Josue Enriquez Zarate | Energy | Best Research Article Award

Dr. Josue Enriquez Zarate | Energy | Best Research Article Award

Investigador at AP ENGINEERING INNOVACIÓN TECNOLÓGICA EN ENERGÍAS S.A DE C.V , Mexico

Josué Enríquez-Zárate is an accomplished researcher and engineer with expertise in structural control applied to wind turbine systems. He holds a Ph.D. in Mechanical Design from the National Autonomous University of Mexico and completed postdoctoral research focused on diagnostic systems for structural damage in wind turbines. Currently serving as CEO at AP Engineering in Oaxaca, Mexico, Josué leads innovative projects in wind energy, including dynamic structure analysis and wind farm sizing. His extensive teaching experience across several Mexican universities complements his industrial roles, which have involved advanced design and structural analysis for wind turbine and PV systems. With numerous indexed publications, Josué’s research spans mechanical and electronic system design, vibration control, and real-time computational applications, earning him recognition within Mexico’s National System of Researchers.

Profile

Scopus Profile

Education

Josué Enríquez-Zárate has a solid educational background in engineering, with an emphasis on mechanical design, control systems, and mechatronics. He holds a Ph.D. in Mechanical Design from the National Autonomous University of Mexico (UNAM), where he focused on developing a rangefinder for mobile robotics under Dr. Ernst Kussul Mihailovich’s supervision. Prior to his doctorate, he earned a Master’s degree in Electrical Engineering with a specialization in Mechatronics from the Research and Advanced Studies Center (CINVESTAV) at the National Polytechnic Institute in Mexico, where he worked on trajectory tracking and vibration control under Dr. Gerardo Silva-Navarro and Dr. Hebertt Sira-Ramírez. Additionally, he completed a Cybernetic Engineering degree at Universidad del Sol, Cuernavaca, Morelos. Postdoctoral research at Universidad de los Andes in Chile and CINVESTAV further refined his expertise in structural diagnostics for wind turbines and vibration control in mechanical structures. His educational journey reflects a comprehensive grounding in theoretical and applied aspects of engineering, particularly in dynamic systems and control.

Experience

Dr. Josué Enríquez-Zárate is a highly experienced researcher and engineer specializing in structural control, wind energy, and mechanical design. With a robust educational background, including a Ph.D. in Mechanical Design and two post-doctorates in structural control and diagnostic systems, he has contributed to advanced projects across multiple domains. His professional experience includes leadership as CEO of AP Engineering, where he focused on wind turbine technologies, as well as significant roles in academia, such as full research professor and researcher at institutions like the Instituto Tecnológico de Tuxtla Gutiérrez and the Panamericana University. Dr. Enríquez-Zárate has also collaborated with industry giants like Vestas and Ingeteam on wind turbine maintenance and structural design, applying expertise in ANSYS, MATLAB, and LabVIEW, and leveraging advanced skills in real-time control systems, machine learning, and computational modeling. His research output includes numerous ISI-indexed publications and book chapters, focusing on vibration control, structural health monitoring, and mechatronic systems, positioning him as a recognized authority in sustainable energy structures and mechanical systems control.

Research Interest

Josué Enríquez-Zárate’s research focuses on the structural dynamics and control of mechanical systems, specifically wind turbines and building-like structures. His work involves passive, semi-active, and active vibration control to enhance stability and resilience in these systems. Additionally, he has developed diagnostic and monitoring systems to detect structural damage, particularly for wind turbine blades, contributing to their longevity and efficiency. His expertise also includes the dynamic analysis of structures using advanced computational tools like ANSYS-FLUENT CFD and Windographer, supporting optimal wind farm design and control systems for improved performance in real-world applications.

Publications

  • Optimization of vibration control using a hybrid scheme with sliding-mode and positive position feedback
    • Authors: Enríquez-Zárate, J., Gómez-Peñate, S., Hernández, C., Velázquez, R., Trujillo, L.
    • Year: 2024
    • Citations: 0
  • Vibration Control Using a Positive Position Feedback-based Predictive Controller Applied to a One-Bay Three-Story Scaled Shear Frame
    • Authors: Aguilar-Álvarez, P., Valencia-Palomo, G., Enríquez-Zárate, J., Morales-Valdez, J., Hernández-González, O.
    • Year: 2023
    • Citations: 4
  • Drive-train Third Stage-based Simplified Dynamic Modeling of a Wind Turbine Oriented to Vibration Analysis
    • Authors: Jiménez-Santín, D., Cerrada, M., Enríquez-Zárate, J., Cabrera, D., Sánchez, R.-V.
    • Year: 2023
    • Citations: 0
  • Efficient predictive vibration control of a building-like structure
    • Authors: Enríquez-Zárate, J., Valencia-Palomo, G., López-Estrada, F.-R., Silva-Navarro, G., Hoyo-Montaño, J.A.
    • Year: 2020
    • Citations: 6
  • Design of a state observer type Luenberger: Used in a cantilever beam | Diseño de un observador de estado tipo Luenberger: Aplicado a una viga en voladizo
    • Authors: Bermudez-Rodriguez, J.I., Hernandez De Leon, H.R., Velazquez-Trujillo, S., Escobar Gomez, E.N., Enriquez-Zarate, J.
    • Year: 2020
    • Citations: 0

