Krishna Kant Agrawal
VIDWAN ID: 70439

Prof Krishna Kant Agrawal

Male Doctor of Philosophy
Associate Professor | Department of Mechanical Engineering
Indian Institute of Technology, Delhi
Delhi
Expertise: Mechanical Engineering
17 Publications
0 Projects
178 Scopus Citations
154 CrossRef
8 Years 4 Months Total Experience
Publications
17 Total
Articles
10
Chapters
4
Proceedings
3
Activity

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Scopus Scopus
178 Citations
5 h-index
CrossRef CrossRef
154 Citations
4 h-index
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Personal Details

Doctor of Philosophy
N/A
Associate Professor
Feb 2026 – Present
Indian Institute of Technology, Delhi | Department of Mechanical Engineering
Assistant Professor
May 2018 – Jan 2026
Indian Institute of Technology, Delhi | Department of Mechanical Engineering
Engineering and Technology
Mechanical Engineering

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Scholarly Work

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Scholarly Publications

Unsteady reacting flow study of a trapped vortex combustor

Conference Paper
Year: 2009.

On meshing guidelines for Large Eddy Simulations of gas turbine combustors

Conference Paper
Year: 2014. Volume: 4B .
Authors: Krishna Kant Agarwal; Srinivasa Rao Konakalla; Senthamil Selvan

Effect of the compressor discharge casing geometry on combustor exit temperature profiles in a multi-can gas-turbine combustor

Conference Paper
Year: 2014. Volume: 4B .
Authors: Krishna Kant Agarwal; Stefano Gori

Flow-acoustic Characterisation of a Cavity-based Combustor Configuration

Open Access
Journal Article
Defence Science Journal. Year: 2011. Volume: 61 , Issue: 6 , Pages: 523-528 .
Authors: Krishna Agarwal; R. Ravikrishna

Experimental and numerical studies in a compact trapped vortex combustor: Stability assessment and augmentation

Journal Article
Combustion Science and Technology. Year: 2011. Volume: 183 , Issue: 12 , Pages: 1308-1327 .
Authors: Krishna Kant Agarwal; R. V. Ravikrishna

Validation of a modified eddy dissipation concept model for stationary and nonstationary turbulent diffusion flames

Journal Article
Combustion Science and Technology. Year: 2012. Volume: 184 , Issue: 2 , Pages: 151-164 .
Authors: Krishna Kant Agarwal; R. V. Ravikrishna

Mixing enhancement in a compact trapped vortex combustor

Journal Article
Combustion Science and Technology. Year: 2013. Volume: 185 , Issue: 3 , Pages: 363-378 .
Authors: Krishna Kant Agarwal; S. Krishna; R. V. Ravikrishna

Numerical studies on intrinsically unstable H2/CO2 flames: Effect of CO2 dilution, equivalence ratio, temperature and pressure

Journal Article
Combustion and Flame. Year: 2025. Volume: 279 .
Authors: Mayank Pandey; Krishnakant Agrawal; Anjan Ray
Showing 1 to 8 of 17 publications