Tibor Krenicky | Safety | Best Researcher Award

Assoc Prof Dr. Tibor Krenicky | Safety | Best Researcher Award

Associate Professor at Technical University of Košice, Slovakia

Assoc. Prof. Dr. Tibor Krenicky is an esteemed academic and researcher currently serving as an Associate Professor at the Faculty of Manufacturing Technologies in Presov, Slovakia. He graduated with a degree in Physics from Comenius University in Bratislava in 1999 and completed his PhD in 2005 at the Institute of Experimental Physics of the Slovak Academy of Sciences. With over 18 years of teaching experience, he has been a key member of the Technical University of Kosice since 2005, also serving as Deputy Head of his department for 12 years. Dr. Krenicky’s research focuses on the simulation, determination, and evaluation of operating parameters and operational status of technical materials and systems, utilizing multiparametric monitoring and virtual instrumentation. He has actively participated in numerous national and international research projects, fostering knowledge exchange and collaboration. Additionally, he is an editorial board member for various international scientific journals and is involved in professional organizations such as the European Alliance for Innovation and the Slovak Physical Society. His contributions to research and education have firmly established him as a respected figure in his field.

Education:

Assoc. Prof. Dr. Tibor Krenicky graduated with a degree in Physics from the Faculty of Mathematics and Physics at Comenius University in Bratislava, Slovakia, in 1999. He further advanced his studies by completing a PhD in 2005 at the Institute of Experimental Physics of the Slovak Academy of Sciences and the Faculty of Natural Sciences at UPJS in Kosice, where he was part of the Centre of Excellence NANOSMART. His robust educational foundation in experimental physics equips him with the expertise necessary to excel in research and academia.

Professional Experience:

Assoc. Prof. Dr. Tibor Krenicky has a distinguished professional background in academia and research. He began his teaching career in 2005 at the Technical University of Kosice, Slovakia, where he has since made significant contributions to the field of manufacturing technologies. Currently, he holds the position of Associate Professor at the Faculty of Manufacturing Technologies in Presov, where he is actively involved in the Department of Technical Devices Design and Monitoring. Dr. Krenicky served as the Deputy Head of his department for 12 years, during which he played a pivotal role in enhancing the educational and research environment. His expertise lies in the simulation, determination, and evaluation of operating parameters and operational status of technical materials and systems, employing multiparametric monitoring and virtual instrumentation. He has been instrumental in designing and implementing experimental devices for the diagnostics of technical systems. Dr. Krenicky’s extensive involvement in various national and international research projects further underscores his commitment to advancing knowledge and fostering collaboration in his field.

Research Interests:

Assoc. Prof. Dr. Tibor Krenicky’s research interests encompass a wide range of topics within the fields of physics and engineering, particularly focusing on the simulation, determination, and evaluation of operating parameters and operational status of technical materials and systems. He employs multiparametric monitoring and virtual instrumentation techniques to enhance the performance and reliability of technical devices. Dr. Krenicky is dedicated to the design and implementation of experimental devices for the diagnostics of technical systems, aiming to improve the efficiency and accuracy of measurements in various engineering applications. His active participation in numerous national and international research projects reflects his commitment to advancing the field of manufacturing technologies and supporting knowledge exchange and collaboration on a global scale. Through his research, he seeks to address complex challenges in technical diagnostics and contribute to the development of innovative solutions for real-world applications.

Skills:

Assoc. Prof. Dr. Tibor Krenicky possesses a robust skill set that bridges theoretical knowledge and practical application in physics and engineering. His expertise includes advanced simulation techniques, multiparametric monitoring, and virtual instrumentation, which are essential for evaluating and optimizing the performance of technical materials and systems. Dr. Krenicky is adept at designing and implementing experimental devices for technical diagnostics, demonstrating his strong engineering skills and innovative problem-solving abilities. Additionally, his extensive experience in managing research projects and collaboration with international teams highlights his leadership and communication skills. His editorial roles with multiple scientific journals showcase his commitment to scholarly excellence and his ability to critically evaluate research contributions in his field. Overall, Dr. Krenicky’s diverse skill set positions him as a valuable contributor to advancements in manufacturing technologies and technical diagnostics.

Conclusion:

Assoc. Prof. Dr. Tibor Krenicky’s extensive academic background, research contributions, leadership roles, and editorial responsibilities position him as a highly qualified candidate for the Research for Best Researcher Award. His dedication to advancing knowledge and supporting international cooperation in the scientific community makes him a deserving recipient of this recognition.