Conclusion

Dr. Josué Enríquez-Zárate is a strong candidate for the Best Researcher Award, given his impactful contributions to structural control, renewable energy systems, and his extensive experience in research and industry. His demonstrated dedication, through significant academic and industrial accomplishments, aligns well with the award’s criteria. Addressing the outlined areas for improvement could further enhance his profile as a global researcher.

Nasrin Nemati | Energy Technology | Best Researcher Award

Ms. Nasrin Nemati | Energy Technology | Best Researcher Award

Ph.D., Chalmers University of Technology, Sweden

Dr. Nasrin Nemati, recipient of the Best Researcher Award in Energy Technology, holds a Ph.D. from Chalmers University of Technology in Sweden. 🏆 Her pioneering work in the field has garnered widespread recognition for its innovation and impact. Dr. Nemati’s research delves into cutting-edge advancements in energy technology, addressing critical challenges and pushing the boundaries of knowledge. 🌱 With her expertise and dedication, she continues to contribute significantly to the advancement of sustainable energy solutions, inspiring colleagues and shaping the future of the field. Dr. Nemati’s achievements stand as a testament to her exceptional talent and commitment to excellence.

Profile

Scopus

Current Position

During her Ph.D. journey from October 2019 to 2024 at Chalmers University of Technology in Sweden 🎓, Nasrin Nemati delved deep into the Division of Energy Technology within the Department of Space, Earth, and Environment 🌍. Her research tenure was marked by rigorous exploration into innovative areas such as packed-fluidized bed and confined fluidization, alongside investigating negative CO2 emissions and chemical looping combustion 🔥. As a Ph.D. scholar, she not only contributed to cutting-edge research but also engaged in teaching activities 📚, enriching the academic environment. Nasrin’s tenure exemplifies dedication to advancing sustainable energy solutions and pushing the boundaries of scientific understanding.

Education

Nasrin Nemati’s academic journey began at Shahid Bahonar University of Kerman in Iran 📚, where she pursued her Bachelor’s degree in Chemical Engineering from 2007 to 2011, graduating with a remarkable GPA of 17.71 out of 20 🎓. She then continued her pursuit of knowledge at Tehran University, where she earned her Master’s degree in Chemical Engineering from 2011 to 2013, achieving an outstanding GPA of 18.57 out of 20 🎓. Her academic achievements reflect her passion for the field and her commitment to excellence in her studies, laying a solid foundation for her subsequent research endeavors and professional growth.

Research Interests

Nasrin Nemati embarked on her academic journey at Shahid Bahonar University of Kerman in Iran 📚, pursuing a Bachelor’s degree in Chemical Engineering from 2007 to 2011. With diligence and dedication, she graduated with a remarkable GPA of 17.71 out of 20 🎓. Continuing her pursuit of knowledge, she furthered her education at Tehran University, where she obtained her Master’s degree in Chemical Engineering from 2011 to 2013, achieving an outstanding GPA of 18.57 out of 20 🎓. Her academic achievements attest to her unwavering passion for the field and her unwavering commitment to academic excellence, setting a strong foundation for her subsequent research pursuits and professional endeavors.

Awards

Nasrin Nemati’s academic journey began at Shahid Bahonar University of Kerman in Iran 📚, where she pursued a Bachelor’s degree in Chemical Engineering from 2007 to 2011. With diligence and dedication, she graduated with a remarkable GPA of 17.71 out of 20 🎓. Continuing her pursuit of knowledge, she furthered her education at Tehran University, where she obtained her Master’s degree in Chemical Engineering from 2011 to 2013, achieving an outstanding GPA of 18.57 out of 20 🎓. Her academic achievements attest to her unwavering passion for the field and her unwavering commitment to academic excellence, setting a strong foundation for her subsequent research pursuits and professional endeavors.

Publications Top Notes

Investigation of the hydrodynamics of packed-fluidized beds: Characterization of solids flux

Year: 2023

Citations: 2

Chemical Looping Combustion in a Packed Fluidized Bed Reactor─Fundamental Modeling and Batch Experiments with Random Metal Packings

Year: 2022

Citations: 3

Chemical-looping combustion in packed-fluidized beds: Experiments with random packings in bubbling bed

Year: 2021

Citations: 6

Experimental Investigation of the Effect of Random Packings on Heat Transfer and Particle Segregation in Packed-Fluidized Bed

Year: 2021

Citations: 5