Xuanhe Han | Hydraulic Engineering | Best Researcher Award

Dr. Xuanhe Han | Hydraulic Engineering | Best Researcher Award

PhD Candidate at Hainan University, China

Xuanhe Han is a PhD candidate in Deep-Sea Mining at the College of Marine Science and Engineering, Hainan University, where he also completed an accelerated M.Sc.-to-PhD program in Control Engineering. His research focuses on multiphase flow visualization and sustainable mining systems, with contributions including the development of dual-modality electrical tomography and innovative models for gas-liquid two-phase flow. He has published 7 SCI-indexed papers—one as first author in Ocean Engineering (IF 5.0)—and contributed to four major research projects, including China’s State Key R&D Program. Recognized with a First-Class Academic Scholarship, Han’s work bridges advanced fluid mechanics with real-world applications in environmentally responsible deep-sea resource development.

Professional Profile 

🎓 Education of Xuanhe Han

Xuanhe Han is currently pursuing his Ph.D. in Deep-Sea Mining at the College of Marine Science and Engineering, Hainan University (2024–present), under the supervision of Professor Yijun Shen. Prior to this, he completed his M.Sc. in Control Engineering (2022–2024) through Hainan University’s prestigious accelerated master-to-doctoral program, designed for high-performing students. His academic foundation combines interdisciplinary expertise in engineering systems and ocean technology, equipping him with the technical and analytical skills required for cutting-edge research in sustainable deep-sea resource development.

💼 Professional Experience of Xuanhe Han

Xuanhe Han has accumulated significant research experience through active participation in national and provincial-level projects related to deep-sea mining and multiphase flow systems. As a core researcher in China’s State Key R&D Program on intelligent equipment for deep-sea mineral resource development (2021–2025), he has contributed to the advancement of sustainable marine technologies. He also served as a research member in a National Natural Science Foundation project focused on gas-liquid flow mechanisms in mining systems (2023–2027), and as the technical lead for Hainan’s provincial project assessing the environmental impacts of deep-sea mining (2021–2023). Additionally, Han was the principal investigator of a university-level innovation project on novel tomography techniques (2020–2022), showcasing his leadership and technical expertise at an early career stage.

🔬 Research Interest of Xuanhe Han

Xuanhe Han’s research interests lie at the intersection of deep-sea engineering, fluid dynamics, and sustainable resource extraction. He focuses on multiphase flow behavior in deep-sea mining systems, particularly in the development and optimization of airlift pump technologies. His work involves advanced flow visualization techniques, such as dual-modality electrical tomography, to monitor and analyze gas-liquid interactions in real time. Additionally, he is interested in integrating ocean thermal energy conversion and waste heat recovery systems to improve the energy efficiency of offshore operations. With a strong commitment to environmental sustainability, Han also explores the ecological impact of deep-sea mining activities, aiming to balance technological advancement with ocean conservation.

🏅 Awards and Honors of Xuanhe Han

Xuanhe Han has been recognized for his academic excellence and research potential through several prestigious honors. He is a recipient of the First-Class Academic Scholarship at Hainan University for the period 2022–2025, awarded to top-performing graduate students demonstrating outstanding academic achievement and research contributions. This scholarship reflects his rapid progress through an accelerated master-to-doctoral program and his active involvement in high-impact national research projects. His consistent publication in SCI-indexed journals and leadership roles in innovative engineering research further highlight his recognition as a rising talent in the field of marine science and engineering.

✅Conclusion:

Xuanhe Han is a highly promising early-career researcher whose contributions to deep-sea mining technologies and multiphase flow modeling are both technically advanced and strategically significant. His rapid academic progression, involvement in key national projects, and first-author publications in high-impact journals showcase a rare combination of initiative, innovation, and productivity at the doctoral level.

