Mr. Pham Minh Nhat | Decision-making and Problem-solving | Best Researcher Award

Mr. Pham Minh Nhat | Decision-making and Problem-solving | Best Researcher Award

UiT The Arctic University of Norway, Norway

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Early Academic Pursuits 🎓

Viktor, whose full name is Minh-Nhat Pham, embarked on his academic journey with a Bachelor’s degree in International Business Administration from the prestigious Foreign Trade University in Vietnam (2012–2016). Graduating with First Class honors, Viktor’s education laid the foundation for his multidisciplinary expertise. Following his undergraduate success, he pursued a Master’s degree at the University of Stavanger (2018–2020), specializing in Energy, Environment, and Society. His thesis, entitled “A Chain of Metrics to Evaluate Material Performances in Circular Economy,” reflected his forward-thinking approach to sustainability and economics, addressing key metrics such as material circularity, longevity, retained emissions, and labor impacts.

This early education in both business and environmental science set the stage for Viktor’s further exploration of natural resource economics and bioeconomic modeling, fields where he would later make significant academic contributions. During this time, he also showed a strong interest in global issues such as energy use, resource management, and the environment.

Professional Endeavors and Research Focus 🔬

Currently, Viktor is a Postdoctoral Researcher at the Norwegian Institute of Public Health, alongside being a Ph.D. candidate at UiT – The Arctic University of Norway, with his research interests firmly rooted in natural resource economics, ecological economics, and health economics. His work integrates advanced bioeconomic modeling, optimal control theory, dynamic programming, and statistical modeling to address key challenges in environmental and resource economics.

Viktor’s academic curiosity has led him to work on several notable research projects. His contributions span across understanding environmental consequences of population, affluence, and technological progress, particularly focusing on European countries, which he published in the Journal of Environmental Management. Additionally, Viktor’s interdisciplinary approach is evident in his work involving Norwegian reindeer husbandry and its response to climate change, as well as his research into the complex dynamics of ecosystem services and how they impact human decision-making and resource management.

Through his collaborative efforts with notable researchers such as Prof. Dr. Claire Armstrong and Prof. Dr. Kari-Anne Bråthen, Viktor has explored various facets of ecological economics, focusing particularly on how human activity and environmental changes interact in Arctic ecosystems. His research papers, both published and under review, reflect a deep understanding of the complex relationships between species, ecosystems, and the economy.

Contributions and Research Focus 📑

Viktor’s research output highlights his interdisciplinary focus on both theoretical and applied aspects of natural resource management. His publications are highly regarded for their insightful treatment of pressing global issues such as climate change and sustainable resource use. One of his most significant papers, Environmental Consequences of Population, Affluence, and Technological Progress for European Countries: A Malthusian View, co-authored with T.L.D. Huynh and M.A. Nasir, provides an important contribution to environmental management, highlighting the long-term effects of technological advancements and population growth on ecological systems.

Another notable area of Viktor’s research is bioeconomic modeling in Arctic ecosystems, particularly focusing on Norwegian reindeer husbandry in the face of climate change. His multi-species dynamic models, in collaboration with other leading researchers, offer a crucial perspective on how to adapt resource management to changing environmental conditions. His ongoing work explores ecosystem disservices, invasive species, and the management of natural habitats, providing valuable insights for policy makers and stakeholders in both environmental economics and resource management.

Accolades and Recognition 🏆

Viktor has garnered significant recognition for his scholarly contributions and leadership in research. In 2022, he was awarded the “Nord-Norges forskningsfond” from UNIFOR, securing a research grant of 7,000 NOK. His international academic presence was further bolstered by his successful research stay abroad in 2023, funded by the Norwegian Research Council with a generous grant of 148,000 NOK. His collaborative research during this period, particularly with esteemed researchers such as Prof. Dr. Charles Sims and Prof. Dr. Suzanne Lenhart from the University of Tennessee, has strengthened his global academic network and solidified his reputation in the field of natural resource economics.

Additionally, Viktor received a 15,000 NOK research grant from the Norwegian Bank in 2023 to support his ongoing work in economic research. His accolades highlight the value of his research contributions to both national and international communities.

