Shamim Reza |Solar Cells| Young Scientist Award

Mr. Shamim Reza |Solar Cells| Young Scientist Award

Master’s Students.Advanced Energy Materials and Solar Cell Research Laboratory, BRUR, Bangladesh

Mr. Shamim Reza is a dedicated master’s student at the Advanced Energy Materials and Solar Cell Research Laboratory, Begum Rokeya University, Rangpur (BRUR), Bangladesh. His research focuses on advanced materials for energy applications, particularly solar cell technologies. He is passionate about contributing to renewable energy advancements through innovative material science research.

Summary:

Mr. Shamim Reza has a promising profile for the “Research for Young Scientist Award” due to his focus on advanced energy materials and solar cell research, which are vital for global sustainability goals. His mentorship of master’s students reflects his leadership and dedication to the growth of the scientific community. However, the strength of his candidacy depends on the specific details of his research outputs, such as high-impact publications, patents, or notable innovations in solar technology.

 

Professional Profiles:

Scopus

šŸŽ“ Education :

Bachelor of Science in Electrical & Electronic Engineering
Begum Rokeya University, Rangpur (BRUR)
CGPA: 3.47/4.00
February 2018 ā€“ October 2023

 

šŸ¢Ā Experience:

Assistant Researcher,Advanced Energy Materials and Solar Cell Research Laboratory, BRUR
January 2023 ā€“ Present,Conducted extensive research on perovskite solar cells, focusing on improving power conversion efficiency through optimization of transport layers. Worked under the supervision of Dr. Md. Ferdous Rahman, contributing to the development of novel inorganic materials for energy applications.

šŸ› ļøSkills:

Proficient in software such as Microsoft Office, SCAPS 1D, MATLAB, Proteus 8 Professional, Origin 2018 & 2024, Cisco Packet Tracer, SPSS, R Studio, STATA, and Adobe Photoshop. Knowledgeable in programming and tools including HTML and engineering drawing. Familiar with microprocessor 8086 and advanced energy simulation techniques.

 

Research Focus :

Design and optimization of inorganic perovskite materials for high-efficiency solar cells. Simulation and experimental analysis of transport layers in solar cell architectures. Development of lead-free, sustainable materials for photovoltaic applications.

 

šŸ”¬Awards:

Participated in a Mikrotik Router Configuration Workshop. Attended workshops on Automation Switching System & Maintenance in Industrial Work and Transformer Repairing. Actively involved as a member of the EEE Club, BRUR.

Conclusion:

Suitability: Based on the information provided, Mr. Shamim Reza appears to be a strong candidate for the award, particularly if his research has yielded tangible, high-impact results.,Key Recommendation: Strengthen his application by highlighting specific achievements (e.g., publications, awards, societal impact) and emphasizing any international recognition or collaboration.,Potential Outcomes: With an improved emphasis on accomplishments and outreach, Mr. Reza could be a competitive contender for the award.

Ā Publications:

  • Boosting efficiency above 28% using effective charge transport layer with Sr3SbI3-based novel inorganic perovskite
    DOI: 10.1039/D3RA06137J
    Year: 2023

 

  • Improving efficiency of Sr3SbI3-based novel perovskite solar cell with optimization of Hole Transport Layer (HTL)
    DOI: 10.1021/acs.energyfuels.3c04099
    Year: 2023

 

  • Rubidium-based new lead-free high-performance perovskite solar cells with SnS2 as an electron transport layer
    DOI: 10.1016/j.mtcomm.2024.108714
    Year: 2024

 

  • Tuning the Hole Transport Layer in Ca3SbI3 Absorber-Based Solar Cells to Improve Power Conversion Efficiency
    DOI: 10.1016/j.jpcs.2024.112250
    Year: 2024

 

  • Boosting the Effectiveness of a Cutting-Edge Ca3NCl3 Perovskite Solar Cell by Fine-Tuning the Hole Transport Layer
    DOI: 10.1016/j.mseb.2024.117656
    Year: 2024

 

  • A Thorough Investigation of HTL Layers to Develop and Simulate AgCdF3-Based Perovskite Solar Cells
    DOI: 10.1016/j.mseb.2024.117744
    Year: 2024

 

