Dr. Mohamed K.M Gerwash | energy rationalization | Best Researcher Award

Dr. Mohamed K.M Gerwash | energy rationalization | Best Researcher Award

Dr. Mohamed K.M Gerwash, Egyptian Russian University, Egypt

Mohamed Karim Mohamed Gerwash is an Egyptian researcher specializing in refrigeration, air conditioning, and energy rationalization, with a focus on renewable energy. He holds a Master’s degree in Refrigeration and Energy Rationalization and is currently pursuing a Ph.D. in the same field. He works at the Science & Innovation Centre of Excellence at the Egyptian Russian University. Mohamed has extensive industry experience in HVAC design, maintenance, and sustainability. He is passionate about green energy, water desalination, and recycling, and has published multiple articles in peer-reviewed journals. 🏫🌱

Professional Profile:

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Suitability Summary for Best Researcher Award

Mohamed Karim Mohamed Gerwash is a highly suitable candidate for the Best Researcher Award based on his extensive academic and professional contributions, particularly in the fields of refrigeration, air conditioning, energy rationalization, and sustainable energy solutions.

Education and Experience 📘

  • 🎓 Diploma in Industrial Refrigeration and Air Conditioning (2005–2006)
  • 🎓 Bachelor’s in Cooling and Air Conditioning Technology – Helwan University (2010)
  • 🎓 Master’s in Refrigeration, Air Conditioning, and Energy Rationalization – Specialization in Renewable Energy (2019)
  • 🎓 Ph.D. Researcher – Refrigeration, Air Conditioning, and Energy Rationalization – Egyptian Russian University (2020–Present)
  • 🧑‍🔬 Researcher – Science & Innovation Centre of Excellence, Egyptian Russian University (2023–Present)

Professional Development 🌱

Mohamed Karim Mohamed Gerwash has a strong professional background in refrigeration and air conditioning, with hands-on experience in maintenance, fault detection, and system design. He has contributed to the design and implementation of HVAC systems for universities and industries and has worked as a maintenance department manager at Venice Ceramics Company. His research explores energy-efficient technologies, water desalination, and sustainable energy solutions. Mohamed’s engagement in multiple conferences and achievements in university competitions further highlight his professional commitment and growth. 💡🌍

Research Focus 🔬

Mohamed’s research interests primarily focus on sustainable technologies and green energy solutions. His areas of expertise include:

  • ❄️ Refrigeration and Air Conditioning – Exploring energy-efficient systems.
  • 🌱 Sustainability – Investigating eco-friendly practices in HVAC and energy use.
  • 💧 Water Desalination – Developing systems for fresh water production.
  • 🌿 Green Energy – Research on renewable energy, including hydrogen and industrial waste recycling.
    His work aims to reduce environmental impact and improve efficiency across various sectors. 🌍💧

Awards and Honors 🏆

  • 🥇 First Place in Innovators Support Fund – Egyptian Russian University (2024)
  • 🎓 STDF Project Initiator – Project on Sustainable Refrigeration (2023)
  • 📚 Published Articles in Peer-Reviewed Journals – Industrial Technology Journal & Hydrogen (2024)

Publication Top Notes:

📚 “Sustainable Production of Green Oxy-Hydrogen from Vehicles’ Air Conditioning Drains to Enhance Engine Efficiency and Reduce Greenhouse Gas Emissions”
🌱🚗

📚 “The impact of pulse width modulation (PWM) on the generation of hydroxy gas (HHO)”
⚡🔋

 

Dr. Milada Pezo | Materials | Best Researcher Award

Dr. Milada Pezo | Materials | Best Researcher Award

Dr. Milada Pezo, Institute of Nuclear Sciences VINČA, Serbia

Dr. Milada Pezo is a distinguished Research Professor at the Institute of Nuclear Sciences VINČA, specializing in mechanical engineering with a focus on energy systems. She earned her BSc, MSc, and PhD from the University of Belgrade, Faculty of Mechanical Engineering. Dr. Pezo’s research covers thermal-hydraulics, energy efficiency, renewable energy sources, and computational fluid dynamics (CFD). A principal investigator for the Serbian-Slovenian bilateral project (2020-2022), she is renowned for advancing numerical modeling of multiphase flows and heat transfer. With over 100 peer-reviewed publications, Dr. Pezo is a leading expert in her field and serves as a subject editor for the prestigious Thermal Science journal. Her work plays a vital role in enhancing industrial applications, process industry optimization, and promoting sustainable energy solutions.

Professional Profile

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Suitability for the Best Researcher Award

Dr. Milada Pezo is a highly qualified candidate for the Best Researcher Award due to her extensive academic achievements, leadership in international research projects, and significant contributions to the fields of thermal-hydraulics, computational multifluid dynamics, and energy efficiency.

🎓    Education 

Dr. Milada Pezo’s academic journey in Mechanical Engineering began at the University of Belgrade, Faculty of Mechanical Engineering. She completed her BSc, MSc, and PhD degrees with a specialized focus on Automatic Control and Thermal Power Engineering. Her education is deeply rooted in interdisciplinary studies, blending mechanical engineering principles with advanced energy systems. Throughout her academic pursuits, she developed expertise in thermal-hydraulics, computational multifluid dynamics, and energy efficiency. Her PhD thesis explored mathematical modeling of heat and mass transfer, contributing to the development of innovative engineering solutions in multiphase flow and renewable energy integration. Dr. Pezo’s academic foundation has been instrumental in driving her career forward, positioning her as an expert in both theoretical and practical applications of mechanical engineering, with a focus on sustainability and renewable energy systems.

