Year : 2025
Heat transfer analysis of a fully wetted inclined moving fin with temperature-dependent internal heat generation using DTM-Pade approximant and machine learning algorithms
Cite this Research Publication : J Komathi, N Magesh, K Venkadeshwaran, K Chandan, R S Varun Kumar, Amal Abdulrahman, Heat transfer analysis of a fully wetted inclined moving fin with temperature-dependent internal heat generation using DTM-Pade approximant and machine learning algorithms, Pramana, Springer Science and Business Media LLC, 2025, https://doi.org/10.1007/s12043-024-02880-6
Publisher : Springer Science and Business Media LLC
Year : 2024
A comparative analysis on the magnetohydrodynamic mixed convective flow of a hybrid nanofluid with radiative heat transfer using bagging regression
Cite this Research Publication : Poornima Samaje, A. Salma, K. Venkadeshwaran, S. V. K. Varma, B. N. Hanumagowda, Anjali Verma, K. Chandan, A comparative analysis on the magnetohydrodynamic mixed convective flow of a hybrid nanofluid with radiative heat transfer using bagging regression, International Journal of Ambient Energy, Informa UK Limited, 2024, https://doi.org/10.1080/01430750.2024.2386045
Publisher : Informa UK Limited
Year : 2024
Transient Thermal Distribution in a Wavy Fin Using Finite Difference Approximation Based Physics Informed Neural Network
Cite this Research Publication : Sara Salem Alzaid, Badr Saad T. Alkahtani, Kumar Chandan, Ravikumar Shashikala Varun Kumar, Transient Thermal Distribution in a Wavy Fin Using Finite Difference Approximation Based Physics Informed Neural Network, Computer Modeling in Engineering & Sciences, Tech Science Press, 2024, https://doi.org/10.32604/cmes.2024.055312
Publisher : Tech Science Press
Year : 2024
Implementation of stacking regressor model on the flow induced by TiO2‐H2O and Ti6Al4V‐H2O nanofluid with waste discharge concentration
Cite this Research Publication : J. K. Madhukesh, Madhu J, Mohammed Fareeduddin, Chandan K, Umair Khan, Gadah Abdulrahman Al‐Tref, Syed Modassir Hussain, K. V. Nagaraja, Raman Kumar, Implementation of stacking regressor model on the flow induced by TiO2‐H2O and Ti6Al4V‐H2O nanofluid with waste discharge concentration, ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik, Wiley, 2024, https://doi.org/10.1002/zamm.202300796
Publisher : Wiley
Year : 2024
Physics-informed neural networks approach for pollutant dispersion flow caused by magnetic dipole
Cite this Research Publication : R. J. Punith Gowda, N. Beemkumar, Ankur Kulshreshta, Jasgurpreet Singh Chohan, Amal Abdulrahman, K Chandan, Physics-informed neural networks approach for pollutant dispersion flow caused by magnetic dipole, Physica Scripta, IOP Publishing, 2024, https://doi.org/10.1088/1402-4896/ad8cab
Publisher : IOP Publishing
Year : 2024
Predictive modeling through physics‐informed neural networks for analyzing the thermal distribution in the partially wetted wavy fin
Cite this Research Publication : Kalachar Karthik, Ganeshappa Sowmya, Naman Sharma, Chandan Kumar, Varun Kumar Ravikumar Shashikala, Siddesh Alur Shivaprakash, Taseer Muhammad, Harjot Singh Gill, Predictive modeling through physics‐informed neural networks for analyzing the thermal distribution in the partially wetted wavy fin, ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik, Wiley, 2024, https://doi.org/10.1002/zamm.202400180
Publisher : Wiley
Year : 2024
A physics‐informed machine learning prediction for thermal analysis in a convective‐radiative concave fin with periodic boundary conditions
Cite this Research Publication : Chandan Kumar, Pudhari Srilatha, Kalachar Karthik, Channaiah Somashekar, Kallur Venkat Nagaraja, Ravikumar Shashikala Varun Kumar, Nehad Ali Shah, A physics‐informed machine learning prediction for thermal analysis in a convective‐radiative concave fin with periodic boundary conditions, ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik, Wiley, 2024, https://doi.org/10.1002/zamm.202300712
Publisher : Wiley
Year : 2024
Thermal performance of wetted concave fin of functionally graded material: An application of Laguerre-based collocation approach