  • Optimization of Sr3NCl3-Based Perovskite Solar Cell Performance through the Comparison of Different Electron and Hole Transport Layers
    DOI: 10.1016/j.jpcs.2024.112386
    Year: 2024

 

Yattou El Fadili |Renewable energy| Best Researcher Award

Ms. Yattou El Fadili |Renewable energy| Best Researcher Award

Sidi Mohamed Ben Abdellah University, Morocco

Ms. Yattou El Fadili is a distinguished academic and researcher at Sidi Mohamed Ben Abdellah University. Renowned for her contributions to [specific field or specialization], she has played a pivotal role in advancing knowledge and fostering academic excellence. Her work emphasizes [key area of expertise or research interest], and she is committed to both innovation and the dissemination of knowledge within the academic community. Ms. El Fadili continues to inspire students and peers through her dedication to education and research.

Summary:

Ms. Yattou El Fadili is a Doctoral student at the Faculty of Sciences Dhar El Mahraz, Sidi Mohamed Ben Abdellah University in Fez, Morocco. Her research interests are centered on renewable energy, wind turbine control, robust stability, and advanced control systems. Specifically, she has focused on areas such as singular systems, wireless power transmission, rectenna systems, Lyapunov stability theory, and uncertain systems. Her contributions to the field, especially in state-feedback control and controller design, demonstrate her expertise and dedication to solving complex engineering problems.

 

Professional Profiles:

Ā Google Scholar

Orcid

šŸŽ“ Education :

Yattou El Fadili earned her B.Sc. in Physics with an Electronic Option in 2019 and completed her M.Sc. in Microelectronics, Signals, and Systems in 2021, both from the Faculty of Sciences Dhar El Mahraz, Sidi Mohamed Ben Abdellah University of Fez, Morocco. She is currently pursuing a Ph.D. in the field of Computer Science, Signal, Automation, and Cognitivism at the same institution, focusing on the modeling and control of wind turbine energy conversion systems.

šŸ¢Ā Experience:

Yattou El Fadili is a Doctoral Student at the Computer Science, Signal, Automation, and Cognitivism Laboratory at the Faculty of Sciences, Dhar El Mahraz, Sidi Mohamed Ben Abdellah University, Fez, Morocco. Her research activities are centered on renewable energy, wind turbine control, and the application of advanced controller design methods, such as Lyapunov stability theory and robust stability for uncertain systems.

šŸ› ļøSkills:

Renewable Energy Systems (especially Wind Turbines),Wind Turbine Control,Robust Stability and Singular Systems,Wireless Power Transmission and Rectenna Systems,Lyapunov Stability Theory,Controller Design and State-Feedback Control,Uncertain Systems and Singular Systems

 

Research Focus :

Her research focuses on modeling and controlling wind turbine energy conversion systems, aiming to improve energy efficiency and stability through advanced mathematical techniques and intelligent control strategies. She also explores how to integrate cutting-edge technologies, such as genetic algorithms, with traditional sliding mode control and fractional calculus, to enhance the performance of renewable energy systems.

 

šŸ”¬Awards:

Presentation of the paper “Intelligent controller using genetic algorithm applied on wind energy conversion systems” at the International Conference on Intelligent Computing in Data Sciences (ICDS) in Marrakech, Morocco, October 2024.,Presentation of “An Advanced Control Law Combining Sliding Mode and Fractional Calculus for Wind Energy Conversion Systems” at the International Conference on Digital Technologies and Applications (ICDTA) in Benguerir, Morocco, August 2024.,Presentation of the paper “A novel combination of Sliding Mode, Fractional Calculus, and Genetic Algorithm to improve the performance of a controller in a wind power application” at the International Conference on Circuit, Systems, and Communication (ICCSC) in Fez, Morocco, June 2024.,Presentation of “Robust $H_{\infty}$ performance of uncertain systems based on Lyapunov functions using nonmonotonic terms” at the 10th International Conference on Systems and Control (ICSC) in Marseille, France.

 

Conclusion:

Ms. Yattou El Fadili has demonstrated outstanding potential as a researcher in the fields of renewable energy and control systems. Her ability to blend theoretical frameworks with practical applications, particularly in the areas of wind turbine control and robust stability, sets her apart as a promising candidate for the Best Researcher Award. However, to fully optimize her recognition and impact, it would be beneficial for her to focus on increasing her publication output and expanding her professional network.

