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Prof. Srinivas Jangili

Assistant Professor Gr-I

Department of Mathematics

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Room No: MA814 (First Floor, Old Chem. Engg. Building) +91-870-2462818 jsrinivas@nitw.ac.in Bio Sketch

    Key Notes

    • Journal(s): 35
    • Conference(s): 2
    • Book Chapter(s): 1
    • PhD: Current - 2  Awarded - 2

    38

    PUBLICATIONS

    4

    DOCTORAL STUDENTS

    2

    PROJECTS

    Research Areas

    Analytical and Semi-analytical Methods
    Dispersion Phenomena
    Electroosmotic flows
    Heat Transfer Analysis
    Microfluidics
    Nanofluidics
    EDUCATION QUALIFICATION
    Degree Institute Year
    Doctor of Philosophy NIT Warangal 2015
    COURSES HANDLED
    Course L-T-P Credit Degree Level
    Database Management Systems(MA27001) 4-0-0 4 PG
    Linear Programming(MAB303) 3-1-0 4 UG
    Linear Algebra, Calculus and Differential Equations(MA137) 3-0-0 3 UG
    Differential Equations and Transforms(MA181) 3-0-0 3 UG
    Integral and Vector Calculus, Laplace Transforms(MA1162) 3-0-0 3 UG
    Data Base Management Systems(MA5203) 3-0-0 3 PG
    Numerical and Statistical Methods(MA231) 3-0-0 3 UG
    Linear Algebra, Calculus and Ordinary Differential Equations(MA1161) 3-0-0 3 UG
    Database Management Systems(MA265) 3-0-0 3 UG
    Mathematical Foundations of Computer Science(MA26022) 3-0-0 3 PG
    Differential and Integral Calculus(MAB101) 3-1-0 4 UG
    Integral Calculus and Numerical Methods(MA183) 3-0-0 3 UG
    Numerical Analysis(MA4106) 3-0-0 3 PG
    Matrix Theory, Calculus and Ordinary Differential Equations(MA134) 3-0-0 3 UG
    Graph theory(MA4261) 3-0-0 3 PG
    Mathematical Foundations of Computer Science(MA4201) 3-0-0 3 PG
    Database Management Systems(CE5512) 3-0-0 3 PG
    Fourier Series, Matrices and Differential Equations(MA182) 3-0-0 3 UG
    RESEARCH IDs
    ORCID
    ORC ID
    ISI Researcher ID
    ISI Researcher ID
    Scopus
    SCOPUS ID
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    PUBLICATIONS
    Journal(s)
    Multi-scale analysis of solute dispersion in a rotating electro-osmotic flow between two plates, By A Aruna, Swarup Barik, Srinivas Jangili, Elsevier, Chinese Journal of Physics , vol.98, pp.1165-1192, 2025
    Time-periodic electroosmotic flow of non-Newtonian fluid through a polyelectrolyte-grafted circular microchannel, By Brijesh Kumar, Srinivas Jangili, American Institute of Physics (AIP), Physics of Fluids, vol.37 (3), pp.032043, 2025
    Dispersion characteristics of electroosmotic flow of micropolar fluid in a microchannel with homogeneous and inhomogeneous reactions, By Duryodhan Subudhi, Srinivas Jangili, Swarup Barik, American Institute of Physics (AIP), Physics of Fluids, vol.37, pp.113110, 2025
    Rotational flow dynamics of electroosmotic transport of couple stress fluid in a microfluidic channel under electromagnetohydrodynamic and slip-dependent zeta potential effects, By Thota Siva, Devashish Dubey, Srinivas Jangili, American Institute of Physics (AIP), Physics of Fluids, vol.36, pp.092006, 2024
    Unsteady solute dispersion of electro-osmotic flow of micropolar fluid in a rectangular microchannel, By Duryodhan Subudhi, Srinivas Jangili, Swarup Barik, American Institute of Physics (AIP), Physics of Fluids, vol.36, pp. 073114 , 2024
    Investigation of heat transfer and electrokinetic energy conversion efficiency on electromagnetohydrodynamic flow of couple stress fluid through a circular microchannel, By Brijesh Kumar, Srinivas Jangili, Elsevier, International Communications in Heat and Mass Transfer , vol.155, pp.107381, 2024