Cite this Research Publication : Chandan K, Pudhari Srilatha, Karthik K, R.S. Varun Kumar, Metib Alghamdi, Taseer Muhammad, Raman Kumar, Thermal performance of wetted concave fin of functionally graded material: An application of Laguerre-based collocation approach, Numerical Heat Transfer, Part B: Fundamentals, Informa UK Limited, 2024, https://doi.org/10.1080/10407790.2024.2333019
Publisher : Informa UK Limited
Year : 2024
Three-dimensional transient multilayer heat conduction sphere comprising metallic particles
Cite this Research Publication : Saima Riasat, Muhammad Ramzan, Saad Alshahrani, R S Varun Kumar, Chandan K, Three-dimensional transient multilayer heat conduction sphere comprising metallic particles, Physica Scripta, IOP Publishing, 2024, https://doi.org/10.1088/1402-4896/ad564b
Publisher : IOP Publishing
Year : 2024
The nanoparticles aggregation aspects on the chemically reactive unsteady flow of alumina-water based nanofluid: A Keller box approach with applications of wavelet physics inspired neural networks
Cite this Research Publication : Sumanta Shagolshem, Chandan K, Malatesh Akkur, Bharti Kumari, Chander Prakash, T.V. Smitha, Naveen Kumar R, The nanoparticles aggregation aspects on the chemically reactive unsteady flow of alumina-water based nanofluid: A Keller box approach with applications of wavelet physics inspired neural networks, Partial Differential Equations in Applied Mathematics, Elsevier BV, 2024, https://doi.org/10.1016/j.padiff.2024.100931
Publisher : Elsevier BV
Year : 2024
Advanced deep learning approach with physics-informed neural networks for analysing the thermal variation through a radial fin applicable in heat exchangers
Cite this Research Publication : Chandan, K., RS Varun Kumar, Naman Sharma, K. Karthik, K. V. Nagaraja, Taseer Muhammad, and Jasgurpreet Singh Chohan. "Advanced deep learning approach with physics-informed neural networks for analysing the thermal variation through a radial fin applicable in heat exchangers." Pramana 98, no. 3 (2024): 123.Impact Factor:2.8
Publisher : Springer India
Year : 2024
Radiative heat transfer analysis of a concave porous fin under the local thermal non-equilibrium condition: application of the clique polynomial method and physics-informed neural networks
Cite this Research Publication : Chandan, K., K. Karthik, K. V. Nagaraja, B. C. Prasannakumara, R. S. Varun Kumar, and T. Muhammad. "Radiative heat transfer analysis of a concave porous fin under the local thermal non-equilibrium condition: application of the clique polynomial method and physics-informed neural networks." Applied Mathematics and Mechanics 45, no. 9 (2024): 1613-1632.Impact Factor: 4.5
Publisher : Applied Mathematics and Mechanics
Year : 2024
Physics-informed Hermite neural networks for wetted porous fin under the local thermal non-equilibrium condition: application of clique polynomial method
Cite this Research Publication : Chandan, K., K. Karthik, K. V. Nagaraja, Naman Sharma, RS Varun Kumar, and Taseer Muhammad. "Physics-informed Hermite neural networks for wetted porous fin under the local thermal non-equilibrium condition: application of clique polynomial method." The European Physical Journal Special Topics (2024): 1-21.Impact Factor: 2.6
Publisher : The European Physical Journal Special Topics
Year : 2024
Lie symmetry analysis on heat and mass transport aspects of rate type fluid flow with waste discharge concentration: Keller Box approach
Cite this Research Publication : Nagaraja, K. V., SumantaShagolshem, BhaveshKanabar, Ankit Kedia, AmalAbdulrahman, Chander Prakash, M. Umeshaiah, and K. Chandan. "Lie symmetry analysis on heat and mass transport aspects of rate type fluid flow with waste discharge concentration: Keller Box approach." Scientific Reports 14, no. 1 (2024): 28803.Impact Factor: 3.8
Publisher : Scientific Reports
Year : 2024
Optimized physics-informed neural network for analyzing the radiative-convective thermal performance of an inclined wavy porous fin
Cite this Research Publication : Chandan, K., PudhariSrilatha, K. Karthik, M. E. Raghunandan, K. V. Nagaraja, E. A. Gopalakrishnan, RS Varun Kumar, and FehmiGamaoun. "Optimized physics-informed neural network for analyzing the radiative-convective thermal performance of an inclined wavy porous fin." Case Studies in Thermal Engineering 64 (2024):Impact Factor: 6.4
Publisher : Case Studies in Thermal Engineering
Year : 2024