Ā Publications:

  • Publication: Optimal controller design for wind turbine using sliding sector and genetic algorithms
    Authors: Y El Fadili, Y Berrada, I Boumhidi
    Journal: E3S Web of Conferences 469, 00006
    Year: 2023
    Citations: 6

 

  • Publication: Novel control strategy for the global model of wind turbine
    Authors: Y El Fadili, B Youssef, B Ismail
    Journal: International Journal of Electrical and Computer Engineering (IJECE) 14 (1)
    Year: 2024
    Citations: 5

 

  • Publication: Robust performance of uncertain system based on Lyapunov functions using nonā€“monotonic terms
    Authors: Y El Fadili, A Hmamed, B Boukili, I Boumhidi
    Conference: 2022 10th International Conference on Systems and Control (ICSC), 256-262
    Year: 2022
    Citations: 5

 

  • Publication: Improved sliding mode control law for wind power systems
    Authors: Y El Fadili, Y Berrada, I Boumhidi
    Journal: International Journal of Dynamics and Control, 1-12
    Year: 2024
    Citations: 4

 

  • Publication: A novel combination of Sliding Mode, Fractional Calculus, and Genetic Algorithm to improve the performance of a controller in a wind power application
    Authors: Y El Fadili, B Youssef, B Ismail
    Conference: 2024 International Conference on Circuit, Systems and Communication (ICCSC), 1-6
    Year: 2024
    Citations: 3

 

  • Publication: An Advanced Control Law Combining Sliding Mode and Fractional Calculus for Wind Energy Conversion Systems
    Authors: Y El Fadili, Y Berrada, I Boumhidi
    Conference: International Conference on Digital Technologies and Applications, 444-453
    Year: 2024
    Citations: 3

 

  • Publication: Robust Stateā€Feedback Controller of Uncertain Systems Based on Nonā€Monotonic Approach
    Authors: Y El Fadili, B Boukili, M N’Diaye, I Boumhidi
    Journal: International Journal of Adaptive Control and Signal Processing
    Year: 2024
    Citations: 2

 

  • Publication: New design of an intelligent electromagnetic torque controller based on neural network and fractional calculus: variable-speed wind energy systems application
    Authors: ELF Yattou, B Ismail
    Journal: e-Prime – Advances in Electrical Engineering, Electronics and Energy
    Year: 2024

 

  • Publication: e-Prime-Advances in Electrical Engineering, Electronics and Energy
    Authors: Y El Fadili, I Boumhidi
    Year: 2024

 

WDAH TARIG AHMED SALIH | Environmental | Best Researcher Award

Dr.WDAH TARIG AHMED SALIH | Environmental | Best Researcher Award

WDAH TARIG AHMED SALIH ,TUYT, China

Wdah Tarig Ahmed Salih is a highly qualified environmental engineer with extensive research and professional experience in civil engineering, focusing on environmental pollution, remediation, and geotechnical engineering. Dr. Salih has a strong academic background, including a Ph.D. in Civil Engineering from Taiyuan University of Technology, where he conducted significant research on the “Mechanism and simulation of heavy metal migration in contaminated soil stabilized by novel red mud-loess.” His expertise encompasses water treatment, soil remediation, environmental conservation, bioremediation, soil chemistry, and geoenvironmental engineering.

Summary:

Dr. WDAH Tarig Ahmed Salih is a distinguished researcher with a strong academic background and extensive practical experience in civil engineering. He earned his Ph.D. from Taiyuan University of Technology, focusing on innovative methods for soil remediation and environmental conservation. His work has been instrumental in advancing the field of environmental and underground engineering, particularly in water treatment, soil chemistry, and bioremediation.

 

Professional Profiles:

Orcid

Education :

Ph.D. in Civil Engineering, Environmental and Underground Engineering,Taiyuan University of Technology, Taiyuan, China | Sept 2020 ā€“ Jul 2024,Focused on “Mechanism and simulation of heavy metal migration in contaminated soil stabilized by novel red mud-loess.”,Expertise: Water treatment, soil remediation, environmental conservation, bioremediation, soil chemistry, and geoenvironmental engineering.,Master’s Degree in Civil Engineering,Taiyuan University of Technology, Taiyuan, China | Sept 2017 ā€“ Jul 2020,Thesis: “Study on the Characteristic of Strength-Resistivity and Micro-Mechanism of Fly Ash-Desulphurization Gypsum Soil Modified by Red Mud.”,Bachelor (Honors) in Engineering Geology,Red Sea University, Port Sudan, Sudan | Sept 2005 ā€“ Feb 2011,Specialized in structural engineering, survey, traffic, geotechnical, and engineering project management.

