Best Researcher Award
| Researcher Information | |
|---|---|
| Affiliation | Ocean University of China |
| Country | China |
| Scopus ID | 57197751916 |
| Documents | 38 |
| Citations | 483 |
| h-index | 12 |
| Subject Area | Coastal Engineering |
| Event | International Plant Scientist Awards |
| ORCID | 0000-0001-5184-4586 |
Yanxu Wang – Ocean University of China
Yanxu Wang is a researcher affiliated with Ocean University of China, whose scholarly work focuses on coastal engineering, wave dynamics, numerical modelling, and nature-based coastal protection. His publications demonstrate contributions to computational hydrodynamics and coastal resilience studies through advanced simulation approaches and engineering analyses.[1]
Abstract
Yanxu Wang has developed research in coastal engineering with emphasis on wave-structure interaction, numerical modelling, coastal vegetation, and hydrodynamic processes. His scientific publications contribute to understanding sustainable coastal protection strategies and computational simulation techniques used for engineering applications.[1]
Keywords
- Coastal Engineering
- Wave Dynamics
- Numerical Simulation
- Vegetation Hydrodynamics
- LBM-FEM
- Wave Breaking
- Pile Structures
- Marine Engineering
Introduction
Yanxu Wang conducts research on coastal engineering, computational hydrodynamics, and wave interactions with natural and engineered coastal systems. His studies integrate numerical simulations and experimental analyses to improve understanding of coastal resilience, sustainable infrastructure, and wave mitigation mechanisms under varying marine conditions.[1]
Research Profile
His research profile encompasses wave mechanics, coastal vegetation, probabilistic modelling, numerical fluid dynamics, and engineering applications for shoreline protection. Through interdisciplinary methodologies, he investigates wave-induced forces and hydrodynamic responses to support evidence-based coastal engineering design and environmental sustainability.[2]
Research Contributions
Yanxu Wang has contributed to modelling flexible vegetation under wave action, probabilistic analysis of breaking wave forces on pile groups, and investigations of wave run-up characteristics on vegetated beaches. These studies enhance predictive capabilities for coastal hazard mitigation and resilient infrastructure development.[1][2][3]
Publications
His publication portfolio includes peer-reviewed articles addressing computational coastal engineering, vegetation-wave interaction, wave loading on offshore structures, and sustainable shoreline management. These publications demonstrate methodological rigor and contribute valuable knowledge for marine engineering research and coastal protection practices.[1][2][3]
Research Impact
The research has advanced understanding of wave-induced coastal processes through innovative computational modelling and engineering analyses. Findings support improved coastal defense strategies, risk assessment, and environmentally compatible infrastructure, while influencing ongoing investigations in coastal engineering and marine science.[1][2]
Award Suitability
Based on publication record, citation performance, and contributions to numerical coastal engineering research, Yanxu Wang demonstrates academic achievements recognized through scholarly productivity and technical innovation. His multidisciplinary expertise reflects qualities commonly considered for international researcher recognition programs.[1]
Conclusion
Yanxu Wang’s research strengthens scientific understanding of coastal hydrodynamics, vegetation-based protection, and computational modelling. His publications provide practical engineering insights while supporting sustainable coastal management, making his work relevant to the broader international coastal engineering research community.[1][3]
External Links
References
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- Run-up characteristics of regular wave breaking on vegetated sloping beaches.
https://www.researchgate.net/publication/394538552_Run-up_characteristics_of_regular_wave_breaking_on_vegetated_sloping_beaches
- Numerical simulation of wave interaction with a flexible vegetation stem using a 3-D coupled LBM-FEM model.
https://www.sciencedirect.com/science/article/abs/pii/S0029801826009534
- Statistical analysis and probabilistic modelling of irregular breaking wave forces on a vertical pile within pile groups.
https://www.sciencedirect.com/science/article/abs/pii/S0378383926001420
- Run-up characteristics of regular wave breaking on vegetated sloping beaches.