Hemantkumar Kadam | Heat Transfer | Best Researcher Award

Mr. Hemantkumar Kadam | Heat Transfer | Best Researcher Award

Asst. Professor | Pimpri Chinchwad College of Engineering, Pune | India

Mr. Hemantkumar Hindurao Kadam, Assistant Professor at Pimpri Chinchwad College of Engineering, Pune, is a distinguished researcher pursuing a Ph.D. in Mechanical Engineering at Shivaji University, Kolhapur, with a focus on nanofluids, surfactants, stability, and heat transfer enhancement. He holds an M.Tech in Thermal Engineering and a B.E. in Mechanical Engineering (Mumbai University), and is currently conducting experimental studies on nanofluids stabilized with biosurfactants and synthetic surfactants at Govt. College of Engineering, Karad. His research has resulted in peer-reviewed publications in SCIE and ESCI journals, granted copyrights (“Easy steps to draw an involute” and “Development of Lateral Surfaces”), a patent under process and professional contributions to renewable energy, HVAC, and electronic cooling systems. He has experimentally investigated the influence of surfactant type and concentration on viscosity, interfacial tension, and stability of nanofluids, demonstrating the comparative environmental and performance benefits of biosurfactants such as Rhamnolipids. His work, recognized through 4 citetation and 4 documents (h-index = 1), reflects significant innovation, methodological rigor, and potential for sustainable thermal management solutions, making him an excellent candidate for the Best Research Award.

Profile: Scopus | Orcid | Google Scholar

Featured Publications

Influence of rhamnolipids, anionic surfactants, and Al₂O₃ nanoparticles on the viscosity of distilled water-based fluids: A comparative experimental study. Journal/Conference Name, volume(issue), pages.

 

Paul Ayegba| Heat Transfer | Best Researcher Award

 

Dr. Paul Ayegba| CSU Long Beach | Best Researcher Award

Assistant Professor, CSU Long Beach,United States

Dr. Paul Onubi Ayegba is a highly accomplished fluids and thermal sciences researcher with significant international experience, a solid track record of publications, and recognitions from prestigious institutions. His technical skillset is robust, and his research is highly relevant to both academia and industry. His trajectory from Nigeria to France, the U.S., and a current tenure-track position shows resilience and growth.

Publication Profile
Publication : 

1. Turbulence statistics and flow structure in fluid flow using particle image velocimetry technique: A review

  • Authors: PO Ayegba, LC Edomwonyi‐Otu

  • Journal: Engineering Reports, Volume 2 (3), e12138

  • Year: 2020

  • Citations: 24


2. A review of drag reduction by additives in curved pipes for single‐phase liquid and two‐phase flows

  • Authors: PO Ayegba, LC Edomwonyi‐Otu, N Yusuf, A Abubakar

  • Journal: Engineering Reports, Volume 3 (3), e12294

  • Year: 2021

  • Citations: 23


3. Applications of artificial neural network (ANN) method for performance prediction of the effect of a vertical 90 bend on an air–silicone oil flow

  • Authors: PO Ayegba, M Abdulkadir, V Hernandez-Perez, IS Lowndes, …

  • Journal: Journal of the Taiwan Institute of Chemical Engineers, Volume 74, Pages 59–64

  • Year: 2017

  • Citations: 20


4. Experimental and neural network modelling of polymer drag reduction in 180 bends

  • Authors: PO Ayegba, LC Edomwonyi-Otu, N Yusuf, A Abubakar

  • Journal: Results in Materials, Volume 1, Article 100012

  • Year: 2019

  • Citations: 13


5. Flow pattern and pressure drop for oil–water flows in and around 180 bends

  • Authors: PO Ayegba, LC Edomwonyi-Otu, A Abubakar, N Yusuf

  • Journal: SN Applied Sciences, Volume 3, Pages 1–13

  • Year: 2021

  • Citations: 12


6. Hydrodynamics of vertical upward and downward flow boiling in a millimetric tube

  • Authors: PO Ayegba, J Sebilleau, C Colin

  • Journal: International Journal of Multiphase Flow, Volume 153, Article 104120

  • Year: 2022

  • Citations: 9


7. Drag Reduction for Single-Phase Water Flow in and around 180° Bends

  • Authors: PO Ayegba, LC Edomwonyi-Otu, A Abubakar, N Yusuf

  • Journal: Journal of Non-Newtonian Fluid Mechanics, Volume 295, Article 104596

  • Year: 2021

  • Citations: 6


8. Prediction of average void fraction and PDF of void fraction in vertical 90° bend for air–silicone oil flow using multilayer perceptron (MLP) codes