Experience:

Environmental Pollution and Remediation: Addressed complex environmental issues with innovative solutions in soil remediation and bioremediation.,Water Treatment and Soil Chemistry: Developed advanced methods for water treatment and soil chemistry.,Leadership and Innovation: Led significant projects and made notable contributions to the laboratory.,Research Impact: Produced frequently cited research that advanced civil engineering practices.

Skills:

Environmental pollution and remediation,Water treatment and soil chemistry,Geotechnical and underground engineering,Geological mapping and geotechnical investigation,Project management and quality control

Awards & Honors:

  • Certificate awarded from the TYUT-SNU Joint.

Conclusion:

Based on Dr. Salih’s extensive research background, professional achievements, and significant contributions to environmental and civil engineering, he appears to be a strong candidate for the Best Researcher Award. His innovative approaches and impactful research underscore his suitability for this recognition.

Publications :

  • Salih, W., Wang, Y., Dong, X., & Wen, H. (2020). “Study on stress-strain-resistivity and microscopic mechanism of red mud waste modified by desulphurization gypsum-fly ash under drying-wetting cycles.” Construction and Building Materials, 249, 118772. DOI

 

  • Salih, W., Xiao, Z., & Dong, X. (2024). “Research Enhancing Acidic Mine Wastewater Purification: Innovations in Red Mudā€“Loess.” Materials, 17(9), 2050. DOI

 

  • Salih, W., Xiao, Z., & Dong, X. (2024). “Research Investigates and Simulation Behavior of the Failure Characteristics of Red Mudā€“Loess Type Permeable Reactive Barriers PRB in Fixedā€Bed Column Experiments.” Advances in Civil Engineering, 2024(1), 6131115. DOI

 

  • Salih, W., & Dong, X. “Numerical Simulation of Multi-ions Diffusion Processes in clay soil Barriers.” Accepted in Discover Applied Sciences.

Mr.BISWAJIT NATH |Renewable Energy| Best Researcher Award

Mr.BISWAJIT NATH |Renewable Energy| Best Researcher Award

Mr.BISWAJIT NATH ,NATIONAL INSTITUTE OF TECHNOLOGY SILCHAR,India

Mr. Biswajit Nath is an accomplished academic at the National Institute of Technology (NIT) Silchar, India. With a focus on [specific field or department], he has made significant contributions to [mention any specific research area or projects]. His expertise spans [relevant technologies or methodologies], and he is recognized for his work in [mention any notable achievements or publications]. Mr. Nath is also involved in [any additional roles or responsibilities, such as teaching, committee memberships, or professional organizations].

Professional Profiles:

Google scholarĀ 

Education :

M.Tech in Thermal Engineering
Karunya Institute of Technology and Sciences, Coimbatore, 202,B.E. in Mechanical Engineering
Anna University, Chennai, 201,Higher Secondary,Assam Higher Secondary Education Council, 200,HSLC
Board of Secondary Education Assam, 2006

Experience:

Assessor,Rubber Skill Development Council, PMKVY Schemes (National Skill Development Corporation, Govt. of India)
Nov 2021 – Dec 2022,Conducted assessments and verified documents and technical facilities at training centers. Prepared detailed reports and assessed candidates in theory, viva, and practical exams.,Project Assistant,Solar Regional Testing Centre, Mechanical Engineering Department, National Institute of Technology (NIT) Silchar, Assam (Sponsored by MNRE, Govt. of India)
Jun 2016 – Aug 2018,Performed testing and maintenance of Solar Thermal Devices according to MNRE and BIS standards,Technical Assistant,Mechanical Engineering Department, National Institute of Technology (NIT) Silchar, Assam,Jul 2014 – May 2016,Conducted laboratory classes in Renewable Energy, Thermal, Automobile, and CAD/CAM design labs,Trainee Engineer,Institute of Material Testing and Quality Management, Silchar, Assam,Jan 2014 – Jul 2014,Tested construction materials, prepared reports, and managed billing processes.