Impact and Influence 🌍

Viktor’s research is not only academically rigorous but also socially impactful. His work on reindeer husbandry models in Arctic ecosystems is particularly relevant given the ongoing discussions surrounding climate change and sustainable resource management in vulnerable regions like the Arctic. His innovative approach to bioeconomic modeling, combining both ecological and economic perspectives, has influenced the way scholars and policymakers view resource management under environmental stress.

His papers have been presented at various international conferences, such as the Association of Environmental and Resource Economists (AERE2023) in Portland, Maine, and the World Conference of Natural Resource Modelling (WCNRM2023) in Amsterdam. These platforms have enabled Viktor to share his findings with a broader audience, further cementing his status as an influential researcher.

Legacy and Future Contributions 🌱

Viktor’s academic journey is characterized by a clear commitment to advancing knowledge in natural resource economics, particularly in the context of climate change. His forward-looking research, which incorporates both theoretical modeling and real-world applications, positions him as a key figure in the ongoing discourse surrounding sustainable resource management.

Looking ahead, Viktor is poised to continue making significant contributions to both academia and the broader public through his innovative research. His work on ecosystem services, invasive species, and resource management strategies will continue to play a crucial role in informing policy decisions and sustainable practices in a rapidly changing world.

In conclusion, Viktor’s academic journey, from his early education to his current research endeavors, reflects a deep commitment to addressing some of the most pressing global challenges. His work will undoubtedly leave a lasting legacy in the fields of natural resource and ecological economics, shaping the future of environmental management.

Notable Publications

. Controlling the stock or the habitat – The crisis of native invasive encroachment in the grazing land of Norwegian reindeer husbandry

Authors: Pham M. Nhat, Claire W. Armstrong, Kari Anne Bråthen, Maria Tuomi

Journal: Journal of Environmental Management

Year: 2024

 Environmental consequences of population, affluence and technological progress for European countries: A Malthusian view

Authors: Nhat Minh Pham, Toan Luu Duc Huynh, Muhammad Ali Nasir

Journal: Journal of Environmental Management

Year: 2020

Assoc Prof Dr. Tao Li | Decision-making and Problem-solving | Best Researcher Award

Assoc Prof Dr. Tao Li | Decision-making and Problem-solving | Best Researcher Award

China university of mining and Technology, China 

Profile 

Scopus 

Early Academic Pursuits 🎓

Li Tao began his academic journey with a Bachelor’s degree from Sun Yat-sen University, where he cultivated a strong foundation in engineering principles. His undergraduate studies laid the groundwork for his future research endeavors, emphasizing a rigorous approach to problem-solving and a commitment to scientific inquiry.

In 2010, Li Tao embarked on his doctoral studies at Dalian University of Technology under the supervision of Professor Chui-jie Wu. His research during this period focused on advancing the understanding of combustion and detonation phenomena, setting the stage for his future work in microscale detonation technologies. His PhD work not only showcased his ability to tackle complex scientific problems but also demonstrated his dedication to pushing the boundaries of engineering knowledge.

Professional Endeavors 🛠️

Upon completing his PhD in 2016, Li Tao transitioned into a role as an Assistant Professor at Dalian University of Technology. This role marked the beginning of his contributions to the field of safety engineering and advanced combustion technologies. His work during this period involved both teaching and research, allowing him to disseminate his knowledge and contribute to the academic community.

In 2018, Li Tao joined the Guangzhou Institute of Energy Conversion as an Assistant Professor. This position provided him with a platform to further his research in energy conversion technologies, including microscale detonation. His work at this institute was marked by significant advancements in understanding flame acceleration and initiation mechanisms, particularly within curved tubes.

Since January 2024, Li Tao has been serving as an Associate Professor at the School of Safety Engineering, China University of Mining and Technology. This role has allowed him to continue his pioneering research while mentoring the next generation of engineers and scientists.