Publication Top Noted:

Implementation of Virtual Instrumentation for Machinery Monitoring

  • Journal: Scientific Papers: Operation and Diagnostics of Machines and Production Systems
  • Cited By: 90
  • Year: 2011

Improved Soft Magnetic Behaviour in Field-Annealed Nanocrystalline Hitperm Alloys

  • Journal: Journal of Magnetism and Magnetic Materials
  • Cited By: 84
  • Year: 2006

Nanocrystalline Cu-Free HITPERM Alloys with Improved Soft Magnetic Properties

  • Journal: Physica Status Solidi (a)
  • Cited By: 51
  • Year: 2003

Monitoring of Vibrations in the Technology of AWJ

  • Journal: Key Engineering Materials
  • Cited By: 48
  • Year: 2012

Non-Contact Study of Surfaces Created Using the AWJ Technology

  • Journal: Manufacturing Technology
  • Cited By: 43
  • Year: 2015

Diagnostics of Production Systems Operation Based on Thermal Processes Evaluation

  • Journal: Applied Mechanics and Materials
  • Cited By: 43
  • Year: 2013

Implementation of Virtual Instrumentation for Multiparametric Technical System Monitoring

  • Conference: SGEM 13th International Multidisciplinary Scientific Geoconference
  • Cited By: 40
  • Year: 2013

Haihui Xin | Safety Technology Management | Best Researcher Award

Prof. Haihui Xin, Safety Technology Management, Best Researcher Award


Professor at China University of Mining and Technology, China

Prof. Haihui Xin is a prominent scholar specializing in Safety Engineering and Safety Science and Engineering. He completed his Bachelor’s degree in Safety Engineering from China University of Mining and Technology, Xuzhou, followed by a Doctoral degree in Safety Science and Engineering from the same institution. Additionally, he pursued a program in Mining Engineering at The Pennsylvania State University, USA. Prof. Xin’s research focuses on the combustion characteristics of coal fires, rekindling phenomena, and organic residual pollution control. He has made significant contributions to the field, publishing numerous academic papers, securing patents, and winning prestigious awards for his scientific and technological advancements. His work not only enhances safety in coal mine production but also contributes to ecological environment management.

Profile:

Education:

Bachelor’s Degree:

  • Institution: China University of Mining and Technology, Xuzhou
  • Major: Safety Engineering
  • Duration: September 2006 – June 2010

Doctoral Degree:

  • Institution: China University of Mining and Technology, Xuzhou
  • Major: Safety Science and Engineering
  • Duration: September 2010 – June 2016

Additional Education:

  • Institution: The Pennsylvania State University, USA
  • Major: Mining Engineering
  • Duration: September 2014 – January 2016
  • Status: Completed

Professional Experience:

Prof. Haihui Xin has a rich professional experience spanning various roles in academia and research. He began his career as a young scholar, specializing in the combustion characteristics of coal fires, rekindling phenomena, and organic residual pollution control. Throughout his career, he has been actively engaged in frontline research and engineering projects related to coal fires and gangue management. His notable contributions include managing extensive fire areas and gangue mountains at Gushuyuan Coal Mine, where he applied innovative techniques and methodologies to ensure safety and environmental sustainability. Prof. Xin has authored and published over 80 academic papers in leading industry journals, demonstrating his expertise and commitment to advancing knowledge in his field. Additionally, he has successfully obtained numerous Chinese and international invention patents, showcasing his innovative approach to solving complex challenges in safety science and engineering. Prof. Xin’s achievements also extend to winning several provincial and ministerial-level scientific and technological awards, recognizing his significant contributions to scientific advancement and practical solutions in the coal mining industry. In his role as a researcher and scholar, Prof. Xin has not only expanded the understanding of coal fire dynamics but has also developed practical strategies for prevention, control, and environmental protection. His dedication to research, coupled with his leadership in project management and academic excellence, makes him a distinguished figure in the field of safety engineering and environmental management.

Research Interest:

Coal Fire Dynamics: Investigating the mechanisms and dynamics of coal fires, including spontaneous combustion processes, rekindling phenomena, and the generation of hazardous gases.

Fire Prevention and Control: Developing advanced strategies and technologies for preventing coal fires, early detection systems, and efficient firefighting measures to minimize risks and damages.

Environmental Impact Assessment: Studying the environmental consequences of coal fires, including air and water pollution, soil degradation, and biodiversity impacts, and proposing mitigation measures.

Safety Engineering in Mining: Designing and implementing safety protocols, risk assessment methodologies, and safety management systems to ensure the well-being of mining personnel and the surrounding communities.

Technological Innovations: Exploring innovative solutions such as intelligent monitoring and control systems, robotics, and remote sensing applications for enhancing safety and efficiency in mining operations.

Sustainable Mining Practices: Promoting environmentally sustainable mining practices, waste management strategies, and rehabilitation techniques for post-mining landscapes.

Publications:

Title: Effect of turbulent fluctuation on the ignition of millimeter particle: Experimental studies and numerical modelling with a new correlation of nusselt number

  • Authors: Feng, L., Liu, J., Xin, H., Wu, Y., Babaee, S.
  • Journal: Particuology
  • Volume: 91
  • Year: 2024
  • Pages: 168–175
  • Citations: 0

Title: Fire zone forefront residual tar combustion characteristics and functional group transformation mechanism: Applying based on thermogravimetric and in-situ high-temperature FTIR

  • Authors: Bai, G., Xin, H., Zhang, P., Wu, Z., Huang, Y.
  • Journal: Applied Thermal Engineering
  • Volume: 249
  • Year: 2024
  • Pages: 123404
  • Citations: 0

Title: Research on the wetting interface characteristics between water molecules and bituminous coal based on pore evolution and molecular dynamic theory

  • Journal: Energy
  • Volume: 297
  • Year: 2024
  • Pages: 131169
  • Citations: 0