📚 Selected Publications of Xuanhe Han

  1. Title: Pressure characteristics in an airlift pump system
    Authors: Jianhang Ren, Fusen Peng, Meng Li, Jingyu Zhu, Xuanhe Han, Mengdi Fu, Rongqian Ruan, Jianyu Xiao, Yanlian Du, Yijun Shen
    Journal: Physics of Fluids
    Year: 2025
    DOI: 10.1063/5.0250828

  2. Title: Gas void fraction and flow pattern transition mechanism in an airlift pump system
    Authors: Jianhang Ren, Meng Li, Fusen Peng, Jingyu Zhu, Yanlian Du, Xuanhe Han, Mengdi Fu, Rongqian Ruan, Jianyu Xiao, Yijun Shen
    Journal: Physics of Fluids
    Year: 2025
    DOI: 10.1063/5.0249929

  3. Title: Evaluate the performance of the vertically upward gas–liquid two-phase flow in an airlift pump system
    Authors: Zhu J., Du Y., Li M., Fu M., Han X., Peng F., Ruan R., Shen Y.
    Journal: International Journal of Multiphase Flow
    Year: 2024
    DOI: 10.1016/j.ijmultiphaseflow.2024.105016

  4. Title: Performance analysis of ocean thermal energy conversion system integrated with waste heat recovery from offshore oil and gas platform
    Authors: Du Y., Peng H., Xu J., Tian Z., Zhang Y., Han X., Shen Y.
    Journal: Case Studies in Thermal Engineering
    Year: 2024
    DOI: 10.1016/j.csite.2024.104027

  5. Title: Visualization Study of Multiphase Flow in Deep-Sea Mining based on Dual-Modality Electrical Tomography
    Authors: Han X., Du Y., Fu M., Zhu J., Shen Y.
    Repository: SSRN
    Year: 2024
    DOI: 10.2139/ssrn.4774129

  6. Title: Frictional pressure drop of the vertically upward gas–liquid two-phase flow in an airlift pump system
    Authors: Jingyu Zhu, Yanlian Du, Mengdi Fu, Xuanhe Han, Meng Li, Rongqian Ruan, Yijun Shen
    Journal: Physics of Fluids
    Year: 2024
    DOI: 10.1063/5.0229776

  7. Title: Gas state equation and flow mechanism of gas–liquid two-phase flow in airlift pump system
    Authors: Yanlian Du, Jingyu Zhu, Xuanhe Han, Mengdi Fu, Meng Li, Yijun Shen
    Journal: Physics of Fluids
    Year: 2024
    DOI: 10.1063/5.0201317

Yunliang Li | Water Resources | Best Researcher Award

Prof. Yunliang Li | Water Resources | Best Researcher Award

Professor at Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, China

Yunliang Li is a distinguished researcher specializing in hydrological studies of floodplain lakes, with significant contributions to understanding surface-groundwater interactions, lake flood-pulse processes, and hydrological connectivity in highly heterogeneous floodplain settings. He has independently developed the Lake-Catchment Simulator v1.0, a large-scale numerical model that assesses the hydrodynamic and environmental responses of floodplain lakes to natural and human disturbances. With 71 peer-reviewed publications (including 41 SCI papers) and over 1352 citations, along with two academic monographs, his work has gained substantial recognition. He has received multiple prestigious awards, including the Second Prize for Scientific and Technological Progress from the China National Committee on Large Dams and the Changjiang Technology and Economy Society, as well as honors from the Chinese Academy of Sciences and the Ministry of Water Resources Science and Technology Talent. Holding 23 patents and software copyrights, his research not only advances scientific understanding but also contributes to practical environmental management. His future work aims to deepen insights into the impact of natural and anthropogenic disturbances on floodplain hydrodynamics, further cementing his influence in the field.

Professional Profile 

Education

Yunliang Li holds a strong academic background in hydrology and water resources, with advanced degrees that have laid the foundation for his expertise in floodplain lake dynamics and hydrological connectivity. He obtained his Ph.D. in Hydrology and Water Resources from a leading institution, where he conducted in-depth research on surface-groundwater interactions and floodplain hydrodynamics. Prior to that, he earned his Master’s and Bachelor’s degrees in related fields, equipping him with a solid understanding of eco-hydrology, numerical modeling, and environmental water management. His academic journey has been marked by interdisciplinary learning, innovative research, and technical skill development, enabling him to make substantial contributions to the field of hydrological science.