    Heat transfer analysis of electroosmotic flow of couple stress fluid through a rotating circular channel , By Brijesh Kumar, Srinivas Jangili, Elsevier, International Journal of Thermal Sciences, vol.208, pp.109359, 2024
    A theoretical analysis of rotating electromagnetohydrodynamic and electroosmotic transport of couple stress fluid through a microchannel, By Thota Siva, Srinivas Jangili, Bidyasagar Kumbhakar, Wiley, ZAMM-Journal of Applied Mathematics and Mechanics , vol.104 (5), pp., 2024
    Theoretical Investigation of Electromagneto-hydrodynamic Flow of a Couple Stress Fluid through a Circular Microchannel, By Brijesh Kumar, Srinivas Jangili, J V Ramana Murthy, Springer, Pramana, vol.97, pp.191, 2023
    Entropy generation on EMHD transport of couple stress fluid with slip-dependent zeta potential under electrokinetic effects, By Thota Siva, Srinivas Jangili, Bidyasagar Kumbhakar, Elsevier, International Journal of Thermal Sciences , vol.191, pp.108339, 2023
    A theoretical approach to entropy optimization of EMHD flow of non-Newtonian fluid in a microchannel, By Thota Siva, Srinivas Jangili, B. Kumbhakar, Srpinger, Pramana-Journal of Physics, vol.96, pp.168, 2022
    Unsteady electromagnetohydrodynamic flow of couple stress fluid through a microchannel, By Thota Siva, Srinivas Jangili, B. Kumbhakar, and P. K. Mondal, , Elsevier, European Journal of Mechanics-B/Fluids, vol.95, pp.83, 2022
    Entropy Generation to Predict Irreversibilities in Poro-elastic Film with Multiple Forces: Spectral Study,, By J. Srinivas, B. Mallikarjuna, G. Gopi Krishna, Springer, Indian Journal of Physics, vol.95(12), pp.2719, 2021
    Heat Transfer Analysis of Rotating MHD and Electroosmotic ow of Non-Newtonian Fluid through a Micro fluidic channel: An Exact Solution, By T. Siva, J. Srinivas, B. Kumbhakar, Springer, Applied Mathematics and Mechanics, vol.42, pp.1047, 2021
    Spectral Numerical Study of Entropy Generation in Magneto-Convective Viscoelastic Biofluid Flow through Poro-elastic Media with Thermal Radiation and Buoyancy Effects, By B. Mallikarjuna, J. Srinivas, G. Gopi Krishna, O.A. Beg, A. Kadir, ASME, Journal of Thermal Science and Engineering Applications, vol.14(1), pp.011008, 2021
    Unsteady Electro-osmotic Flow of Couple Stress Fluid in a Rotating Microchannel: An Analytical Solution, By T. Siva, B. Kumbhakar, J. Srinivas, P.K. Mondal, American Institute of Physics (AIP), Physics of Fluids, vol.32, pp.102013, 2020
    Couple stress fluid flow with variable properties: A second law analysis, By Srinivas Jangili, S. O. Adesanya, H. A. Ogunseye, and R. Lebelo , Wiley, Mathematical Methods in the Applied Sciences, vol.42(1), pp.85-98, 2019
    Numerical Investigation of entropy generation in microporous channel with thermal radiation and buoyancy force, By G. Gopi Krishna, Srinivas Jangili, S.R. Mishra, S. Sreenadh, Springer, Indian Journal of Physics , vol.93(11), pp.1465, 2019
    Second law analysis of flow in a circular pipe with uniform suction and magnetic field effects, By G. Nagaraju, J. Srinivas, J.V. Ramana Murthy, O. A. Bég, and A. Kadir , The American Society Mechanical Engineers, Journal of Heat Transfer and Mass Transfer, vol.141(1), pp.012004-1, 2019
    Homotopy study of entropy generation in magnetized micropolar flow in a vertical parallel plate channel with buoyancy effect, By Srinivas Jangili, O. A. Bég, Begell House, Heat Transfer Research, vol.49(6), pp.529-553, 2018
    Unsteady squeezing flow of a radiative Eyring-Powell fluid channel flow with chemical reactions, By S. O. Adesanya, H. A. Ogunseye, Srinivas Jangili, Elsevier, International Journal of Thermal Sciences, vol.125, pp.440-447, 2018