💼     Experience

Dr. Milada Pezo boasts extensive experience in mechanical engineering, specifically within the energy sector. She has been a Research Professor at the Institute of Nuclear Sciences VINČA, where she has led pivotal research initiatives in thermal-hydraulics and computational fluid dynamics (CFD). As principal investigator of the Serbian-Slovenian project “Development of Advanced Numerical Modelling Approaches of Multiphase Flows and Heat Transfer for Industrial Application” (2020-2022), she successfully bridged academia and industry, enhancing practical solutions for energy efficiency. Her experience extends beyond academia; she collaborates with industrial partners to optimize energy systems and renewable energy sources. Dr. Pezo is also a subject editor for Thermal Science and regularly contributes her expertise to peer-reviewed publications. Her vast knowledge in thermal-hydraulics, renewable energy integration, and industrial processes solidifies her role as a key influencer in the mechanical engineering field.

🏅 Awards and Honors 

Dr. Milada Pezo has been recognized with numerous awards and honors for her contributions to mechanical engineering, particularly in energy systems. As the principal investigator of the prestigious Serbian-Slovenian bilateral research project (2020-2022), she earned commendations for her innovative work on multiphase flow and heat transfer. Her involvement in the project led to industry-wide recognition, enhancing energy efficiency practices. Dr. Pezo has also been honored by various scientific communities for her editorial work at Thermal Science, where she oversees publications on computational fluid dynamics and heat and mass transfer. With over 100 peer-reviewed articles, Dr. Pezo’s contributions have received multiple citations and accolades from international conferences and journals. Her work in renewable energy, energy efficiency, and thermal-hydraulics has been instrumental in fostering sustainable engineering solutions, leading to numerous invitations to keynote at international forums and participate in expert panels.

🌍   Research Focus 

Dr. Milada Pezo’s research centers on thermal-hydraulics, energy efficiency, and renewable energy systems, utilizing advanced numerical modeling techniques. She specializes in computational fluid dynamics (CFD), with an emphasis on multiphase flow and heat transfer for industrial applications. Her groundbreaking work in granular transportation, mixing, and separation processes within the chemical and energy sectors has significantly impacted energy-efficient designs. A key area of her research is the development of sustainable solutions for renewable energy integration, optimizing heat and mass transfer in multiphase flow systems. Through her role as principal investigator in international collaborative projects, Dr. Pezo has driven innovations in energy-efficient technologies, including solar and wind power systems. Her research efforts also focus on mathematical modeling and simulation, aiming to enhance industrial applications and promote sustainability in energy production and consumption.

 📖 Publication Top Notes

  • Modified screw conveyor-mixers–Discrete element modeling approach
    • Citations: 85
  • DEM/CFD analysis of granular flow in static mixers
    • Citations: 65
  • Dynamical simulation of PV/Wind hybrid energy conversion system
    • Citations: 62
  • Discrete element model of particle transport and premixing action in modified screw conveyors
    • Citations: 50
  • Sustainability estimation of energy system options that use gas and renewable resources for domestic hot water production
    • Citations: 43

Assoc Prof Dr. Penka Zlateva | Energy Management Networks | Best Researcher Award

Assoc Prof Dr. Penka Zlateva | Energy Management Networks | Best Researcher Award

Assoc Prof Dr. Penka Zlateva, Technical University of Varna, Bulgaria

Associate Professor Penka Zlateva is a distinguished academic in Industrial Thermal Engineering at the Technical University of Varna, Bulgaria. She earned her master’s degree in Marine Technology from the Nikola Vaptsarov Naval Academy and completed her Ph.D. in Theoretical Thermal Engineering at the same institution in 2009. Since 2010, she has advanced through various roles, including Chief Assistant, Vice Dean of the Shipbuilding Faculty, and currently Dean of the Shipbuilding Faculty. Her research expertise spans materials engineering, porous materials, gasification, combustion, heat and mass transfer, thermodynamics, and renewable energy. She has furthered her specialization in France, Greece, and Romania and has served as a guest lecturer and journal reviewer. With over 120 scientific publications, including 44 indexed in major databases, her contributions significantly impact her field.

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Award Suitability Summary for Associate Professor Penka Zlateva

Associate Professor Penka Zlateva’s distinguished academic career, extensive research contributions, and leadership roles make her an outstanding candidate for the Best Researcher Award. Her extensive publication record, combined with her significant impact in industrial thermal engineering and renewable energy, demonstrates her exceptional research capabilities and influence in the field.

🎓Education:

Associate Professor Penka Zlateva earned her Ph.D. in Theoretical Thermal Engineering from the Technical University of Varna, Bulgaria, in 2009. She also holds a Master’s Degree in Marine Technology from the Nikola Vaptsarov Naval Academy, Bulgaria.

🏢Work Experience:

Associate Professor Penka Zlateva has held several key positions at the Technical University of Varna, Bulgaria. Since 2023, she has served as the Dean of the Shipbuilding Faculty. Prior to this role, she was the Vice Dean of the Shipbuilding Faculty from 2015 to 2023. She began her tenure at the university as Chief Assistant in the Department of Thermal Engineering and Management, where she worked from 2010 to 2015.

🏅Awards and Recognitions:

In addition to her academic roles, Associate Professor Penka Zlateva has contributed to the global academic community as a guest lecturer at Constantin Brancusi University of Tg-Jiu in Romania. She is also an esteemed member of the review committee for the journal Sustainability and Resources.

Publication Top Notes:

  • Thermal Insulating Properties of Straw-Filled Environmentally Friendly Building Materials
  • Optimization of Biogas Composition in Experimental Studies
  • Thermal Properties of a New Pavement Material for Use in Road Construction
  • Experimental Study of Heat Pump Type Air-Water for Heating System Performance
  • Testing and Clearing the High Temperature Module Error from 0 to 1250°C for Measurement with 16 K-Type Thermocouples