimization
  • Heat Transfer Mechanisms
  • Thermoelastic and Magnetoelastic Phenomena
  • Numerical methods in engineering

Liancun Zheng has a record of publications in a variety of scientific journals. Some of the frequent publication venues where their work appears include:

  • Zeitschrift für Naturforschung A
  • Chinese Journal of Physics
  • Computers & Mathematics with Applications
  • International Communications in Heat and Mass Transfer
  • Computers & Fluids

Recent papers by Liancun Zheng demonstrate a range of research interests:

  • Effect of slip boundary condition on flow and heat transfer of a double fractional Maxwell fluid, 2020, Chinese Journal of Physics
  • Flow and heat transfer analysis of a maxwell-power-law fluid film with forced thermal Marangoni convective, 2021, International Communications in Heat and Mass Transfer
  • Evaluation of particle shape, size and magnetic field intensity for targeted delivery efficiency and plaque injury in treating atherosclerosis, 2020, Powder Technology
  • A novel distributed order time fractional model for heat conduction, anomalous diffusion, and viscoelastic flow problems, 2023, Computers & Fluids
  • Quantitative analysis of renal blood flow during thoracic endovascular aortic repair in type B aortic dissection using syngo iFlow, 2021, Quantitative Imaging in Medicine and Surgery

Collaborations are a significant part of Liancun Zheng's research process. Frequent co-authors include:

  • Shengna Liu
  • Weidong Yang
  • Libo Feng
  • Lin Liu
  • Jing Zhu

Best Publications

  • Coupled flow and heat transfer in viscoelastic fluid with Cattaneo–Christov heat flux model

    Shihao Han;Liancun Zheng;Chunrui Li;Xinxin Zhang

  • MHD flow and radiation heat transfer of nanofluids in porous media with variable surface heat flux and chemical reaction

    Chaoli Zhang;Liancun Zheng;Xinxin Zhang;Goong Chen;Goong Chen

  • MHD pseudo-plastic nanofluid unsteady flow and heat transfer in a finite thin film over stretching surface with internal heat generation

    Yanhai Lin;Yanhai Lin;Liancun Zheng;Xinxin Zhang;Lianxi Ma

  • Flow and radiation heat transfer of a nanofluid over a stretching sheet with velocity slip and temperature jump in porous medium

    Liancun Zheng;Chaoli Zhang;Xinxin Zhang;Junhong Zhang

  • Radiation effects on Marangoni convection flow and heat transfer in pseudo-plastic non-Newtonian nanofluids with variable thermal conductivity

    Yanhai Lin;Liancun Zheng;Xinxin Zhang

  • Boundary layer heat and mass transfer with Cattaneo–Christov double-diffusion in upper-convected Maxwell nanofluid past a stretching sheet with slip velocity

    Jize Sui;Liancun Zheng;Xinxin Zhang

  • MHD viscoelastic flow and heat transfer over a vertical stretching sheet with Cattaneo-Christov heat flux effects

    Jing Li;Liancun Zheng;Lin Liu

  • Mixed convection heat transfer in power law fluids over a moving conveyor along an inclined plate

    Jize Sui;Liancun Zheng;Xinxin Zhang;Goong Chen

  • Unsteady flow and heat transfer of pseudo-plastic nanoliquid in a finite thin film on a stretching surface with variable thermal conductivity and viscous dissipation

    Yanhai Lin;Liancun Zheng;Goong Chen;Goong Chen

  • Unsteady natural convection boundary layer heat transfer of fractional Maxwell viscoelastic fluid over a vertical plate

    Jinhu Zhao;Liancun Zheng;Xinxin Zhang;Fawang Liu

  • Flow and heat transfer of nanofluids over a rotating disk with uniform stretching rate in the radial direction

    Chenguang Yin;Liancun Zheng;Chaoli Zhang;Xinxin Zhang

  • Slip effects on MHD flow of a generalized Oldroyd-B fluid with fractional derivative

    Liancun Zheng;Yaqing Liu;Xinxin Zhang

  • Particle shape and radiation effects on Marangoni boundary layer flow and heat transfer of copper-water nanofluid driven by an exponential temperature

    Yanhai Lin;Botong Li;Liancun Zheng;Goong Chen

  • MHD flow and heat transfer over a porous shrinking surface with velocity slip and temperature jump

    Liancun Zheng;Jiajia Niu;Xinxin Zhang;Yingtao Gao

  • Flow and heat transfer of Ostwald-de Waele fluid over a variable thickness rotating disk with index decreasing

    Shuo Xun;Jinhu Zhao;Liancun Zheng;Xuehui Chen

  • Convection heat and mass transfer of fractional MHD Maxwell fluid in a porous medium with Soret and Dufour effects

    Jinhu Zhao;Liancun Zheng;Xinxin Zhang;Fawang Liu

  • Analytic solutions of unsteady boundary flow and heat transfer on a permeable stretching sheet with non-uniform heat source/sink

    Liancun Zheng;Lijuan Wang;Xinxin Zhang

  • Steady flow and heat transfer of the power-law fluid over a rotating disk

    Chunying Ming;Liancun Zheng;Xinxin Zhang

  • MHD mixed convective heat transfer over a permeable stretching wedge with thermal radiation and ohmic heating

    Xiaohong Su;Xiaohong Su;Liancun Zheng;Xinxin Zhang;Junhong Zhang

  • Unsteady MHD Couette flow of a generalized Oldroyd-B fluid with fractional derivative

    Yaqing Liu;Liancun Zheng;Xinxin Zhang

Frequent Co-Authors

Xinxin Zhang
Xinxin Zhang University of Science and Technology Beijing
Fawang Liu
Fawang Liu Queensland University of Technology
Goong Chen
Goong Chen Texas A&M University
Vo Anh
Vo Anh Queensland University of Technology
Ian Turner
Ian Turner Queensland University of Technology
Ali H. Bhrawy
Ali H. Bhrawy Beni-Suef University

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