D-Index & Metrics Best Publications

D-Index & Metrics D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines.

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Mechanical and Aerospace Engineering D-index 32 Citations 5,090 200 World Ranking 1820 National Ranking 151

Overview

What is he best known for?

The fields of study he is best known for:

  • Quantum mechanics
  • Thermodynamics
  • Mechanics

The scientist’s investigation covers issues in Thermodynamics, Mechanics, Heat transfer, Nanofluid and Boundary layer. His research investigates the link between Thermodynamics and topics such as Nusselt number that cross with problems in Parasitic drag. His Mechanics research incorporates elements of Film temperature, Homotopy analysis method and Classical mechanics.

Liancun Zheng has researched Heat transfer in several fields, including Thermal conduction, Partial differential equation, Convection and Ordinary differential equation. He has included themes like Thermal conductivity, Viscosity, Viscoelasticity and Marangoni effect in his Nanofluid study. Liancun Zheng studied Boundary layer and Combined forced and natural convection that intersect with Non-Newtonian fluid.

His most cited work include:

  • Coupled flow and heat transfer in viscoelastic fluid with Cattaneo–Christov heat flux model (245 citations)
  • MHD flow and radiation heat transfer of nanofluids in porous media with variable surface heat flux and chemical reaction (238 citations)
  • Flow and radiation heat transfer of a nanofluid over a stretching sheet with velocity slip and temperature jump in porous medium (164 citations)

What are the main themes of his work throughout his whole career to date?

Liancun Zheng mainly investigates Mechanics, Heat transfer, Thermodynamics, Mathematical analysis and Boundary layer. His studies deal with areas such as Film temperature, Homotopy analysis method and Classical mechanics as well as Mechanics. His Heat transfer research includes elements of Thermal conduction and Thermal conductivity.

His Thermodynamics research integrates issues from Nusselt number and Temperature gradient. His work on Fractional calculus, Distribution and Partial differential equation as part of general Mathematical analysis study is frequently linked to Anomalous diffusion, bridging the gap between disciplines. His study in Boundary layer is interdisciplinary in nature, drawing from both Magnetohydrodynamics and Finite difference method.

He most often published in these fields:

  • Mechanics (47.62%)
  • Heat transfer (46.19%)
  • Thermodynamics (30.48%)

What were the highlights of his more recent work (between 2017-2021)?

  • Mechanics (47.62%)
  • Heat transfer (46.19%)
  • Mathematical analysis (29.05%)

In recent papers he was focusing on the following fields of study:

Mechanics, Heat transfer, Mathematical analysis, Anomalous diffusion and Boundary layer are his primary areas of study. Liancun Zheng interconnects Thermal conductivity, Magnetohydrodynamics and Viscoelasticity in the investigation of issues within Mechanics. His Heat transfer research incorporates themes from Power-law fluid, Fractional calculus, Boundary value problem, Numerical analysis and Finite difference method.

His work on Exact solutions in general relativity as part of general Mathematical analysis study is frequently connected to Exponent, therefore bridging the gap between diverse disciplines of science and establishing a new relationship between them. His Boundary layer study combines topics in areas such as Flow and Prandtl number. His work in Thermodynamics tackles topics such as Nusselt number which are related to areas like Pressure drop.

Between 2017 and 2021, his most popular works were:

  • Novel numerical analysis of multi-term time fractional viscoelastic non-newtonian fluid models for simulating unsteady MHD Couette flow of a generalized Oldroyd-B fluid (30 citations)
  • A spatial-fractional thermal transport model for nanofluid in porous media (21 citations)
  • Lie-group similarity solution and analysis for fractional viscoelastic MHD fluid over a stretching sheet (15 citations)

In his most recent research, the most cited papers focused on:

  • Quantum mechanics
  • Mathematical analysis
  • Thermodynamics

Liancun Zheng mainly focuses on Heat transfer, Boundary layer, Fractional calculus, Mathematical analysis and Mechanics. His Heat transfer research includes themes of Nusselt number and Constitutive equation. The various areas that Liancun Zheng examines in his Nusselt number study include Drag, Pressure drop, Volume fraction and Thermodynamics.

The concepts of his Boundary layer study are interwoven with issues in Flow, Laminar flow, Compressibility, Prandtl number and Numerical analysis. His study in the fields of Boundary value problem, Finite difference method and Fourier transform under the domain of Mathematical analysis overlaps with other disciplines such as Anomalous diffusion. Liancun Zheng combines subjects such as Thermal conductivity and Viscoelasticity with his study of Mechanics.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

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

Shihao Han;Liancun Zheng;Chunrui Li;Xinxin Zhang.
Applied Mathematics Letters (2014)

359 Citations

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.
Applied Mathematical Modelling (2015)

344 Citations

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.
International Journal of Heat and Mass Transfer (2015)

232 Citations

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.
Journal of The Franklin Institute-engineering and Applied Mathematics (2013)

205 Citations

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.
International Journal of Heat and Mass Transfer (2014)

182 Citations

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.
International Journal of Thermal Sciences (2016)

177 Citations

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

Jize Sui;Liancun Zheng;Xinxin Zhang;Goong Chen.
International Journal of Heat and Mass Transfer (2015)

174 Citations

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

Jing Li;Liancun Zheng;Lin Liu.
Journal of Molecular Liquids (2016)

160 Citations

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.
International Journal of Heat and Mass Transfer (2016)

124 Citations

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

Jinhu Zhao;Liancun Zheng;Xinxin Zhang;Fawang Liu.
International Journal of Heat and Mass Transfer (2016)

122 Citations

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