Professional Experience

Yunliang Li has an extensive professional background in hydrological research, focusing on floodplain lake dynamics, surface-groundwater interactions, and eco-hydrological modeling. He has been actively engaged in scientific research and technological innovation, contributing significantly to the development of hydrological connectivity theories and large-scale numerical simulation tools such as the Lake-Catchment Simulator v1.0. Throughout his career, he has led and participated in numerous high-impact research projects, systematically assessing the effects of extreme hydrological events and human activities on floodplain lakes like Poyang Lake. His expertise has been recognized through multiple prestigious awards and leadership roles in scientific committees, research institutions, and environmental assessment initiatives. In addition to his academic contributions, he has played a key role in patent development and software innovation, further bridging the gap between scientific research and practical water resource management. His ongoing work continues to advance the understanding of hydrodynamic processes, influencing both national and international water management strategies.

Research Interest

Yunliang Li’s research interests lie at the intersection of hydrology, eco-hydrodynamics, and environmental water management, with a particular focus on floodplain lake systems. He is dedicated to understanding surface-groundwater interactions, the hydrological connectivity of heterogeneous floodplains, and the impacts of natural and anthropogenic disturbances on lake hydrodynamics. His work involves developing advanced numerical modeling techniques, such as the Lake-Catchment Simulator v1.0, to assess hydrodynamic and environmental changes under extreme hydrological events and human interventions. Additionally, he is deeply interested in hydrological regulation, ecological restoration, and water resource sustainability, aiming to bridge theoretical research with practical applications for flood risk management, ecosystem conservation, and climate adaptation strategies. Through his research, he seeks to provide scientific insights and technical solutions for better managing floodplain lakes and water environments in response to global environmental changes.

Award nd Honor

Yunliang Li has received numerous prestigious awards and honors in recognition of his outstanding contributions to hydrological research and water resource management. He was awarded the Second Prize for Scientific and Technological Progress by both the China National Committee on Large Dams and the Changjiang Technology and Economy Society, highlighting his pioneering work in floodplain hydrodynamics and hydrological connectivity. He has also been honored as an Excellent Member of the Youth Innovation Promotion Association of the Chinese Academy of Sciences (CAS) and was selected for the Jiangxi Province Thousand Talents Program, demonstrating his influence in advancing eco-hydrological research. Additionally, he has been recognized by the Ministry of Water Resources Science and Technology Talent Program for his contributions to water science and technology innovation. With 23 patents and software copyrights, his research has not only expanded scientific knowledge but also provided practical solutions for water resource management and environmental sustainability. These accolades underscore his leadership and impact in the field of hydrology.

Conclusion

Yunliang Li is a highly deserving candidate for the Best Researcher Award. His groundbreaking contributions to hydrological connectivity, floodplain lake dynamics, and numerical modeling demonstrate excellence. His publication record, patents, and national recognition underscore his impact. Strengthening international collaborations and interdisciplinary applications could further enhance his standing. Given his contributions and achievements, he is a strong contender for this award.

Publications Top Noted

  1. Title: A distributed and process-based model coupling water-sediment-antibiotic interactions to simulate dynamic source-transport-fate of antibiotics at catchment scale

    • Authors: H. Xie, Hui; M. Shang, Meiqi; J. Dong, Jianwei; Y. Li, Yunliang; X.J. Lai, Xijun Jun

    • Year: 2025

    • Citations: 1

  2. Title: How do agricultural polders modulate nutrient dynamics under extreme flooding: Insights for water management in lowland areas

    • Authors: H. Xie, Hui; Y. Li, Yunliang; M. Shang, Meiqi; Y. Wang, Yang; X.J. Lai, Xijun Jun

    • Year: 2025

    • Citations: 0

  3. Title: Disentangling the spatially combined and temporally lagged influences of climate oscillations on seasonal droughts in the East Asian monsoon influenced Poyang Lake Basin

    • Authors: Z. Xing, Zikang; J. Wei, Jianhui; Y. Li, Yunliang; P. Laux, Patrick; H. Kunstmann, Harald

    • Year: 2024

    • Citations: 3

  4. Title: Hydrological Modeling to Unravel the Spatiotemporal Heterogeneity and Attribution of Baseflow in the Yangtze River Source Area, China

    • Authors: H. Ren, Huazhun; G. Wu, Guangdong; L. Shu, Longchang; Y. Li, Yunliang; Y. Wang, Yuxuan

    • Year: 2024

    • Citations: 0

  5. Title: Unravelling groundwater budget in the Poyang floodplain system under intensifying seasonal lake inundation

    • Authors: W. Jiang, Wenyu; B. Liu, Bo; Y. Li, Yunliang; C. Lu, Chengpeng; L. Shu, Longchang

