Soughah AlSamahi | Civil Infrastructure | Civil Engineering Award

 

Civil Engineering Award

Soughah AlSamahi
Affiliation Ministry of Energy & Infrastructure
Country United Arab Emirates
Scopus ID 58398057200
Documents 2
Citations 16
h-index 1
Subject Area Civil Infrastructure
Event Superior Engineering Research Awards
Soughah AlSamahi
Ministry of Energy & Infrastructure

Soughah AlSamahi, whose research profile is associated with the Ministry of Energy & Infrastructure in the United Arab Emirates. The page summarizes publicly available scholarly indicators, research interests, publication activity, and the relevance of the research portfolio within the context of the Civil Engineering Award and the Superior Engineering Research Awards.[1]

Abstract

This article summarizes publicly available scholarly information relating to the research profile of Soughah AlSamahi. The overview emphasizes civil infrastructure research, scholarly publications, citation indicators, and professional recognition while maintaining a neutral encyclopedic style.[2]

Keywords

  • Civil Engineering
  • Infrastructure
  • Engineering Research
  • Transportation
  • Academic Recognition

Introduction

Civil infrastructure research supports evidence-based planning, sustainable engineering practices, and resilient public assets. Academic evaluation commonly considers publication quality, citation performance, collaboration, and measurable research contributions.[3]

Research Profile

According to the supplied profile information, Soughah AlSamahi is affiliated with the Ministry of Energy & Infrastructure, United Arab Emirates. The available metrics indicate two indexed documents, sixteen citations, and an h-index of one within the stated subject area of Civil Infrastructure.[1]

Research Contributions

  • Participation in civil infrastructure research.
  • Contribution to engineering knowledge through indexed publications.
  • Support for evidence-based infrastructure development.
  • Professional engagement within engineering research activities.

Publications

The supplied profile reports two indexed scholarly documents. Publication details should be verified through the Scopus author profile and associated DOI records where available.[4]

Research Impact

Citation-based indicators provide one perspective on scholarly influence. Additional qualitative assessment typically includes originality, methodological quality, practical application, interdisciplinary collaboration, and contribution to engineering practice.

Award Suitability

Eligibility for engineering recognition is ordinarily determined through independent review using transparent evaluation criteria established by the awarding organization. Scholarly metrics may complement, but do not solely determine, award decisions.

Conclusion

The available information outlines a concise academic profile associated with civil infrastructure research. Continued publication activity and scholarly engagement contribute to the ongoing assessment of research performance within the engineering community.[2]

External Links

References

  1. Scopus Author Profile
    https://www.scopus.com/pages/authors/58398057200
  2. Engineering research methodology reference.
    https://doi.org/10.1016/j.trpro.2020.01.001
  3. Superior Engineering Research Awards.
    https://superiorengineering.org/
  4. Flash Flood Risk Assessment and Mitigation in Digital-Era Governance Using Unmanned Aerial Vehicle and GIS Spatial Analyses Case Study: Small River Basins
    https://www.mdpi.com/2072-4292/14/10/2481

 

Prof. Dr Adrian Tunduc | Internet of Things | Editorial Board Member

Prof. Dr Adrian Tunduc | Internet of Things | Editorial Board Member

Prof. Dr Adrian Tunduc | Oradea University | Romania

Prof. Dr Adrian Tunduc is a distinguished academic, researcher, and managerial professional whose career spans higher education, strategic research, and successful leadership across multiple industries. As a senior lecturer at the University of Oradea’s Faculty of Environment, he has achieved an exceptional academic performance score, far exceeding standard benchmarks, while teaching and developing key disciplines such as forest management, forest economics, quality management, tourism management, furniture technology, and wildlife resource management for both graduate and master’s students. His academic excellence is complemented by extensive experience in applied research, notably during his tenure as an associate researcher at the National Economic Research Institute of the Romanian Academy, where he led impactful projects on marketing research, feasibility studies for bio-land certification, Horizon 2020 applications, and strategic planning for the Danube microregion. Beyond academia, he has demonstrated strong business leadership through management roles in hospitality, transport, and manufacturing sectors, including transforming Vila De la Lugas into a high-performing guest facility with exceptional customer ratings. His earlier management of production and transport companies further highlights his ability to grow businesses, optimize operations, and innovate within competitive environments. Throughout his career, he has consistently delivered excellence through strategic thinking, academic rigor, and strong organizational development skills.

Profile: Google Scholar

Featured Publications

1. T., Adrian. (2010). E-Marketing in the Romanian agriculture and rural development.

2. T., Adrian. (2021). Forest governance for the future health of the planet.

3. T., Adrian. (2021). Forest economics: From theory to sustainable applications.

4. Tunduc, A. (2010). Marketing electronic în agricultură şi dezvoltarea rurală. Editura Universităţii din Oradea.

5. T., Adrian. (2018). The cluster concept for a sustainable development of thermal spa in România. Analele Universităţii Oradea, Fascicula Protecţia Mediului, 31(23), 273–277.

6. T., Adrian. (2018). Romanian bioresources – The thermal waters as a contribution to the Romanian tourism development. Analele Universităţii Oradea, Fascicula Protecţia Mediului, 30(23), 259–262.

Prof. Dr. HyunJe Oh | Cyber-Physical Systems | Best Researcher Award

Prof. Dr. HyunJe Oh | Cyber-Physical Systems | Best Researcher Award

Prof. Dr HyunJe Oh | Korea Institute of Construction Technology | South Korea

Prof. Dr. Hyun Je Oh is a highly respected expert in civil, environmental, and water engineering, known for his extensive contributions as a Senior Research Fellow at the Korea Institute of Construction Technology and as a Professor at the University of Science and Technology. With advanced academic training culminating in a Doctor of Philosophy degree in Civil and Environmental Engineering, he has led 112 national research and development projects completed by 2025, contributing significantly to advancements in water treatment, environmental protection, and engineering innovation. His professional leadership includes long-term service in the Clean Water Forum Committee of the National Assembly, presidency of the Korea Society on Water and Wastewater from 2015 to 2017, and chairing the Seoul Metropolitan Government Tap Water Evaluation Committee from 2010 to 2012. Prof. Dr. Oh’s scholarly achievements include 51 published documents, 69 domestic and international research papers, and 421 academic presentations. His work has received 783 citations from 729 referencing documents, supported by a citation index score of 13. He also maintains a strong record in industrial innovation, with 96 patent applications and registrations, 61 officially granted patents, and 17 technologies successfully transferred to industry, demonstrating substantial impact on clean water systems and sustainable engineering practices.

Profile: Scopus

Featured Publications

Oh, H. J. (2026). Optimal data pooling from multiple waterbodies to improve machine-learning predictions of cyanobacterial blooms. Journal of Contaminant Hydrology.

Oh, H. J. (2026). Evaluating circulation-type membrane capacitive deionization as a dual-function system for ion removal and enrichment. Desalination.

Oh, H. J. (2025). Enhanced desalination performance of pilot-scale membrane capacitive deionization system with circulation process. Desalination.

Oh, H. J. (2024). Performance optimization of a pilot-scale membrane capacitive deionization system operating with circulation process. Separation and Purification Technology.

Oh, H. J. (2023). Optimizing operational conditions of pilot-scale membrane capacitive deionization system. Sustainability.