  • Authors: P Ayegba, M Abdulkadir

  • Publisher: Teknokent

  • Year: 2017

  • Citations: 6

conclusion:

Yes, Dr. Ayegba is a highly suitable candidate for a Best Researcher Award, especially within fields like Chemical Engineering, Fluid Mechanics, Thermal Sciences, or Environmental Engineering. He stands out for his academic rigor, global recognition, and impactful research output. Further progress in grant acquisition and student mentorship would elevate him to even greater heights.

Dr . mohammed amine Amraoui | Heat transfer | Best Researcher Award

Dr . mohammed amine Amraoui | Heat transfer | Best Researcher Award

Dr . Abhishek Kumar ,National Formosa University,Taiwan

Dr. Abhishek Kumar is a distinguished academic and researcher at National Formosa University, Taiwan. He has earned recognition for his contributions to the field of mechanical engineering, particularly in areas related to advanced manufacturing technologies, robotics, and automation.Dr. Kumar holds a PhD in Mechanical Engineering from a reputed university, where he specialized in innovative techniques to enhance manufacturing processes. His research interests include additive manufacturing, smart manufacturing systems, and industrial automation. He has published numerous papers in top-tier journals and has presented his findings at various international conferences.

 

Professional Profiles:

Scopus

Profile:

A thermo-fluid research engineer specializing in single-phase/two-phase heat transfer design, refrigeration/air conditioning research with low GWP refrigerants, heat sink/cold plate design, product development for electronics cooling, and optimization of energy systems. Proven track record in delivering industry-university cooperation projects on time. Expertise in experimental works and designing solutions to sustainable energy problems in alignment with industry needs.

Education :

June 2002: Baccalaureate in Mechanical Fabrication,une 2005: Diploma of University Applied Studies (DEUA) in Mechanical Engineering,2005/2006: Third Year Engineering in Mechanical Engineering,2006/2007: Fourth Year Engineering in Mechanical Engineering,June 2008: State Engineer Diploma in Mechanical Engineering, Energy Option,December 2012: Magister Degree in Mechanical Engineering, Energy Option, Thermal Machines,2012/2013: First Year Doctorate,2013/2014: Second Year Doctorate,2014/2015: Third Year Doctorate,2015/2016: Fourth Year Doctorate,2016/2017: Doctorate in Mechanical Engineering Sciences, Thermal Machines Option,2019: University Habilitation Certificate in Mechanical Engineering

Work Experience:

August 2, 2009: Technical Auditor at SOGERWHIT,October 4, 2009: Senior Technician in Study and Methods at SOREMEP SPA,2012/2013: Teaching Assistant in Fluid Mechanics,2013/2014: Teaching Assistant in Heat Exchangers,2014/2015: Lecturer in Turbo Machinery and Propulsion Mechanics,Since September 6, 2015: Assistant Professor, Class B, at the University of Djilali Liabes Sidi Bel Abbes,Since July 24, 2019: Assistant Professor, Class A, at the University of Djilali Liabes Sidi Bel Abbes

Skills Summary:

  • Team spirit
  • Communication
  • High adaptability and learning ability
  • Proficiency in computer tools (Word, Excel, PowerPoint, FLUENT, ANSYS, MS Project, AutoCAD, MATLAB, DAO, CAO, Retscreen)

University Projects:

DEUA Final Study Project: Study and realization of a threading device,Engineering Final Study Project: Feasibility study of a wind system for electricity production in Algeria,Magister Thesis: Numerical study of a flat solar air collector; Influence of the roughness shape,Doctorate Thesis: Contribution to the performance improvement of a flat solar air collector

Publications :

 

  • K. Aliane, M.A. Amraoui, “Etude numérique d’un capteur solaire plan à air ayant une rugosité rectangulaire,” Revue des Energies Renouvelables, Vol. 16, No. 1, 2013, pp. 129-141.

 

  • M.A. Amraoui, K. Aliane, “Numerical Analysis of a Three Dimensional Fluid Flow in a Flat Plate Solar Collector,” International Journal of Renewable and Sustainable Energy, Vol. 3, No. 3, 2014, pp. 68-75. DOI: 10.11648/j.ijrse.20140303.14.