    • Year: 2024

    • Citations: 2

  6. Title: The effects of damming and dam regulation on a river–lake-aquifer system: 3D groundwater flow modeling of Poyang Lake (China)

    • Authors: W. Jiang, Wenyu; B. Liu, Bo; Y. Li, Yunliang; C. Lu, Chengpeng; L. Shu, Longchang

    • Year: 2024

    • Citations: 3

  7. Title: Unveiling ionic structure in the LiF-NdF3 molten salt system as determined by Raman spectroscopy and quantum chemical calculations

    • Authors: M. Lin, Ming; J. Guan, Jinzhao; M. Aziz Diop, Mouhamadou; Y. Li, Yunliang; P. Chen, Peng

    • Year: 2024

    • Citations: 2

  8. Title: Revealing temporal variation of baseflow and its underlying causes in the source region of the Yangtze River (China)

    • Authors: G. Wu, Guangdong; J. Zhang, Jianyun; Y. Li, Yunliang; H. Ren, Huazhun; M. Yang, Mingzhi

    • Year: 2024

    • Citations: 6

  9. Title: Tracing Water Recharge and Transport in the Root-Zone Soil of Different Vegetation Types in the Poyang Lake Floodplain Wetland (China) Using Stable Isotopes

    • Authors: X. Xu, Xiuli; J. Zhao, Jun; G. Wu, Guangdong; Y. Li, Yunliang; L. Hou, Lili

    • Year: 2024

    • Citations: 1

  10. Title: Impact of the Three Gorges Dam on hydrological connectivity and vegetation growth of Poyang Lake floodplain, China

  • Authors: J. Zeng, Jinfeng; J. Qiu, Jingfeng; Z. Wu, Zeyu; X. Liu, Xinggen; Y. Li, Yunliang

  • Year: 2024

  • Citations: 10

 

 

Guohong Fang | Coastal Hydrology | Surface Water Dynamics Award

Prof. Guohong Fang | Coastal Hydrology | Surface Water Dynamics Award

Retired Professor at First Institute of Oceanography, Ministry of Natural Resouces, China

Academician Guohong Fang, born in December 1939 in Ruian, Zhejiang, China, is a distinguished physical oceanographer known for his pioneering research in ocean tides, ocean circulation, and numerical modeling. A graduate of Nankai University’s Department of Physics, he has made significant contributions to the study of tidal currents, developing innovative methods for their analysis and prediction. His work has led to accurate models for tides in the seas adjacent to China and the creation of advanced regional tide prediction systems. He has proposed fundamental oceanographic concepts, including the Taiwan-Tsushima-Soya current system and the South China Sea Throughflow. With over 200 published research papers and multiple national awards, his contributions have been widely recognized, culminating in his election as a member of the Chinese Academy of Engineering in 2007. His groundbreaking discoveries continue to shape the field of oceanography.

Professional Profile 

Education

Guohong Fang pursued his higher education at Nankai University, one of China’s prestigious institutions, where he graduated from the Department of Physics. His academic background in physics provided him with a strong foundation for his later work in physical oceanography. His studies equipped him with expertise in mathematical modeling, fluid dynamics, and oceanic processes, which became the cornerstone of his research in ocean tides, circulation, and numerical modeling. His education played a crucial role in shaping his career as a leading oceanographer, enabling him to develop innovative methods for tide analysis and prediction, as well as groundbreaking contributions to the understanding of ocean currents.

Professional Experience

Guohong Fang has built an illustrious career as a physical oceanographer at the First Institute of Oceanography, Ministry of Natural Resources, where he has dedicated his expertise to advancing the understanding of ocean tides, circulation, and numerical modeling. Throughout his career, he has developed innovative methods for analyzing and predicting tidal currents, establishing accurate models for the seas adjacent to China and creating successive generations of regional tide prediction systems. His pioneering work includes offering a general solution to the Taylor problem, elucidating the vertical variation of tidal currents, and uncovering the frictional nonlinearity inherent in tidal phenomena. Fang’s groundbreaking studies have led to the first quantitative estimates of water transports in critical regions like the Taiwan Strait and the East China Sea, along with the proposal of influential oceanographic concepts such as the Taiwan-Tsushima-Soya current system and the South China Sea Throughflow. His extensive contributions, recognized through over 200 publications and multiple national awards, underscore his role as a leader in his field and have cemented his reputation within the scientific community.

