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Rising Stars
2025

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Rising Stars

D-Index
38
Citations
4158
World Ranking
734
National Ranking
1

Engineering and Technology

D-Index
43
Citations
5564
World Ranking
6319
National Ranking
23

Research.com Recognitions

  • 2025 - Research.com Rising Stars Award

Overview

Krishanu Roy is affiliated with the University of Waikato in New Zealand and specializes in engineering research with a focus on civil and structural engineering. Their work intersects several subfields, including civil and structural engineering, building and construction, mechanics of materials, mechanical engineering, and environmental engineering.

Roy's research topics are centered on structural load-bearing analysis and encompass areas such as the structural behavior of reinforced concrete, mechanical stress and fatigue analysis, fire effects on concrete materials, structural engineering and vibration analysis, materials analysis related to structural engineering, and innovative concrete reinforcement materials.

Their recent published papers include:

  • Flexural capacity of gapped built-up cold-formed steel channel sections including web stiffeners, 2020, Journal of Constructional Steel Research
  • Deep learning-based procedure for structural design of cold-formed steel channel sections with edge-stiffened and un-stiffened holes under axial compression, 2021, Thin-Walled Structures
  • Deep learning-based axial capacity prediction for cold-formed steel channel sections using Deep Belief Network, 2021, Structures

Frequent co-authors in Roy's research include:

  • James B.P. Lim
  • Zhiyuan Fang
  • Boshan Chen
  • G. Beulah Gnana Ananthi
  • Ran Feng

The venues where Roy most often publishes reflect their specialization and include:

  • Thin-Walled Structures
  • Structures
  • Buildings
  • Engineering Structures
  • Journal of Building Engineering

Roy's body of work contributes largely to the understanding of structural behaviors and material properties within engineering disciplines. Their investigation into cold-formed steel channel sections, especially under different loading and compression conditions, aligns with broader themes of structural capacity and durability.

The scope of Roy's research supports fields that address the practical and theoretical considerations of building and construction materials and methodologies, contributing data and analysis relevant to engineering structures and civil infrastructures.

Best Publications

  • Experimental and numerical investigation into the behaviour of face-to-face built-up cold-formed steel channel sections under compression

    Krishanu Roy;Chia Mohammadjani;James B.P. Lim

  • Experimental and numerical investigations on the axial capacity of cold-formed steel built-up box sections

    Krishanu Roy;Tina Chui Huon Ting;Hieng Ho Lau;James B.P. Lim

  • Nonlinear behaviour of back-to-back gapped built-up cold-formed steel channel sections under compression

    Krishanu Roy;Tina Chui Huon Ting;Hieng Ho Lau;James B.P. Lim

  • Effect of thickness on the behaviour of axially loaded back-to-back cold-formed steel built-up channel sections - Experimental and numerical investigation

    Krishanu Roy;Tina Chui Huon Ting;Hieng Ho Lau;James B.P. Lim

  • Effect of screw spacing on behavior of axially loaded back-to-back cold-formed steel built-up channel sections:

    Tina Chui Huon Ting;Krishanu Roy;Hieng Ho Lau;James Bp Lim

  • Deep learning-based procedure for structural design of cold-formed steel channel sections with edge-stiffened and un-stiffened holes under axial compression

    Zhiyuan Fang;Krishanu Roy;Boshan Chen;Chiu-Wing Sham

  • Nonlinear behavior of axially loaded back-to-back built-up cold-formed steel un-lipped channel sections

    Krishanu Roy;Tina Chui Huon Ting;Hieng Ho Lau;James B.P. Lim

  • Deep learning-based axial capacity prediction for cold-formed steel channel sections using Deep Belief Network

    Zhiyuan Fang;Krishanu Roy;Jiri Mares;Chiu-Wing Sham

  • Collapse behaviour of a fire engineering designed single-storey cold- formed steel building in severe fires

    Krishanu Roy;James B.P. Lim;Hieng Ho Lau;P.M. Yong

  • Effects of edge-stiffened web openings on the behaviour of cold-formed steel channel sections under compression

    Boshan Chen;Krishanu Roy;Asraf Uzzaman;Gary M. Raftery

  • Experiments and finite element modelling of screw pattern of self-drilling screw connections for high strength cold-formed steel

    Krishanu Roy;Hieng Ho Lau;Tina Chui Huon Ting;Rehan Masood;Rehan Masood

  • Flexural capacity of gapped built-up cold-formed steel channel sections including web stiffeners

    Krishanu Roy;Hieng Ho Lau;Tina Chui Huon Ting;Boshan Chen

  • Axial strength of back-to-back cold-formed steel channels with edge-stiffened holes, un-stiffened holes and plain webs

    Boshan Chen;Krishanu Roy;Asraf Uzzaman;Gary Raftery

  • A novel machine learning model to predict the moment capacity of cold-formed steel channel beams with edge-stiffened and un-stiffened web holes

    Unknown

  • Moment capacity of cold-formed channel beams with edge-stiffened web holes, un-stiffened web holes and plain webs

    Boshan Chen;Krishanu Roy;Asraf Uzzaman;James B.P. Lim

  • Web crippling capacity of fastened cold-formed steel channels with edge-stiffened web holes, un-stiffened web holes and plain webs under two-flange loading

    Boshan Chen;Krishanu Roy;Zhiyuan Fang;Asraf Uzzaman

  • Parametric study and simplified design equations for cold-formed steel channels with edge-stiffened holes under axial compression

    Boshan Chen;Krishanu Roy;Asraf Uzzaman;Gary M. Raftery

  • Web crippling behaviour of cold-formed steel channel sections with edge-stiffened and unstiffened circular holes under interior-two-flange loading condition

    Asraf Uzzaman;James B.P. Lim;David Nash;Krishanu Roy

  • Flexural behaviour of back-to-back built-up cold-formed steel channel beams: Experiments and finite element modelling

    Krishanu Roy;Hieng Ho Lau;Tina Chui Huon Ting;Boshan Chen

  • Cold-formed steel channel sections under end-two-flange loading condition: Design for edge-stiffened holes, unstiffened holes and plain webs

    Asraf Uzzaman;James B.P. Lim;David Nash;Krishanu Roy

  • Moment capacity of back-to-back cold-formed steel channels with edge-stiffened holes, un-stiffened holes, and plain webs

    Boshan Chen;Krishanu Roy;Zhiyuan Fang;Asraf Uzzaman

  • Application of deep learning method in web crippling strength prediction of cold-formed stainless steel channel sections under end-two-flange loading

    Zhiyuan Fang;Krishanu Roy;Quincy Ma;Asraf Uzzaman

Frequent Co-Authors

James B.P. Lim
James B.P. Lim University of Waikato
Jason Ingham
Jason Ingham University of Auckland
Iman Hajirasouliha
Iman Hajirasouliha University of Sheffield
Mahen Mahendran
Mahen Mahendran Queensland University of Technology
Jian Fei Chen
Jian Fei Chen Southern University of Science and Technology
Raj Das
Raj Das RMIT University

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