World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
51
Citations
8614
World Ranking
3921
National Ranking
263

Overview

J.R. Banerjee is affiliated with City, University of London in the United Kingdom. Their research primarily focuses on engineering, with particular emphasis on civil and structural engineering, mechanics of materials, and control and systems engineering.

The scientist's work encompasses a range of specialized topics including:

  • Composite Structure Analysis and Optimization
  • Vibration and Dynamic Analysis
  • Structural Health Monitoring Techniques
  • Structural Load-Bearing Analysis
  • Dynamics and Control of Mechanical Systems
  • Structural Engineering and Vibration Analysis
  • Structural Analysis and Optimization

Recent papers authored or co-authored by J.R. Banerjee include:

  • "An exact dynamic stiffness method for multibody systems consisting of beams and rigid-bodies," 2020, Mechanical Systems and Signal Processing
  • "Closed-form dynamic stiffness formulation for exact modal analysis of tapered and functionally graded beams and their assemblies," 2021, International Journal of Mechanical Sciences
  • "Free vibration of sigmoid functionally graded plates using the dynamic stiffness method and the Wittrick-Williams algorithm," 2020, Computers & Structures
  • "Spectral dynamic stiffness theory for free vibration analysis of plate structures stiffened by beams with arbitrary cross-sections," 2021, Thin-Walled Structures
  • "Dynamic stiffness method for exact longitudinal free vibration of rods and trusses using simple and advanced theories," 2021, Applied Mathematical Modelling

J.R. Banerjee frequently publishes in several scientific journals and conferences. Notable venues where their work appears include:

  • Computers & Structures
  • Mechanical Systems and Signal Processing
  • Civil-comp conferences
  • Thin-Walled Structures
  • European Journal of Mechanics - A/Solids

The scientist often collaborates with other researchers such as S. О. Papkov, Xiang Liu, Han-Cheng Dan, Le Chang, and Isaac Elishakoff. These co-authors have contributed to multiple joint publications with J.R. Banerjee, reflecting ongoing collaborative efforts in related research areas.

Best Publications

  • Polymer/montmorillonite nanocomposites with improved thermal properties Part I. Factors influencing thermal stability and mechanisms of thermal stability improvement

    Agneska Leszczynska;James A. K. Njuguna;Krzysztof Pielichowski;J. R. Banerjee

  • Polymer/montmorillonite nanocomposites with improved thermal properties: Part II. Thermal stability of montmorillonite nanocomposites based on different polymeric matrixes

    Agneska Leszczynska;James A. K. Njuguna;Krzysztof Pielichowski;J. R. Banerjee

  • Dynamic stiffness formulation for structural elements: A general approach

    J.R. Banerjee

  • FREE VIBRATION OF CENTRIFUGALLY STIFFENED UNIFORM AND TAPERED BEAMS USING THE DYNAMIC STIFFNESS METHOD

    J.R. Banerjee

  • Free vibration of rotating tapered beams using the dynamic stiffness method

    J.R. Banerjee;H. Su;D.R. Jackson

  • Coupled bending–torsional dynamic stiffness matrix for beam elements

    J. R. Banerjee

  • Exact Bernoulli–Euler dynamic stiffness matrix for a range of tapered beams

    J. R. Banerjee;F. W. Williams

  • Free vibration of sandwich beams using the dynamic stiffness method

    J.R. Banerjee

  • Development of dynamic stiffness method for free vibration of functionally graded Timoshenko beams

    H. Su;J.R. Banerjee

  • Coupled bending-torsional dynamic stiffness matrix for timoshenko beam elements

    J.R. Banerjee;F.W. Williams

  • Free vibration of axially loaded composite Timoshenko beams using the dynamic stiffness matrix method

    J.R. Banerjee

  • Dynamic stiffness formulation and free vibration analysis of centrifugally stiffened timoshenko beams

    J.R. Banerjee

  • Exact dynamic stiffness matrix of a bending-torsion coupled beam including warping

    J.R. Banerjee;S. Guo;W.P. Howson

  • Development of an exact dynamic stiffness matrix for free vibration analysis of a twisted Timoshenko beam

    J.R. Banerjee

  • Free vibration of a three-layered sandwich beam using the dynamic stiffness method and experiment

    J. R. Banerjee;C. W. Cheung;R. Morishima;M. Perera

  • Coupled bending-torsional dynamic stiffness matrix of an axially loaded Timoshenko beam element

    J.R. Banerjee;F.W. Williams

  • Exact dynamic stiffness elements based on one-dimensional higher-order theories for free vibration analysis of solid and thin-walled structures

    Alfonso Pagani;M. Boscolo;J. R. Banerjee;Erasmo Carrera;Erasmo Carrera

  • Dynamic stiffness formulation and free vibration analysis of functionally graded beams

    H. Su;J.R. Banerjee;C.W. Cheung

  • Free vibration of composite beams - An exact method using symbolic computation

    J. R. Banerjee;F. W. Williams

  • Free vibration analysis for plates with arbitrary boundary conditions using a novel spectral-dynamic stiffness method

    X. Liu;J.R. Banerjee

  • Exact Bernoulli‐Euler static stiffness matrix for a range of tapered beam‐columns

    J. R. Banerjee;F. W. Williams

Frequent Co-Authors

Erasmo Carrera
Erasmo Carrera Polytechnic University of Turin
Alfonso Pagani
Alfonso Pagani Polytechnic University of Turin
P.K. Sinha
P.K. Sinha Indian Institute of Technology Kharagpur

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