Research Interest

Guohong Fang’s research interests lie at the intersection of physical oceanography and numerical modeling, with a particular focus on the dynamics of ocean tides and tidal currents. He is dedicated to developing innovative analytical methods and sophisticated computational models that enhance the prediction and understanding of tidal behaviors in complex marine environments. His work encompasses investigating the fundamental principles governing ocean circulation, exploring the intricate interactions between tidal forces and frictional nonlinearity, and quantifying water transport mechanisms in key regions such as the Taiwan Strait and the East China Sea. Through these efforts, Fang aims to advance our understanding of the ocean’s role in the broader climate system and improve the accuracy of marine forecasting systems.

Award and Honor

Guohong Fang has been the recipient of numerous prestigious awards and honors throughout his career, reflecting his significant contributions to the field of physical oceanography. His groundbreaking work has earned him multiple National Natural Science Awards and National Science and Technology Progress Awards, acknowledging his advancements in the analysis and prediction of ocean tides and tidal currents. In recognition of his influential research and innovative methodologies, he was elected as a member of the Chinese Academy of Engineering in 2007. These accolades not only highlight his scientific achievements but also underscore his enduring impact on oceanographic research and the broader scientific community.

Conclusion

Academician Guohong Fang has made significant contributions to physical oceanography, with groundbreaking research, innovative methodologies, and prestigious national recognition. Given his impact on ocean tide modeling, current predictions, and fundamental discoveries, he is a strong candidate for the Best Researcher Award.

Publications Top Noted

  1. Title: Field measurements of turbulent mixing south of the Lombok Strait, Indonesia
    Authors: R.D. Susanto, R. Dwi; Z. Wei, Zexun; P.D. Santoso, Priyadi Dwi; Y. Li, Ying; G. Fang, Guohong
    Year: 2024
    Citations: 1

  2. Title: A comparison of global and regional ocean tide models with tide gauges in the East Asian marginal seas
    Authors: X. Xu, Xiaoqing; H. Pan, Haidong; F. Teng, Fei; G. Fang, Guohong; Z. Wei, Zexun
    Year: 2024
    Citations: 3

  3. Title: Shallow water tides induced by frictional nonlinearity in the Bohai and Yellow Seas
    Authors: F. Teng, Fei; G. Fang, Guohong; X. Xu, Xiaoqing; Y. Zhu, Yaohua
    Year: 2023
    Citations: 3

  4. Title: A comparative study of sea surface wind datasets and their induced circulation characteristics in the North Pacific Ocean
    Authors: D. Wang, Dingqi; G. Fang, Guohong; T. Xu, Tengfei; Z. Wei, Zexun; Y. Wang, Yonggang (and others)
    Year: 2023
    Citations: 1

  5. Title: Satellite-detected phytoplankton blooms in the Japan/East Sea during the past two decades: Magnitude and timing
    Authors: D. Wang, Dingqi; G. Fang, Guohong; S. Jiang, Shumin; Y. Wang, Yonggang; T. Xu, Tengfei (and others)
    Year: 2022
    Citations: 2

  6. Title: Characteristics of Marine Heatwaves in the Japan/East Sea
    Authors: D. Wang, Dingqi; T. Xu, Tengfei; G. Fang, Guohong; Z. Wei, Zexun; Y. Wang, Yonggang (and others)
    Year: 2022
    Citations: 25

  7. Title: Accuracy assessment of global vertical displacement loading tide models in the Bohai Sea, Yellow Sea, East China Sea and surrounding areas
    Authors: X. Xu, Xiaoqing; Z. Wei, Zexun; F. Teng, Fei; X. Gao, Xiumin; G. Fang, Guohong
    Year: 2022
    Citations:0

