H-Index & Metrics Best Publications

H-Index & Metrics

Discipline name H-index Citations Publications World Ranking National Ranking
Mechanical and Aerospace Engineering D-index 31 Citations 3,572 163 World Ranking 1141 National Ranking 27

Overview

What is he best known for?

The fields of study he is best known for:

  • Thermodynamics
  • Organic chemistry
  • Mechanical engineering

His primary areas of investigation include Thermodynamics, Mechanics, Heat transfer, Adsorption and Finite volume method. His research investigates the connection with Mechanics and areas like Boundary value problem which intersect with concerns in Aluminium, Mass flux and Convection–diffusion equation. His Heat transfer research integrates issues from Convection, Welding, Weld pool, Gas tungsten arc welding and Heat sink.

His Convection research is multidisciplinary, relying on both Laser beam welding, Thermodynamic model and Latent heat. In his study, which falls under the umbrella issue of Heat sink, Thermal conduction is strongly linked to Heat transfer coefficient. His studies in Adsorption integrate themes in fields like Gas compressor, Chromatography and Volume.

His most cited work include:

  • A numerical model for heat sinks with phase change materials and thermal conductivity enhancers (142 citations)
  • A generalized formulation for evaluation of latent heat functions in enthalpy-based macroscopic models for convection-diffusion phase change processes (91 citations)
  • Evaluation of isopentane, R-245fa and their mixtures as working fluids for organic Rankine cycles (85 citations)

What are the main themes of his work throughout his whole career to date?

Pradip Dutta mainly focuses on Thermodynamics, Mechanics, Heat transfer, Metallurgy and Alloy. His Adsorption research extends to the thematically linked field of Thermodynamics. His study ties his expertise on Boundary value problem together with the subject of Mechanics.

His Heat transfer study incorporates themes from Thermal conduction, Finite volume method, Boundary layer and Heat sink. Pradip Dutta studied Metallurgy and Slurry that intersect with Aluminium alloy, Isothermal process, Shear rate and Rheology. Pradip Dutta has researched Alloy in several fields, including Work and Casting.

He most often published in these fields:

  • Thermodynamics (33.71%)
  • Mechanics (31.44%)
  • Heat transfer (19.70%)

What were the highlights of his more recent work (between 2015-2021)?

  • Mechanics (31.44%)
  • Heat transfer (19.70%)
  • Thermal energy storage (4.17%)

In recent papers he was focusing on the following fields of study:

His scientific interests lie mostly in Mechanics, Heat transfer, Thermal energy storage, Composite material and Nuclear engineering. His work investigates the relationship between Mechanics and topics such as Axial symmetry that intersect with problems in Thermal conductivity and Heat capacity. His study on Heat transfer is covered under Thermodynamics.

His Thermodynamics study which covers Magnetohydrodynamic drive that intersects with Nusselt number, Rayleigh number and Stefan number. His studies deal with areas such as Thermal, Hydride, Chiller, Heat exchanger and Supercritical carbon dioxide as well as Nuclear engineering. The concepts of his Slurry study are interwoven with issues in Alloy, Metallurgy and Phase.

Between 2015 and 2021, his most popular works were:

  • Modeling and analysis of a printed circuit heat exchanger for supercritical CO2 power cycle applications (60 citations)
  • Development and performance studies of an air cooled two-stage multi-bed silica-gel?+?water adsorption system. (29 citations)
  • High temperature solar receiver and thermal storage systems (21 citations)

In his most recent research, the most cited papers focused on:

  • Thermodynamics
  • Organic chemistry
  • Mechanical engineering

Pradip Dutta focuses on Thermodynamics, Mechanics, Adsorption, Silica gel and Nuclear engineering. His Thermodynamics study combines topics in areas such as Hydrogen storage and Hydride. His work on Heat transfer, Bubble and Loop heat pipe as part of general Mechanics research is often related to Sink, thus linking different fields of science.

His Heat transfer research is multidisciplinary, incorporating elements of Waste heat, Joule heating, Nusselt number, Magnetohydrodynamic drive and Streaming current. His Adsorption research integrates issues from Chilled water, Evaporator and Condenser. His research on Nuclear engineering also deals with topics like

  • Chiller which is related to area like Nanofluids in solar collectors and Refrigeration,
  • Thermal energy storage together with First law of thermodynamics, Heat exchanger, Hydrogen and Energy storage efficiency.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

A numerical model for heat sinks with phase change materials and thermal conductivity enhancers

KC Nayak;SK Saha;K Srinivasan;P Dutta.
International Journal of Heat and Mass Transfer (2006)

212 Citations

Evaluation of isopentane, R-245fa and their mixtures as working fluids for organic Rankine cycles

Pardeep Garg;Pramod Kumar;Kandadai Srinivasan;Pradip Dutta.
Applied Thermal Engineering (2013)

125 Citations

A generalized formulation for evaluation of latent heat functions in enthalpy-based macroscopic models for convection-diffusion phase change processes

Suman Chakroborty;Pradip Dutta.
Metallurgical and Materials Transactions B-process Metallurgy and Materials Processing Science (2001)

109 Citations

Modeling and analysis of a printed circuit heat exchanger for supercritical CO2 power cycle applications

Ajinkya Meshram;Ankush Kumar Jaiswal;Sagar D Khivsara;Jesus D Ortega.
Applied Thermal Engineering (2016)

92 Citations

Thermal modeling of activated carbon based adsorptive natural gas storage system

R Basumatary;P Dutta;M Prasad;K Srinivasan.
Carbon (2005)

90 Citations

Studies on Optimum Distribution of Fins in Heat Sinks Filled With Phase Change Materials

S.K. Saha;Kandadai Srinivasan;P. Dutta.
Journal of Heat Transfer-transactions of The Asme (2008)

90 Citations

A time-dependent Fourier grid Hamiltonian method. Formulation and application to the multiphoton dissociation of a diatomic molecule in intense laser field

S. Adhikari;P. Dutta;S.P. Bhattacharyya.
Chemical Physics Letters (1992)

84 Citations

Evaluation of Adsorption Parameters and Heats of Adsorption through Desorption Measurements

Bidyut B. Saha;Shigeru Koyama;Ibrahim I. El-Sharkawy;Khairul Habib.
Journal of Chemical & Engineering Data (2007)

79 Citations

Three-dimensional double-diffusive convection and macrosegregation during non-equilibrium solidification of binary mixtures

S Chakraborty;P Dutta.
International Journal of Heat and Mass Transfer (2003)

76 Citations

Adsorption of 1,1,1,2-Tetrafluoroethane on Activated Charcoal

Basavaraj S Akkimaradi;Madhu Prasad;Kandadai Srinivasan;Pradip Dutta.
Journal of Chemical & Engineering Data (2001)

75 Citations

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