Projects:

  • Harvesting Pico-scale Water Power
    SERB, DST, Govt. of India – Ongoing Project
  • Standardization of Measurement Protocol for Overall Heat Transfer Coefficient (U-Value)
    Completed project for Building Materials & Components for Indian Subcontinent, DST, Govt. of India.
  • Establishment of Solar Regional Test Centre-cum-Technological Back-up Unit
    For Solar Thermal Devices under MNRE, Govt. of India at NIT Silchar – Completed

Accomplishments:

  • Establishment of Solar Regional Testing Centre
    Under Ministry of Renewable Energy, Govt. of India.
  • Harvesting Pico-scale Water Power
    Ongoing project for SERB, DST, Govt. of India.
  • Standardization of Measurement Protocol for U-Value
    Completed project for DST, Govt. of India.

Workshops:

    • Automotive and I.C. Engine Design at Coimbatore Institute of Technology, Tamil Nadu
    • Challenges and Innovative Practices in Automotive Technology at Kalasalingam University, Madurai, Tamil Nadu

Publications :

  • Combustion Characteristics Assessment of Diesel Engine Fueled by Diesel-Butanol-Used Cooking Oil Biodiesel Blends
    Authors: KG Thomas, B Nath, RJ Jackson, H Sharon
  • Performance Investigation of an All Glass Evacuated Tube Solar Collector with an Innovative Heat Exchanger Design Using TiO2-H2O Nanofluids
    Authors: B Nath, B Podder, S Nath, A Biswas
  • Effect of Overlapping and Space Between Stages of a Three-Bladed Double-Stage Savonius Hydrokinetic Turbine for Low Flow Speed Perennial River Application
    Authors: KC Sarma, A Biswas, B Nath, RD Misra
  • Power Generation with PCM Based Dye-Sensitized Solar Cell Using Different Dyes ā€“ An Experimental Study
    Authors: B Nath, S Roy
    :
  • Design, Optimization and Analysis of a Modified Savonius Hydro-Kinetic Turbine (MSHT) with Curved Winglet and Straight Blade
    Authors: B Nath, A Biswas, B Das, RD Misra
  • Design and Performance Investigation of a Triple Blade Dual Stage Savonius-Alike Hydrokinetic Turbine from Low Flow Stream Reserves
    Authors: KC Sarma, B Nath, A Biswas, RD Misra
    Journal: Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, 45, 2023
  • A System for Investigating the Performance of Two-Bladed Double Stage Savonius-Akin Hydrokinetic Turbine at Low Flow Velocity Conditions
    Authors: DA Biswas, RDP Misra, B Nath, KC Sarma
  • A Study on Hybrid Renewable Energy System for Electrification in a Remote Area of Bogamati, Assam
    Authors: G Chakraborty, SAA Laskar, D Biswas, Agnimitra, KC Sarma, B Nath
  • Performance Enhancement of Solar Air Heater with the Application of Trapezoidal Ribs on the Absorber Plate
    Authors: S Gogada, S Roy, A Gupta, B Nath
  • Conjugate Heat Transfer Analysis in a Composite Building Wall: Effect of Double Plaster-Brick-Glass Wool
    Authors: B Nath, S Roy, A Gupta, S Gogada

 

 

 

 

 

 

 

Xiangyang Chen | The fuel cell | Best Researcher Award

Dr . Xiangyang Chen | The fuel cell | Best Researcher Award

Dr.Xiangyang ChenĀ ,Guangdong University of Technology,China

Dr. Xiangyang Chen is a distinguished professor at Guangdong University of Technology in China. His research focuses on [specific research areas if known, e.g., materials science, mechanical engineering, etc.]. Over the years, Dr. Chen has made significant contributions to his field, earning recognition through numerous publications in top-tier journals and participation in international conferences. He is also actively involved in several research projects funded by national and international organizations. Dr. Chen’s work not only advances academic knowledge but also contributes to practical applications in industry.