Guoqian Chen | Water Resources | Excellence in Hydrology Award

Prof. Guoqian Chen | Water Resources | Excellence in Hydrology Award

Professor at Peking University, China

Guoqian Chen is a distinguished researcher in environmental sustainability, climate thermodynamics, and carbon neutrality, with a prolific academic career spanning decades. As a professor at Peking University and a leader in systems ecology, he has significantly contributed to understanding global carbon emissions, renewable energy, and environmental resource management. His research, published in high-impact journals such as Nature Communications and Journal of Fluid Mechanics, has earned him multiple accolades, including the Highly Cited Researcher award from Elsevier and Thomson Reuters. With an H-index of 69 (ISI) and over 15,000 citations, his work has shaped global discussions on climate change and sustainable development. Chen has also played a key role in mentoring future researchers, supervising over 40 PhD students, and serving on editorial boards of renowned journals. As a frequent keynote speaker at international conferences, his influence extends beyond academia, driving policy discussions on global carbon management. While his work is primarily theoretical, expanding collaborations with industry and policymakers could further enhance its real-world impact. With his extensive contributions and international recognition, he is a strong contender for the Best Researcher Award.

Professional Profile

Education

Guoqian Chen holds a Ph.D. in Engineering from Peking University, Beijing, China, which he earned in 1989. Prior to that, he completed both his Bachelor’s (1982) and Master’s (1985) degrees in Engineering at Huazhong University of Science and Technology, Wuhan, China. His strong academic foundation in engineering and fluid dynamics has paved the way for his distinguished career in environmental sustainability, climate thermodynamics, and carbon neutrality research.

Professional Experience

Guoqian Chen has an extensive professional career spanning over three decades, primarily in fluid dynamics, thermodynamics, and environmental sustainability. Since 1996, he has been a Professor at Peking University, where he founded and directs the Laboratory of Systems Ecology and Sustainability Science. He also serves as a Distinguished Adjunct Professor at Macau University of Science and Technology since 2022. His international experience includes positions as a Visiting Professor at Hong Kong University (1995-1998) and a Visiting Scientist at the University of Pittsburgh, USA (1993-1995). He previously held faculty positions at Beijing University of Aeronautics and Astronautics (1991-1993) and the Institute of Mechanics, Chinese Academy of Sciences (1989-1991). Additionally, he has contributed to global research collaborations as a Distinguished Adjunct Professor at King Abdulaziz University, Saudi Arabia (2013-2015, 2019-2020). His professional journey reflects his leadership in advancing climate science, carbon neutrality, and environmental resource management through interdisciplinary research and academic mentorship.

Research Interest

Guoqian Chen’s research interests span a wide range of topics in climate thermodynamics, carbon neutrality, renewable energy, and environmental sustainability. His work focuses on planetary thermodynamics, radiation heat engines, and Earth’s entropy budget, providing critical insights into the fundamental principles of climate science. He specializes in carbon metrics, decarbonization management, and ecological flux assessments, using systems ecology, life cycle analysis (SLCA), and input-output modeling to evaluate environmental impacts. His research also extends to environmental systems modeling, computational fluid dynamics (CFD), eco-hydrodynamics, and micro-swimmer motility, contributing to both theoretical and applied aspects of sustainability science. Additionally, he explores global trade imbalances in energy, water, land use, and carbon emissions, influencing policy discussions on international climate action. Through his interdisciplinary approach, Chen integrates engineering, economics, and environmental science to address pressing global challenges related to climate change and sustainable resource management.

Award and Honor

Guoqian Chen has received numerous prestigious awards and honors in recognition of his outstanding contributions to environmental sustainability, climate science, and carbon neutrality research. He has been consistently named an Elsevier Most Cited Chinese Researcher from 2016 to 2024, highlighting the global impact of his work. In 2014, he was recognized as one of The World’s Most Influential Scientific Minds by Thomson Reuters and received the Highly Cited Researchers Award and China Citation Laureates Award for his extensive academic influence. His work has also earned him the ISI Highly Cited Researcher Award (2013, 2014, 2019) and the Elsevier Atlas Award (2018). In 2012, he received the National Award for Science and Technology Progress (Second Prize), further solidifying his reputation as a leading researcher. His groundbreaking contributions to environmental and climate studies have also been acknowledged through a NATURE Research Highlight (2023). These accolades reflect his exceptional impact on academia, policy, and global discussions on sustainability and climate change.

Conclusion

Guoqian Chen is an exceptional candidate for the Best Researcher Award based on his pioneering research, global recognition, interdisciplinary impact, and leadership in environmental and sustainability science. His extensive publications and citation record reflect a highly influential career. While his work is primarily academic and theoretical, expanding collaborations with industry and policymakers could further enhance the real-world impact. Overall, he is a strong contender for the award.

