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ASHOK KANNAIYAN
ASHOK KANNAIYAN
Other namesASHOK K, K ASHOK
Verified email at vit.ac.in
Title
Cited by
Cited by
Year
Analytical solutions for the incompressible laminar pipe flow rapidly subjected to the arbitrary change in the flow rate
Ashok Kannaiyan, and Thirumaran Varathalingarajah, and Sekarapandian Natarajan
Physics of Fluids 33 (4), 043601, 2021
82021
Stability of a laminar pipe flow subjected to a step-like increase in the flow rate
A Kannaiyan, S Natarajan, BR Vinoth
Physics of Fluids 34 (6), 2022
72022
On the accuracy of RANS turbulence models to predict the influence of free-stream hot gas turbulent Intensity on flat plate film cooling
R Radhakrishnan, S Natarajan, A Kannaiyan, M Karaca, J Kandasamy
Proceedings of the 26thNational and 4th International ISHMT-ASTFE Heat and …, 2021
12021
Advanced methods to handle LSPI in TGDI engines
N Sekarapandian, A KANNAIYAN, H ARIVUKKARASU, R Mani, S Muthu
SAE International Journal of Advances and Current Practices in Mobility 3 …, 2020
12020
Carbon-Neutral Powertrains for Future Mobility and its Impact on Thermal Management
S Muthu, N Sekarapandian, A Kannaiyan
SAE Technical Paper, 2022
2022
Assessment of Future Scope of Waste Heat Recovery System for IC Engine Powertrain Vehicles of Highway and Off-Highway Applications
S Muthu, N Sekarapandian, A Kannaiyan
SAE Technical Paper, 2022
2022
Advanced Developments in Solid Desiccant Coated Heat Exchangers and their Potential Applications
S Muthu, N Sekarapandian, A KANNAIYAN, H ARIVUKKARASU
SAE Technical Paper, 2021
2021
Advanced Methods to Handle LSPI in TGDI Engines
A KANNAIYAN, H ARIVUKKARASU, R Mani, S Muthu
SAE Technical Paper 3 (2020-28-0008), 2020
2020
Velocity Dynamics of Suddenly Blocked Oscillatory Channel Flow
A Nayak, A Kannaiyan, D Das
Book of Abstracts, 7, 2014
2014
A 3-Dimensional Computational Model to Predict the Influence of Hot Mainstream Turbulent Intensity on Film Cooling Flow Field
M Karaca, S Natarajan, A Kannaiyan, J Kandasamy
Available at SSRN 4744845, 0
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