 

  • M.A. Amraoui, K. Aliane, “Dynamic and Thermal Study of the Three-Dimensional Flow in a Flat Plate Solar Collector with Transversal Baffles,” International Review of Mechanical Engineering, Vol. 8, No. 6, November 2014.

 

  • M.A. Amraoui, K. Aliane, “Three-dimensional Analysis of Air Flow in a Flat Plate Solar Collector,” Periodica Polytechnica Mechanical Engineering. DOI: 10.3311/PPme.11255.

 

  • M.A. Amraoui, “Numerical Study of an Air Flow in a Flat Plate Air Solar Collector with Circular Obstacles,” In: Hatti M. (eds) Computer Aided Design In Mechanical Engineering and Renewables Towards an Energy Transition. ICAIRES 2020. Lecture Notes in Networks and Systems, Vol. 174. Springer, Cham. DOI: 10.1007/978-3-030-63846-7_81.

 

  • Y. Menni, H. Ameur, S.-W. Yao, M.A. Amraoui, M. Inc, G. Lorenzini, H. Ahmad, “Computational Fluid Dynamic Simulations and Heat Transfer Characteristic Comparisons of Various Arc-Baffled Channels,” Open Physics, 2021. DOI: 10.1515/phys-2021-0005.

 

  • M.A. Amraoui, “Three-Dimensional Numerical Simulation of a Flat Plate Solar Collector with Double Paths,” International Journal of Heat and Technology. DOI: 10.18280/ijht.390406.

 

  • M.A. Amraoui, F. Benosman, “Numerical Modeling of a Flat Air Solar Collector Fitted with Obstacles,” E3S Web of Conferences, Vol. 321:04016, 2021. DOI: 10.1051/e3sconf/202132104016.

 

  • F. Benosman, M.A. Amraoui, “Study of Air Flow in A Solar Collector Equipped with Two Inclined Obstacles,” E3S Web of Conferences, Vol. 321:04015, 2021. DOI: 10.1051/e3sconf/202132104015.

 

  • G. Abdi, M.A. Amraoui, N. Medjadji, G. Lorenzini, Y. Menni, “3D Evaluation of a Thermal and Hydraulic Winged Solar Collector,” Instrumentation Mesure Métrologie, Vol. 21, No. 2, April 2022, pp. 35-41.

 

  • M.A. Amraoui, M.A. Alkhafaji, S. Abdullaev, S.A. Zearah, A. Akgul, R. Jarrar, H. Shanak, J. Asad, Y. Menni, “CFD Study of a Dual-Passage Solar Collector with Longitudinal and Transverse Baffles for Enhanced Thermal Performance,” Thermal Science, Vol. 27, No. 4B, 2023, pp. 3133-3142.

 

  • M.A. Amraoui, F. Benosman, “Computational 3D Simulations of Fluid Dynamics and Comparisons of Heat Transfer Characteristics of Various Flat-Plate Solar Collectors,” Iranian Journal of Science and Technology, Transactions of Mechanical Engineering. DOI: 10.1007/s40997-024-00766-x.

 

 

 

Dr . Abhishek Kumar | Heat transfer | Best Researcher Award

Dr . Abhishek Kumar | Heat transfer | Best Researcher Award

Dr . Abhishek Kumar ,National Formosa University,Taiwan

Dr. Abhishek Kumar is a distinguished academic and researcher at National Formosa University, Taiwan. He has earned recognition for his contributions to the field of mechanical engineering, particularly in areas related to advanced manufacturing technologies, robotics, and automation.Dr. Kumar holds a PhD in Mechanical Engineering from a reputed university, where he specialized in innovative techniques to enhance manufacturing processes. His research interests include additive manufacturing, smart manufacturing systems, and industrial automation. He has published numerous papers in top-tier journals and has presented his findings at various international conferences.

 

Professional Profiles:

Scopus

Google Scholar

Profile:

A thermo-fluid research engineer specializing in single-phase/two-phase heat transfer design, refrigeration/air conditioning research with low GWP refrigerants, heat sink/cold plate design, product development for electronics cooling, and optimization of energy systems. Proven track record in delivering industry-university cooperation projects on time. Expertise in experimental works and designing solutions to sustainable energy problems in alignment with industry needs.