Publications Top Noted

  1. The benefits and burdens of wind power systems in reaching China’s renewable energy goals: Implications from resource and environment assessment

    • Authors: Yilin Li, Xu Tang, Mingkai Liu, Guoqian Chen

    • Year: 2024

    • Citations: 2

  2. Livestock sector can threaten planetary boundaries without regionally differentiated strategies

    • Authors: Chaohui Li, Prajal Pradhan, Xudong Wu, Klaus Hubacek, Guoqian Chen

    • Year: 2024

    • Citations: 1

  3. Transient dispersion of settling gyrotactic microorganisms in an open channel flow

    • Authors: Hanhan Zeng, Weiquan Jiang, Bohan Wang, Zhi Li, Guoqian Chen

    • Year: 2024

    • Citations: 1

  4. Life cycle techno-economic-environmental optimization for capacity design and operation strategy of grid-connected building distributed multi-energy system

    • Authors: Huizhen Han, Yongkai Ge, Qingrui Wang, Xi Chen, Peiru Jian

    • Year: 2024

    • Citations: 2

  5. Migration of confined micro-swimmers subject to anisotropic diffusion

    • Authors: Mingyang Guan, Weiquan Jiang, Luoyi Tao, Guoqian Chen, Joseph Hun Wei Lee

    • Year: 2024

    • Citations: 4

  6. Streamwise dispersion of soluble matter in solvent flowing through a tube

    • Authors: Mingyang Guan, Guoqian Chen

    • Year: 2024

    • Citations: 6

  7. Characterizing suspended particle dispersion in wetland flows: Impact of settling velocity and vegetation factor

    • Authors: Jinlan Guo, Shan Huang, Joseph Hun Wei Lee, Guoqian Chen

    • Year: 2024

    • Citations: 2

  8. Understanding Prandtl fluid flow in conduits with slip boundary conditions: Implications for engineering and physiology

    • Authors: Muhammad Ijaz Khan, S. Ravikumar, Kodi Raghunath, Guoqian Chen, Luoyi Tao

    • Year: 2023

    • Citations: 17

  9. Globalization of forest land use: Increasing threats on climate-vulnerable regions

    • Authors: Siyi Kan, Bin Chen, Guoqian Chen

    • Year: 2023

    • Citations: 2

  10. Pre-asymptotic dispersion of active particles through a vertical pipe: the origin of hydrodynamic focusing

  • Authors: Mingyang Guan, Weiquan Jiang, Bohan Wang, Zhi Li, Guoqian Chen

  • Year: 2023

  • Citations: 7

Tatek Wondimu Negash | Water Resources | Best Researcher Award- 1074

Tatek Wondimu Negash | Water Resources | Best Researcher Award

Agricultural Water Management Researcher at Ethiopia Institute Of Agricultural Research, Melkassa Agricultural Research Center, Ethiopia

Tatek Wondimu Negash is a highly skilled water resource and irrigation engineer with over eight years of research experience in agricultural water management, hydrology, land use, and climate change. Holding a BSc in Water Resources and Irrigation Engineering and an MPhil in Irrigation and Drainage Engineering, his work focuses on optimizing irrigation efficiency and improving water use in semi-arid regions. He has authored multiple peer-reviewed publications on irrigation water allocation, evapotranspiration, and watershed hydrology, demonstrating his expertise in hydrological modeling and data analysis using tools like ArcGIS, ArcSWAT, and AquaCrop. As a researcher at the Ethiopia Institute of Agricultural Research, he collaborates with farmers, government agencies, and research institutions to implement sustainable irrigation practices. His contributions have earned him recognition, including a prestigious Master’s Scholarship from WACWISA, Ghana, and an Editorial Board membership for the International Analytical Chemistry Awards. With strong technical skills, stakeholder engagement experience, and a commitment to advancing water resource management, Tatek stands out as a leading researcher in his field.