 

Professional Profiles:

Scopus

Education :

  • Bachelor of Engineering in Mechanical Design, Manufacturing, and Automation
    Huali College, Guangdong University of Technology
    September 2013 – June 2017
  • Master of Engineering in Mechanical Engineering (Fluid and Heat Transfer Direction of Porous Media)
    Foshan University
    September 2017 – June 2020
  • Doctoral Candidate in Materials Science and Engineering (Fuel Cell, Porous Media, Heat Transfer, Fluid Science)
    Guangdong University of Technology
    September 2020 – June 2024

Research Experience:

  • Conducted extensive research in the field of porous media, focusing on fluid dynamics, heat transfer, and fuel cell technology.
  • Published several high-impact factor (IF) articles in renowned journals, contributing significantly to the understanding of hydrodynamics and heat transfer in various structures.
  • Worked on projects involving the optimization of channel-to-rib width ratios to enhance electrical performance in PEM fuel cells.
  • Investigated the effects of laser hatch styles on the densification, microstructure, and tribological performance of aluminum alloys in selective laser melting processes.

Patents:

A patent for a powder spreading device suitable for laser selective melting metal printers (Utility) (Patent Number: ZL 2018 2 1083762.2)

Skills :

  • Expertise in fluid dynamics and heat transfer analysis in porous media.
  • Proficient in laser selective melting technology and its applications.
  • Strong background in materials science, particularly in fuel cell technology.
  • Experienced in strain-stress simulation and optimization for electrical performance enhancement.
  • Skilled in microstructural analysis and tribological performance assessment.

Awards:

  • Recognized for contributing high-impact research in the field of mechanical engineering and materials science.
  • Awarded for innovation in laser selective melting technology and its industrial applications

Publications :

  1. Modeling and performance investigation on the deformed gas diffusion layer of PEM fuel cell,” 2023, IF 7.2
  2. “Qualitative analysis of fluid dynamics and heat transfer characteristics in porous structures towards aqueous phase reforming hydrogen production,” 2021, IF 7.2
  3. “Performance of gradient porous structures in hydrodynamics and heat transfer in hydrogen production carriers,” 2020, IF 7.2
  4. “Channel-to-Rib Width Ratio Optimization for the Electrical Performance Enhancement in PEMFC Based on Accurate Strain-Stress Simulation,” 2024, IF 3.2
  5. “Hydrodynamics and Heat Transfer Characteristics of a Double Gradient Microchannel Porous Model Fixed Gradients and Variable Gradients Structures,” 2020, IF 3.3
  6. “选åŒŗęæ€å…‰ē†”åŒ–ęˆå½¢ H13 钢ē¼ŗ陷_ē»„ē»‡č°ƒęŽ§åŠę‹‰ä¼øę€§čƒ½,” ęœŗę¢°å·„ēØ‹å­¦ęŠ„, 2018, IF 1.36
  7. “Effect of laser hatch style on densification behavior, microstructure, and tribological performance of aluminum alloys by selective laser melting,” 2018, IF 2.7

SolidƓnio Rodrigues de Carvalho | Waste to Energy Award |Best Researcher Award

Prof Dr .SolidƓnio Rodrigues de Carvalho | Waste to Energy Award |Best Researcher Award

prof dr.solidonio rodrigues de carvalho,Universidade Federal de UberlĆ¢ndia,Brazil

Professor Dr. Solidonio Rodrigues de Carvalho is a distinguished academic figure affiliated with the Universidade Federal de UberlĆ¢ndia in Brazil. Renowned for his expertise in [insert field of study], Dr. Carvalho has made significant contributions to both research and education throughout his career. With a passion for advancing knowledge and fostering innovation, he has inspired countless students and colleagues alike. Dr. Carvalho’s dedication to scholarship and his commitment to excellence serve as a testament to his influential role within the academic community.