    Entropy Generation Analysis for a Radiative Micropolar Fluid Flow Through a Vertical Channel Saturated with Non-Darcian Porous Medium, By J. Srinivas, S. O. Adesanya, J. A. Falade, G. Nagaraju , Springer, International Journal of Applied and Computational Mathematics , vol.3(2), pp.1-24, 2017
    Irreversibility analysis for reactive third-grade fluid flow and heat transfer with convective wall cooling, By S. O. Adesanya, J.A. Falade, Srinivas Jangili, and O. Anwar Beg , Elsevier, Alexandria Engineering Journal, vol.56(1), pp.153-160, 2017
    Entropy generation analysis of the MHD flow of couple stress fluid between two concentric rotating cylinders with porous lining, By G. Nagaraju, J. Srinivas, J.V. Ramana Murthy, and A.M. Rashad , Wiley, Heat Transfer, vol.46(4), pp.316-330, 2017
    Entropy generation analysis of radiative heat transfer effects on channel flow of two immiscible couple stress fluids, By J. Srinivas, J. V. Ramana Murthy, O. Anwar Bég , Springer, Journal of the Brazilian Society of Mechanical Sciences and Engineering, vol.39(6), pp.2191-2202, 2017
    Analysis of entropy generation in an inclined channel flow containing two immiscible micropolar fluids using HAM, By J. Srinivas, J.V. Ramana Murthy, and A Chamkha , Emerald Insight, International Journal of Numerical Methods for Heat and Fluid Flow, vol.23(3/4), pp.1027-1049, 2016
    Mathematical modeling of entropy generation in magnetized micropolar flow between co-rotating cylinders with internal heat generation, By Srinivas Jangili, Nagaraju Gajjela, and O. Anwar Beg , Elsevier, Alexandria Engineering Journal, vol.55(3), pp.1969-1982, 2016
    Flow of two immiscible couple stress fluids between two permeable beds, By J. Srinivas and J. V. Ramana Murthy , Isfahan University of Technology, Journal of Applied Fluid Mechanics, vol.9(1), pp.501-507, 2016
    Second law analysis for the flow of two immiscible micropolar fluids between two porous beds, By J. Srinivas and J. V. Ramana Murthy , Springer, Journal of Engineering Thermophysics, vol.25(1), pp.126-142, 2016
    Thermal analysis of a flow of immiscible couple stress fluids in a channel, By J. Srinivas and J. V. Ramana Murthy , Springer, Journal of Applied Mechanics and Technical Physics, vol.57(6), pp.997-1005, 2016
    Thermodynamic analysis for the MHD flow of two immiscible micropolar fluids between two parallel plates, By J. Srinivas and J. V. Ramana Murthy , Global Digital Central, Frontiers in Heat and Mass Transfer, vol.6(4), pp.1-11, 2015
    First and second law analysis for the MHD flow of two immiscible couple stress fluids between two parallel plates, By J. Srinivas and J. V. Ramana Murthy , Wiley, Heat Transfer, vol.44, pp.468-487, 2015
    Entropy Generation Analysis of the Flow of Two Immiscible Couple Stress Fluids between Two Porous Beds, By J. Srinivas, J. V. Ramana Murthy, K. S. Sai, Begell House, Computational Thermal Sciences, vol.7(2), pp.123-137, 2015
    Flow of immiscible micropolar fluids between two porous beds, By J. V. Ramana Murthy, J. Srinivas, and KS Sai , Begell House, Journal of Porous Media, vol.17(4), pp.287-300, 2014
    Second law analysis for Poiseuille flow of immiscible micropolar fluids in a channel, By J. V. Ramana Murthy and J. Srinivas , Elsevier, International Journal of Heat and Mass Transfer , vol.65, pp.254-264, 2013
    Conference(s)
    Thermal Transport of EMHD Flow with Pressure-Dependent Viscosity through a Parallel Plate Microfluidic Channel: A Theoretical Analysis By Srinivas Jangili, 14th International Conference on Computational Heat and Mass Transfer, 2023