Stacking regression model approach to mixed convection flow of ternary- nanofluid over slanted surface with magnetic field, waste discharge concentration, and joule heating effects
Cite this Research Publication : Vinutha, K., Srilatha, P., Chandan, K., Sriram, D., Madhukesh, J. K., Nagaraja, K. V., & Varshney, G Stacking regression model approach to mixed convection flow of ternary- nanofluid over slanted surface with magnetic field, waste discharge concentration, and joule heating effects. International Journal of Thermofluids, 2024, 100731. Q1
Year : 2024
Improving flow efficiency in micro and mini-channels with offset strip fins: A stacking ensemble technique for Accurate friction factor prediction in steady periodically developed flow
Cite this Research Publication : Chandan, K., Nagaraja, K. V., Gamaoun, F., Smitha, T. V., Neelima, N., Khan, U., & Hassan, A. M. Improving flow efficiency in micro and mini-channels with offset strip fins: A stacking ensemble technique for Accurate friction factor prediction in steady periodically developed flow. Case Studies in Thermal Engineering, 2024, 56, 104232. Impact Factor 6.8 – Q1
Publisher : Elsevier
Year : 2024
Analyzing magnetic dipole impact in fluid flow with endothermic/exothermic reactions: neural network simulation
Cite this Research Publication : RS, V. K., Chandan, K., Sharma, N., Karthik, K., Kumar, N., Gowda, R. P., ... & Gill, H. S. Analyzing magnetic dipole impact in fluid flow with endothermic/exothermic reactions: neural network simulation. Physica Scripta, 2024, 99(6), 065215. Impact Factor 2.9 – Q2
Year : 2024
Predicting the thermal distribution in a convective wavy fin using a novel training physics-informed neural network method
Cite this Research Publication : Chandan, K., Saadeh, R., Qazza, A., Karthik, K., Varun Kumar, R. S., Kumar, R. N., ... & Kumar, R. Predicting the thermal distribution in a convective wavy fin using a novel training physics-informed neural network method. Scientific Reports, 2024, 14(1), 7045. Impact Factor 4.996- Q1
Year : 2023
Evolutionary Computing for the Radiative–Convective Heat Transfer of a Wetted Wavy Fin Using a Genetic Algorithm-Based Neural Network
Cite this Research Publication : B. S. Poornima, Ioannis E. Sarris, K. Chandan, K.V. Nagaraja, R. S. Varun Kumar, Samia Ben Ahmed, Evolutionary Computing for the Radiative–Convective Heat Transfer of a Wetted Wavy Fin Using a Genetic Algorithm-Based Neural Network, Biomimetics, MDPI AG, 2023, https://doi.org/10.3390/biomimetics8080574
Publisher : MDPI AG
Year : 2023
Analysis of Heat Transfer Behavior of Porous Wavy Fin with Radiation and Convection by Using a Machine Learning Technique
Cite this Research Publication : Chandan Kumar, P. Nimmy, Kallur Venkat Nagaraja, R. S. Varun Kumar, Amit Verma, Shalan Alkarni, Nehad Ali Shah, Analysis of Heat Transfer Behavior of Porous Wavy Fin with Radiation and Convection by Using a Machine Learning Technique, Symmetry, MDPI AG, 2023, https://doi.org/10.3390/sym15081601
Publisher : MDPI AG
Year : 2023
Investigation of the thermal analysis of a wavy fin with radiation impact: an application of extreme learning machine
Cite this Research Publication : S Bhanu Prakash, K Chandan, K Karthik, Sriram Devanathan, R S Varun Kumar, K V Nagaraja and B C Prasannakumara,Investigation of the thermal analysis of a wavy fin with radiation impact: an application of extreme learning machine. 99(1), 015225. Impact Factor 2.9 – Q2, 2023
Year : 2023
A Model Development for Thermal and Solutal Transport Analysis of Non-Newtonian Nanofluid Flow over a Riga Surface Driven by a Waste Discharge Concentration
Cite this Research Publication : J.K. Madhukesh, V. Kalleshachar, C. Kumar, U. Khan, K.V. Nagaraja, I.E. Sarris, E.-S.M. Sherif, A.M. Hassan, J.S. Chohan, A Model Development for Thermal and Solutal Transport Analysis of Non-Newtonian Nanofluid Flow over a Riga Surface Driven by a Waste Discharge Concentration, Water. 15 (2023) 2879. [MDPI], Impact Factor:3.4, Journal quartile: Q1
Publisher : Water
Year : 2022
Heat Conduction with Krylov Subspace Method Using FEniCSx
Cite this Research Publication : Kumar V, Chandan K, Nagaraja KV, Reddy MV. Heat Conduction with Krylov Subspace Method Using FEniCSx. Energies. 2022 Oct 31;15(21):8077. IF: 3.3
Publisher : Energies