Professional Profile 

Education

Tatek Wondimu Negash holds a Bachelor of Science (BSc) degree in Water Resources and Irrigation Engineering from Hawassa University, Ethiopia, where he developed a strong foundation in agricultural water management and irrigation system design. He further advanced his expertise by earning a Master of Philosophy (MPhil) in Irrigation and Drainage Engineering from the University for Development Studies in Ghana. His master’s research focused on the impact of land use and land cover change on watershed hydrology, reflecting his deep interest in sustainable water resource management. Throughout his academic journey, he has acquired specialized training in hydrological modeling, irrigation technologies, and integrated water resource management, enhancing his skills in data analysis and research methodologies. His education, combined with professional development courses in Python, Jupyter, and data analysis, has equipped him with the technical proficiency needed for high-impact research

Professional Experience

Tatek Wondimu Negash is an experienced water resource and irrigation engineer and researcher at the Ethiopia Institute of Agricultural Research (EIAR), Melkassa Agricultural Research Center. With over eight years of professional experience, he has been actively involved in developing research proposals and conducting studies on agricultural water management, hydrology, land use, and climate change. His work focuses on optimizing irrigation efficiency by evaluating and demonstrating appropriate irrigation technologies, determining crop water requirements, and improving irrigation scheduling. Tatek has played a key role in designing and supervising various irrigation projects, including sprinkler, drip, and surface irrigation systems, while also providing technical support for the construction of irrigation canals, drainage systems, and water harvesting structures. Additionally, he has extensive experience in hydrological modeling and data analysis, utilizing advanced tools such as ArcGIS, ArcSWAT, DSSAT, and AquaCrop to enhance water management practices. Beyond research, he collaborates with farmers, government agencies, and research institutions, facilitating training programs and knowledge-sharing initiatives to promote sustainable agricultural water use. His work contributes significantly to improving irrigation strategies and water conservation efforts in Ethiopia and beyond.

Research Interest

Tatek Wondimu Negash’s research interests revolve around agricultural water management, hydrology, land use, and climate change, with a strong focus on optimizing irrigation efficiency and sustainable water resource utilization. He is particularly interested in studying soil-water-plant relationships to determine crop water requirements, improve irrigation scheduling, and enhance water use efficiency in semi-arid regions. His work also explores the impact of land use and land cover changes on watershed hydrology, employing advanced hydrological modeling techniques using tools such as ArcGIS, ArcSWAT, DSSAT, and AquaCrop. Additionally, he is engaged in developing innovative irrigation technologies and management practices that support smallholder farmers and large-scale irrigation projects. Through his research, Tatek aims to contribute to climate-resilient agricultural practices by integrating data-driven solutions and evidence-based decision-making for sustainable water resource management. His interdisciplinary approach bridges the gap between scientific research and practical applications, ensuring that his findings have a tangible impact on agricultural productivity and water conservation.

Award and Honor

Tatek Wondimu Negash has received notable awards and honors in recognition of his contributions to agricultural water management and irrigation research. He was awarded the Master’s Scholarship by the West Africa Center for Water, Irrigation, and Sustainable Agriculture (WACWISA), Ghana, funded by the World Bank under the African Centre of Excellence Impact (ACE Impact) Project, which supported his postgraduate studies in irrigation and drainage engineering. His research excellence has also earned him a place on the Editorial Board of the International Analytical Chemistry Awards (2025), recognizing his expertise in scientific research and analysis. Additionally, he has participated in prestigious professional development programs, including specialized training in integrated water resources management, eco-hydrology, and canal performance improvement conducted by international institutions. These achievements highlight his dedication to advancing water resource management and underscore his growing influence in the field of irrigation engineering and hydrological research.

Conclusion

Tatek Wondimu Negash is a strong candidate for the Best Researcher Award due to his extensive research contributions, technical expertise, and impact on agricultural water management. His peer-reviewed publications, irrigation research, modeling expertise, and stakeholder engagement highlight his suitability. While he could enhance his research profile with more international collaborations, higher citation impact, and independent research funding, his overall achievements make him a worthy contender for the award.

Publications Top Noted

Title: Optimal Irrigation Water Allocation for Enhanced Productivity of Haricot Bean (Phaseolus vulgaris) and Economic Gain: An Experiment Conducted in the Semi-Arid Area of Ethiopia

Authors:

  • Tatek Wondimu Negash (T.W. Negash)
  • Abera Tesfaye Tefera (A.T. Tefera)
  • Gobena Dirirsa Bayisa (G.D. Bayisa)
  • Tigist Damtew Worku (T.D. Worku)
  • Aynalem Gurms (A. Gurms)

Year: 2025

Journal: Journal of Agriculture and Food Research

Citations: 0 (as of now)