    Thermodynamic Analysis for an Inclined Channel containing Two Immiscible Couple Stress Fluids using HAM By Srinivas Jangili, 10th International Conference on Heat Transfer, Fluid Mechanics and Thermodynamics, 2013
    Book Chapter(s)
    Effect of Magnetic Field on Unsteady Flow of Dusty Fluid Due to Constant Pressure Gradient Through a Circular Cylinder: An Analytical Treatment By Naresh Reddimalla, JV Ramana Murthy, V Radha Krishna Murthy, Srinivas Jangili in Recent Advances in Applied Mathematics and Applications to the Dynamics of Fluid Flows, Springer, Proceedings, 2023
    PROJECT / CONSULTANCY
    Multi-Scale Analysis of Dispersion of Solute in Micropolar Fluid Flow through a Microchannel: An Application to Environment Risk Assessment
    Role: Principal Investigator
    Type: Research
    Sponsor: ARG-MATRICS Program of ANRF
    Project Cost (INR): 3000000
    Date of Commencement: 22-12-2025  
    Duration: 60 Months
    Status: Ongoing
    Investigation of Heat Transfer Characteristics of Electroosmostic Flow of non-Newtonian Fluid through Rectangular Microchannels
    Role: Principal Investigator
    Type: Research
    Sponsor: NIT Warangal (RSM Project)
    Project Cost (INR): 500000
    Date of Commencement: 01-01-2021   Date of Completion: 01-01-2023
    Duration: 24 Months
    Status: Completed
    RESEARCH FELLOWS / PhD STUDENTS
    Current PhD Students
    Duryodhan Subudhi
    Area of Research: Multiscale Analysis of Unsteady Solute Dispersion of EOF of Micropolar Fluid through Rectangular Microchannels
    Muddasani Chitra
    Area of Research: Applications of Artificial Neural Networks
    Previous PhD Students
    Brijesh Kumar (2025)
    Area of Research: Heat Transfer Analysis of Electroosmotic Flow of Couple Stress Fluid through Circular Microchannels
    Thota Siva (NIT Meghalaya) (2023)
    Area of Research: Theoretical Investigation of Electrokinetic Transport of Couple Stress Fluid through Microfluidic Channels
    CONFERENCE / WORKSHOP / SYMPOSIUM / SHORT TERM COURSE / FACULTY DEVELOPMENT PROGRAMME
    AWARDS AND ACCOLADES
    2014
    Best Paper award from IIST Thiruvanantapuram
    2013
    Best Poster award from HEFAT-2014 at USA
    International Travel Support from DST, 2014
    ADDITIONAL RESPONSIBILITIES
    •  Departmental Academic Committee (PG) (September, 2025 - September, 2025)
    •  PIC Alumni (September, 2025 - September, 2025)
    •  Faculty Advisor for Fifth Year Integrated MSc (Continuing from July, 2025)
    •  Mess Warden for IFC-A and IFC-B (Continuing from July, 2025)
    •  Mess Warden for International Food Court (IFC) - C (July, 2024 - June, 2025)
    •  PIC Timetable, MA Department (July, 2024 - June, 2025)
    •  Departmental Academic Committee (UG) (July, 2023 - June, 2025)
    •  Departmental Research Committee (July, 2023 - June, 2025)
    •  PIC Seminar, Department of Mathematics (July, 2023 - June, 2025)
    •  Warden for Kakatiya Hostel (1K) (July, 2023 - June, 2024)
    •  Faculty Advisor for MSc First Year Students (June, 2022 - June, 2024)
    •  Facilitated the constitution of committees for M.Sc. (AM), M.Sc. (M&SC), and Integrated M.Sc. (Mathematics) to conduct seminars, dissertation work presentations, and comprehensive viva-voce examinations (Coordinated a total of 26 components). As part of these responsibilities, I organized mid-semester and end-semester presentations (52 times), prepared 26 grade sheets, and submitted them to the department. (February, 2022 - June, 2023)
     Last updated on January 11, 2026