Contributions and Research Focus 🔬

Li Tao’s research focuses on addressing power and efficiency limitations in micro gas turbines through the advancement of microscale detonation technologies. His work has been pivotal in developing a novel technology route based on microscale detonation, which leverages curved tubes to enhance flame acceleration and initiation. This approach has led to several groundbreaking developments:

  • Novel Technology Route: Li Tao proposed a unique technology route involving microscale detonation with curved tubes, which has demonstrated significant improvements in flame acceleration and initiation. His research highlights how curved channels can influence detonation processes and improve performance.
  • Predictive Models: Through experimental measurements and direct numerical simulations, Li Tao developed predictive models for detonation distance and velocity deficits in curved tubes. These models have been instrumental in understanding and optimizing detonation processes.
  • Theoretical Analysis: His theoretical work elucidates the interaction mechanisms between pressure waves and flames during the high-speed flame phase. This analysis has provided valuable insights into the dynamics of flame behavior within curved tubes.
  • Micro Helical Detonation Chamber: Li Tao introduced a “micro helical detonation chamber + Tesla turbine” technology route to address challenges in micro-scale power systems. This innovative approach resulted in the development of an experimental prototype with potential solutions for issues such as low power output and high heat loss.

Accolades and Recognition 🏅

Li Tao’s contributions to the field have been recognized through various accolades and professional achievements. His innovative research and development efforts have earned him a reputation as a leading expert in microscale detonation technologies. His work has been published in prestigious journals, and he has been invited to present at numerous conferences and seminars, reflecting the impact and recognition of his research within the academic and professional communities.

Impact and Influence 🌟

Li Tao’s research has had a profound impact on the field of microscale combustion and energy conversion. His advancements in detonation technologies have the potential to revolutionize micro gas turbines, addressing critical issues related to power output, heat loss, and component performance. The successful development of his experimental prototype highlights the practical applications and potential of his research in real-world scenarios.

His work not only contributes to scientific knowledge but also influences the design and optimization of micro-scale power systems, which are crucial for various industrial and technological applications. Li Tao’s research has paved the way for further advancements in this field, establishing him as a key figure in the ongoing development of energy conversion technologies.

Legacy and Future Contributions 🔮

Li Tao’s legacy in the field of safety engineering and microscale detonation technologies is characterized by his innovative approach and commitment to solving complex engineering challenges. His research has set new standards for understanding and optimizing combustion processes, and his contributions will continue to influence future developments in micro gas turbines and energy systems.

Looking ahead, Li Tao is poised to make further contributions to the field through continued research and development. His focus on addressing the limitations of micro-scale power systems and exploring new technological routes will likely lead to additional breakthroughs and advancements. As he continues to push the boundaries of engineering knowledge, Li Tao’s work will remain a source of inspiration and progress in the field of microscale combustion technologies.

Notable Publications

Time-series prediction of settlement deformation in shallow buried tunnels based on EMD-SSA-GRNN model

Authors: Li, T., Shu, J., Chang, D.

Journal: Scientific Reports

Year: 2024

Wave propagation characteristics of fluid-containing soil granular materials at different frequencies under multiple dissipation mechanisms: A case study on calcareous sand in the South China Sea

Authors: Li, T., Shu, J., Li, Y., Huang, J., Galindo, R.

Journal: Computers and Geotechnics

Year: 2024

Automated method for structural modal identification based on multivariate variational mode decomposition and its applications in damage characteristics of subway tunnels

Authors: Li, T., Hou, R., Zheng, K., Zhang, Z., Liu, B.

Journal: Engineering Failure Analysis

Year: 2024

Propagation characteristics of dynamic wave in fluid-containing granular materials at unified high and low frequency

Authors: Li, T., Shu, J., Li, Y., Wu, B., Galindo, R.

Journal: Soil Dynamics and Earthquake Engineering

Year: 2024

Analytical Solution for Pipeline Settlement Law Using Shield Tunnel Excavation Underneath Based on Vlasov-Timoshenko Model Considering Lateral Soil Action

Authors: Li, T., Zheng, K., Peng, H., Zhang, Z., Liu, B.

Journal: International Journal of Geomechanics

Year: 2024