Education :

Doctor of Philosophy (Ph.D.) in Mechanical Engineering,National Yang Ming Chiao Tung University, Hsinchu, Taiwan
October 2022 – February 2018,Master of Technology (M. Tech.) in Thermal Engineering,Delhi Technological University, New Delhi, India,September 2016 – July 2014,Bachelor of Technology (B. Tech.) in Mechanical Engineering,Bundelkhand University, Jhansi, India,July 2009 – July 2005

Experience:

Industry-University Cooperation Projects under Prof. Chi-Chuan Wang
March 2018 – November 2022,Industrial Technology Research Institute (ITRI):
An Overview of Low GWP Refrigerants for Chiller Applications: Alternative to R-134a
March 2022 – November 2022,PEGATRON Limited:
Design and development of 1000 W Liquid-cooled cold plate
January 2022 – July 2021,Patech Fine Chemicals Limited:
Investigated heat transfer performance of various compressor POE lubricant oils with low GWP refrigerants on smooth and enhanced tubes
January 2021 – August 2020,Formosa Heavy Industries Corp.:
Experimentally investigated heat transfer performance of high flux sintered coated tubes from different manufacturers,October 2019 – May 2018

Awards:

  • Best Presentation Award at the 7th National and 1st International Conference on Refrigeration and Air Conditioning (NCRAC 2022) for the paper “Recent Progress in Pool Boiling Heat Transfer of Low GWP Refrigerants with the Effect of POE Lubricant Oil” (Paper ID: NCRAC2022_79)

Field of Interest:

  • Optimization of energy systems
  • Design and development of supercritical CO2-based power generation systems
  • Heat exchanger design for supercritical systems
  • HVAC&R technology with low GWP refrigerants
  • Efficient thermal management systems for data center cooling, including immersion cooling single/two phase
  • Sustainable energy challenges
  • Boiling, condensation, and combustion of environmentally friendly working fluids
  • High-efficiency heat pipes
  • Micro-nano scale energy transport
  • Multiscale modeling (CFD)
  • Nature-inspired technology for enhanced heat transfer

Publications :

  • Kumar, A., et al. (2022). A Comprehensive Review Regarding Condensation of Low-GWP Refrigerants for Some Major Alternatives of R-134a. Processes, 10, 1882.

 

  • Kumar, A., et al. (2021). Heat Transfer Performance of R-1234ze(E) with the Effect of High-Viscosity POE Oil on Enhanced GEWA-B5H Tube. Processes, 9, 2285.

 

  • Kumar, A., et al. (2020). Nucleate Pool Boiling Heat Transfer from High-Flux Tube with Dielectric Fluid HFE-7200. Energies, 13, 2313.

 

  • Kumar, A., et al. (2024). Effect of Viscosity Grade (POE) on the Smooth-Tube Pool Boiling Performance with R-1234ze(E) Refrigerant. Applied Thermal Engineering, 241, 122328.

 

  • Kumar, A., et al. (2023). Recent Progress in Pool Boiling Heat Transfer of Low GWP Refrigerants with the Effect of POE Lubricant Oil. Thermal Science and Engineering Progress, 45, 102127.

 

  • Kumar, A., et al. (2023). Pool Boiling Heat Transfer Characteristics of R-1233zd(E) on Smooth Tube Subject to POEC-220 Lubricant Oil. International Journal of Refrigeration, 145, 233-242.

 

  • Kumar, A., et al. (2022). Heat Transfer Characteristics of R‐454B and R‐454B/POE‐Oil Mixture on Smooth and GEWA Tube: Alternative to R‐410A. International Journal of Heat and Mass Transfer, 193, 122972.

 

  • Kumar, A., et al. (2022). Nucleate Pool Boiling Heat Transfer of R-1234ze(E) and R-134a on GEWA-B5H and Smooth Tube with the Influence of POE Oil. Applied Thermal Engineering, 201, 117779.

 

  • Kumar, A., et al. (2021). Nucleate Boiling Heat Transfer of R-134a and R-134a/POE Lubricant Mixtures on Smooth Tube. Applied Thermal Engineering, 185, 116359.

 

  • Kumar, A., et al. (2024). Pool Boiling Heat Transfer Performance of Low-GWP Refrigerant R-513A on Smooth Tube. Heat and Mass Transfer, 60, 1059-1071.

 

  • Sajjad, A.K.U., Wang, C.-C., et al. (2020). Nucleate Pool Boiling of High Flux Sintered Coated Porous Surfaces with Dielectric Liquid, HFE-7200. Journal of Enhanced Heat Transfer.