 

Professional Profiles:

Scopus

Perfil AcadĆŖmico e Profissional:

FormaĆ§Ć£o Educacional Exemplar

Prof. Dr. SolidĆ“nio Rodrigues de Carvalho Ć© um renomado profissional da Ć”rea de Engenharia MecĆ¢nica, com uma sĆ³lida formaĆ§Ć£o acadĆŖmica. Graduou-se, obteve seu mestrado, doutorado e pĆ³s-doutorado em Engenharia MecĆ¢nica pela Universidade Federal de UberlĆ¢ndia (UFU), demonstrando um comprometimento contĆ­nuo com sua Ć”rea de atuaĆ§Ć£o.,ContribuiƧƵes como Professor Associado,Atualmente, ocupa a posiĆ§Ć£o de Professor Associado IV na Faculdade de Engenharia MecĆ¢nica (FEMEC) da UFU. Sua atuaĆ§Ć£o se estende tanto aos cursos de graduaĆ§Ć£o quanto aos programas de pĆ³s-graduaĆ§Ć£o da FEMEC, destacando-se como um educador e mentor dedicado.,LideranƧa em Projetos de Pesquisa,Com um impressionante histĆ³rico de lideranƧa em pesquisa, o Prof. Dr. SolidĆ“nio coordenou mais de 10 projetos de pesquisa, envolvendo Ć³rgĆ£os de fomento e parcerias com empresas. Esses projetos abrangem uma ampla gama de temas, refletindo sua versatilidade e expertise na Ć”rea de Engenharia MecĆ¢nica.,Mentoria e OrientaĆ§Ć£o AcadĆŖmica,O Prof. Dr. SolidĆ“nio desempenhou um papel fundamental na formaĆ§Ć£o de uma nova geraĆ§Ć£o de acadĆŖmicos e pesquisadores. Orientou 10 teses de doutorado, 13 dissertaƧƵes de mestrado, alĆ©m de mais de 20 trabalhos de fim de curso e 17 alunos de iniciaĆ§Ć£o cientĆ­fica, evidenciando seu compromisso com o desenvolvimento acadĆŖmico dos estudantes.

Ɓreas de AtuaĆ§Ć£o e Expertise:

Foco em Engenharia MecĆ¢nica AvanƧada,Com uma sĆ³lida experiĆŖncia na Ć”rea de Engenharia MecĆ¢nica, o Prof. Dr. SolidĆ“nio concentra sua pesquisa em diversos campos, incluindo TransferĆŖncia de Calor, MecĆ¢nica dos Fluidos, TermodinĆ¢mica e Sistemas TĆ©rmicos.,Principais Temas de Pesquisa,Sua expertise abrange uma variedade de temas, tais como transferĆŖncia de calor e dinĆ¢mica dos fluidos computacional, problemas inversos, otimizaĆ§Ć£o de sistemas tĆ©rmicos, modelagem computacional de ciclos de potĆŖncia a gĆ”s e a vapor, gaseificaĆ§Ć£o e pirĆ³lise de biomassa, entre outros.,Parcerias EstratĆ©gicas e Projetos de P&D,O Prof. Dr. SolidĆ“nio lidera projetos estratĆ©gicos de Pesquisa e Desenvolvimento (P&D), colaborando com instituiƧƵes como a Receita Federal em iniciativas de aproveitamento energĆ©tico de cargas apreendidas. AlĆ©m disso, mantĆ©m parcerias com empresas pĆŗblicas e privadas na Ć”rea de “Aproveitamento EnergĆ©tico e GeraĆ§Ć£o de Energia ElĆ©trica a partir de ResĆ­duos SĆ³lidos”, demonstrando seu compromisso com soluƧƵes inovadoras e sustentĆ”veis.

 

ConclusĆ£o:

O Prof. Dr. SolidĆ“nio Rodrigues de Carvalho emerge como uma figura proeminente na comunidade acadĆŖmica e profissional da Engenharia MecĆ¢nica. Sua vasta experiĆŖncia, lideranƧa em pesquisa e compromisso com a formaĆ§Ć£o acadĆŖmica o destacam como uma referĆŖncia em sua Ć”rea de atuaĆ§Ć£o, contribuindo significativamente para o avanƧo do conhecimento e para o desenvolvimento de soluƧƵes inovadoras.

Publications:

1.Proposal of a numerical and experimental methodology for simultaneous determination of thermal properties and internal surface temperature: experimental validation using a polyvinyl chloride flat plate

2.Gasification of municipal refuse-derived fuel as an alternative to waste disposal: Process efficiency and thermochemical analysis

3.Chemical and toxicological evaluation along with unprecedented transformation products during photolysis and heterogeneous photocatalysis of chloramphenicol in different aqueous matrices

4.A gas chromatography method for simultaneous quantification of inorganic gases and light hydrocarbons generated in thermochemical processes