Dr. Vishal
Assistant Professor- Basic & Applied Sciences
Dr. Vishal completed both his graduation and post-graduation from I.B. (PG) College, Panipat, affiliated with Kurukshetra University, Kurukshetra. He holds a Ph.D. in Applied Mathematics from Pandit Deendayal Energy University, Gandhinagar, Gujarat, awarded for his research titled “Boundary Element and Allied Methods for Viscous Flow Problems.” His research interests focus on the mathematical modelling and simulation of hydrodynamical systems, particularly those dealing with microchannel flows. He has published several Web of Science-indexed research papers in reputed international journals. He has expertise in MS Office, LaTeX, and MATLAB. He qualified the CSIR UGC NET (LS) in Mathematical Sciences in the year 2020 with an All-India rank of 72. He also qualified GATE in Mathematics (MA) in the year 2021 with an All-India rank of 1552. He joined K. R. Mangalam University as an Assistant Professor in the Department of Mathematics, School of Basic and Applied Sciences on 5th May 2025.
- Doctor of Philosophy (Ph.D.), Applied Mathematics with Thesis title: Boundary Element and Allied Methods for Viscous Flow Problems, Year of Award: 2025; Pandit Deendayal Energy University, Gandhinagar, Gujarat, India.
- Bachelor of Education (B.Ed.), Mathematics, Year of passing: 2021; Deenbandhu Chhotu Ram University of Science & Technology, Murthal (Sonepat), India (secured 7.90 CGPA).
- Master of Science (M.Sc.), Pure Mathematics, Year of passing: 2017; I.B. (PG) College, Panipat; Kurukshetra University, Kurukshetra, India (secured 64.66%).
- Bachelor of Science (B.Sc.), Mathematics, Year of passing: 2015; I.B. (PG) College, Panipat; Kurukshetra University, Kurukshetra, India (secured 73.14%).
- October 2021- March 2025, Teaching Assistant, Pandit Deendayal Energy University, Gandhinagar, Gujarat, India.
- Punit Jain, Vishal Chhabra, Chandra Shekhar Nishad, Ankur Singh, and Amit Kumar (2025). Suspended Sediment concentration profiles using conservation law: A mixing length approach. International Journal of Chemical Reactor Engineering, (SCIE, Q3, I.F. 1.4).
- Vishal Chhabra, Chandra Shekhar Nishad, K.G. Vijay, and Manoj Sahni (2025). -MHD Brinkman Flow Around Circular Cylinders Inside a Microchannel Exhibiting Wall Roughness. Canadian Journal of Chemical Engineering, (SCIE, Q3, I.F. 1.9). (Accepted, In Press).
- Vishal Chhabra, Chandra Shekhar Nishad, Manoj Sahni, and Vineet Kumar Chaurasiya (2025). Boundary element analysis for MHD Brinkman flow around circular cylinders inside a microchannel exhibiting wall roughness, Engineering Analysis with Boundary Elements, 169, 105925, (SCIE, Q1, I.F. 4.1).
- Vishal Chhabra, Chandra Shekhar Nishad, K.G. Vijay, and Manoj Sahni (2025). Stokes flow past circular cylinders in an out‐phase slip patterned microchannel using boundary element method, ZAMM – Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik, 105(2), e202400685, (SCIE, Q1, I.F. 3.2).
- Vishal Chhabra, Chandra Shekhar Nishad, and Manoj Sahni (2024). Effect of Inclined Magnetic Field on Stokes Flow Through In-Phase Slip-Patterned Microchannel Using Boundary Element Method, 2024 International Conference on Modeling, Simulation & Intelligent Computing (MoSICom), IEEE Xplore, 51-56, (Conference Proceeding, Scopus).
- Vishal Chhabra, Chandra Shekhar Nishad, and Manoj Sahni (2024). Boundary Element Method for Viscous Flow through Out-phase Slip-patterned Microchannel under the Influence of Inclined Magnetic Field. Chemical Product and Process Modeling, 19(5), 825-846, (ESCI, Q3, I.F. 1.3).
- Vishal Chhabra, Chandra Shekhar Nishad, K.G. Vijay, and Manoj Sahni (2024). Stokes flow past an array of circular cylinders through slip-patterned microchannel using boundary element method. Engineering Analysis with Boundary Elements, 169, 105925, (SCIE, Q1, I.F. 4.2).
- Vishal Chhabra, Chandra Shekhar Nishad, Manoj Sahni, and Vineet Kumar Chaurasiya (2024). Effect of magnetic field and hydrodynamic slippage on electro-osmotic Brinkman flow through patterned zeta potential microchannel. Journal of Engineering Mathematics, 148(1), (SCIE, Q2, I.F. 1.4).
- Vishal Chhabra, Chandra Shekhar Nishad, and Manoj Sahni (2024). Effect of magnetic field on viscous flow through porous wavy channel using boundary element method. ZAMM-Journal of Applied Mathematics and Mechanics/ Zeitschrift für Angewandte Mathematik und Mechanik, 104(6), (SCIE, Q1, I.F. 3.2).
- Vishal Chhabra, Chandra Shekhar Nishad, and Manoj Sahni (2023). Effect of Magnetic Field on Viscous Flow through Composite Porous Channel using Boundary Element Method. Journal of Applied and Computational Mechanics, 9(4), 1016-1035, (ESCI, Q2, I.F. 3.4).
- Vishal Chhabra, Chandra Shekhar Nishad, and Manoj Sahni (2024). Effect of Magnetic Field on Stokes Flow Through In-Phase Slip- Patterned Microchannel Using Boundary Element Method, IEEE International Conference on Modelling, Simulation and Intelligent Computing (MoSICom 2024), BITS Pilani, Dubai Campus, Dubai, UAE.
- Vishal Chhabra, Chandra Shekhar Nishad, K.G. Vijay and Manoj Sahni (2024). Stokes Flow through an array of Circular Cylinder in Out-phase Slip patterned Microchannel Using Boundary Element Method” at the International Conference on Recent Advances in Applied Mathematics (RAAM 2024), Indian Institute of Technology, (BHU) Varanasi, India.
- Vishal Chhabra, Chandra Shekhar Nishad, and Manoj Sahni (2024). Stokes Flow through Staggered Circular Cylinder in Slip-patterned Microchannel Using Boundary Element Method, National Conference on Differential Equations: Theory, Method, and Applications (NCDE), Indian Institute of Technology, Patna, India.
- Qualified CSIR-UGC NET (Lectureship) in Mathematical Sciences in November 2020 with an All India Rank (AIR) of 72.
- Qualified GATE 2021 in Mathematics (MA) in March 2021 with an All India Rank (AIR) of 1552.
- Vishal Chhabra, Chandra Shekhar Nishad, Manoj Sahni (2025). Boundary Element Analysis for MHD Stokes Flow through a Microchannel Exhibiting Surface Roughness in the book Mathematical Solutions for Complex Engineering Systems published by River Publishers (SCOPUS, In Press).
