Vidwan-ID : 99908



  • Dr Anoop Kumar Gupta

  • Assistant Professor
  • Indian Institute of Technology Patna
Publications 2014 - 2023

Publications

  • 37
    Journal Articles
  • 3
    Projects
  • 19

Citations / H-Index

206 Citations
8 h-index
187 Citations

Altmetrics

6
4
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34
4

Google Scholar

Co-author Network


Expertise

Chemical Engineering

Computational fluid dynamics, Non-Newtonian flow rheology, Heat transfer in Nanofluids, Modelling of Phase change materials, Thermal Management of Lithium-ion Batteries

Personal Information

Dr Anoop Kumar Gupta

Male
06/116, Chemical and Biochemical Engineering Indian Institute of Technology Patna, Bihta
Patna, Bihar, India - 801106


Experience

  • Assistant Professor

    Department of Chemical and Biochemical Engineering

    Indian Institute of Technology Patna


Qualification

  • Ph.D

    Indian Institute of Technology, Kanpur

  • M.Tech

    Indian Institute of Technolgy, Guwahati

  • B.Tech

    HBTI Kanpur


Honours and Awards

2018

DST Inspire Faculty Award

DST

2015

International Travel Grant

DST

2018

DST Inspire Faculty Award

DST

2015

International Travel Grant

DST

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Doctoral Theses Guided

2023

Numerical Modeling on Thermal Management of Cylindrical Lithium-ion Batteries

Lalan Kumar Singh, IIT Patna

2023

Numerical Modeling on Thermal Management of Cylindrical Lithium-ion Batteries

Lalan Kumar Singh, IIT Patna

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Membership In Professional Bodies

2022

The Institution of Engineers (India)

Lifetime member (M-1738237)

2022

Indian Society for Heat and Mass Transfer (ISHMT)

Life member (1492)

2021

Indian Institute of Chemical Engineers (IICHE)

Life member (LM-71400)

2022

The Institution of Engineers (India)

Lifetime member (M-1738237)

2022

Indian Society for Heat and Mass Transfer (ISHMT)

Life member (1492)

2021

Indian Institute of Chemical Engineers (IICHE)

Life member (LM-71400)

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Research Projects

Mathematical modeling on melting/solidification of composite phase change materials in local thermal non-equilibrium using Brinkman extended Darcy-Forchheimer equation under simultaneous charging and discharging conditions

Funding Agency : SERB

Design and optimization of systems containing micro-encapsulated phase change materials (MPCMs) for efficient thermal energy storage and heat transfer

Funding Agency : DST

Development of an optimized and efficient lithium-ion battery thermal management system for electric vehicles utilizing phase change material and metal foam composites

Funding Agency : SERB

Mathematical modeling on melting/solidification of composite phase change materials in local thermal non-equilibrium using Brinkman extended Darcy-Forchheimer equation under simultaneous charging and discharging conditions

Funding Agency : SERB

Design and optimization of systems containing micro-encapsulated phase change materials (MPCMs) for efficient thermal energy storage and heat transfer

Funding Agency : DST

Development of an optimized and efficient lithium-ion battery thermal management system for electric vehicles utilizing phase change material and metal foam composites

Funding Agency : SERB

Read Less