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
Engineering and Technology D-index 32 Citations 4,474 108 World Ranking 5129 National Ranking 63

Overview

What is he best known for?

The fields of study he is best known for:

  • Mechanics
  • Fluid dynamics
  • Thermodynamics

His main research concerns Mechanics, Bubble, Geometry, Mathematical analysis and Finite difference. Many of his research projects under Mechanics are closely connected to Ghost fluid with Ghost fluid, tying the diverse disciplines of science together. His Bubble research integrates issues from Velocity potential, Impulse, Free surface and Buoyancy.

The study incorporates disciplines such as Jet and Vortex ring in addition to Geometry. His Mathematical analysis research incorporates themes from Natural convection and Pressure-correction method. Khoon Seng Yeo works mostly in the field of Finite difference, limiting it down to topics relating to Finite difference method and, in certain cases, Reynolds number, Basis function, Partial differential equation, Streamlines, streaklines, and pathlines and Lift, as a part of the same area of interest.

His most cited work include:

  • Local radial basis function-based differential quadrature method and its application to solve two-dimensional incompressible Navier–Stokes equations (359 citations)
  • Ghost fluid method for strong shock impacting on material interface (223 citations)
  • Nonlinear interaction between gas bubble and free surface (163 citations)

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

Khoon Seng Yeo spends much of his time researching Mechanics, Classical mechanics, Geometry, Reynolds number and Mathematical analysis. Khoon Seng Yeo combines subjects such as Direct numerical simulation and Vorticity with his study of Classical mechanics. His research integrates issues of Finite element method and Bubble in his study of Geometry.

Khoon Seng Yeo usually deals with Reynolds number and limits it to topics linked to Flow and Buoyancy. His research in Mathematical analysis tackles topics such as Navier–Stokes equations which are related to areas like Applied mathematics. His Finite difference research includes themes of Cartesian coordinate system and Finite difference method.

He most often published in these fields:

  • Mechanics (57.36%)
  • Classical mechanics (20.93%)
  • Geometry (18.60%)

What were the highlights of his more recent work (between 2012-2020)?

  • Flapping (13.18%)
  • Wing (10.85%)
  • Mechanics (57.36%)

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

Khoon Seng Yeo focuses on Flapping, Wing, Mechanics, Kinematics and Thrust. His Flapping research includes elements of Acoustics, Lift coefficient and Simple harmonic motion. The Wing study combines topics in areas such as Aerodynamic force, Aerodynamics, Leading edge, Wing twist and Wake.

His research investigates the connection between Leading edge and topics such as Classical mechanics that intersect with problems in Nonlinear system. Mechanics is frequently linked to Lift in his study. Within one scientific family, Khoon Seng Yeo focuses on topics pertaining to Control theory under Kinematics, and may sometimes address concerns connected to Body roll, Boundary layer, Bandwidth and Turbulence.

Between 2012 and 2020, his most popular works were:

  • Scaling of Aerodynamic Forces of Three-Dimensional Flapping Wings (47 citations)
  • A quasi-steady aerodynamic model for flapping flight with improved adaptability. (38 citations)
  • Aerodynamics of two-dimensional flapping wings in tandem configuration (29 citations)

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

  • Mechanics
  • Fluid dynamics
  • Thermodynamics

The scientist’s investigation covers issues in Reynolds number, Flapping, Mechanics, Wing and Aerodynamics. His study looks at the relationship between Reynolds number and topics such as Rotation, which overlap with Flow. His research investigates the connection between Flapping and topics such as Aerodynamic force that intersect with issues in Thrust.

His Mechanics research focuses on Vortex in particular. In Wing, he works on issues like Wing twist, which are connected to Structural engineering, Deflection, Stiffness and Wing configuration. Khoon Seng Yeo interconnects Kinematics and Control theory in the investigation of issues within Aerodynamics.

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

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.
Computer Methods in Applied Mechanics and Engineering (2003)

547 Citations

Ghost fluid method for strong shock impacting on material interface

T. G. Liu;B. C. Khoo;K. S. Yeo.
Journal of Computational Physics (2003)

394 Citations

Nonlinear interaction between gas bubble and free surface

Qian Wang;KS Yeo;BC Khoo;KY Lam.
Computers & Fluids (1996)

257 Citations

3D Impact and Toroidal Bubbles

Y. L. Zhang;K. S. Yeo;B. C. Khoo;C. Wang.
Journal of Computational Physics (2001)

238 Citations

Strong Interaction Between a Buoyancy Bubble and a Free Surface

Q. X. Wang;K. S. Yeo;B. C. Khoo;K. Y. Lam.
Theoretical and Computational Fluid Dynamics (1996)

199 Citations

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.
Computer Methods in Applied Mechanics and Engineering (2004)

191 Citations

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.
International Journal for Numerical Methods in Fluids (2007)

165 Citations

Instability of Taylor-Couette flow between concentric rotating cylinders

Hua-Shu Dou;Boo Cheong Khoo;Khoon Seng Yeo.
International Journal of Thermal Sciences (2008)

141 Citations

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.
Computers & Fluids (2004)

118 Citations

Elastic mesh technique for 3D BIM simulation with an application to underwater explosion bubble dynamics

C. Wang;B.C. Khoo;B.C. Khoo;K.S. Yeo.
Computers & Fluids (2003)

107 Citations

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