Ashvinie Thembiliyagoda | Water Resources Engineering | Innovative Research Award

Innovative Research Award

Ashvinie Thembiliyagoda
University of Moratuwa

Ashvinie Thembiliyagoda
Affiliation University of Moratuwa
Country Sri Lanka
Scopus ID 58869897300
Documents 3
Citations 7
h-index 1
Subject Area Water Resources Engineering
Event Global Civil Engineering Awards
ORCID 0009-0009-0233-8949

Ashvinie Thembiliyagoda is a researcher associated with the Department of Civil Engineering at the University of Moratuwa whose research interests center on water resources engineering, hydraulic modelling, river processes, and bridge-pier scour. Her published work examines numerical and physical approaches for understanding sediment erosion around bridge structures, with particular attention to two-dimensional HEC-RAS modelling and the interpretation of scour processes in Sri Lankan rivers. Her research portfolio connects hydraulic engineering with infrastructure safety and computational analysis, providing an applied basis for assessing river–structure interactions and developing more informed approaches to bridge scour assessment. [1]

Abstract

Ashvinie Thembiliyagoda’s research focuses on water resources engineering, hydraulic modelling, and bridge-pier scour assessment. Her work investigates riverbed erosion around bridge structures using computational hydraulic methods, particularly HEC-RAS two-dimensional modelling, together with physical validation approaches. Studies involving the Kelanisiri and Hanwella bridges examine scour depth estimation, hydraulic behaviour, and numerical model performance under river-flow conditions. Her research also compares one-dimensional and two-dimensional modelling approaches, linking computational results with infrastructure safety considerations. This developing research profile demonstrates an applied interest in river hydraulics, sediment processes, bridge resilience, and engineering methods for assessing scour-related risks in Sri Lankan river systems. [2]

Keywords

Water Resources Engineering; Hydraulic Modelling; HEC-RAS 2D; Bridge-Pier Scour; River Hydraulics; Sediment Transport; Civil Engineering; Hydrodynamic Modelling; Scour Depth Estimation; Infrastructure Resilience.

Introduction

Bridge-pier scour is an important hydraulic and geotechnical consideration because flowing water can remove sediment surrounding structural foundations. The resulting change in riverbed elevation can influence hydraulic conditions and the stability assessment of bridge infrastructure. Thembiliyagoda’s research addresses this problem through numerical modelling and field-oriented case studies in Sri Lanka. Her early published research applied HEC-RAS 2D to estimate scour around bridge piers at the Kelanisiri Bridge and examined model results against observed information. [2]

Research Profile

Thembiliyagoda is affiliated with the University of Moratuwa and is associated with civil engineering research involving water-related processes and hydraulic infrastructure. Public research records identify her work on bridge scour, HEC-RAS modelling, riverbed erosion, and comparative numerical analysis. Her publication activity shows a progression from case-specific scour simulation toward broader investigation of model validation and the relationship between numerical predictions and physical behaviour. [1]

Research Contributions

A central contribution of Thembiliyagoda’s work is the application of two-dimensional hydraulic modelling to bridge-pier scour assessment. Her Kelanisiri Bridge study used HEC-RAS to investigate bed-level changes around bridge piers during a flood event, reporting simulated scour depths and evaluating model performance using observed information. [2] This approach demonstrates how computational modelling can be applied to a specific infrastructure problem rather than treating river hydraulics only as a theoretical subject.

Publications

The researcher’s documented publication record includes conference and journal work addressing bridge-pier scour and hydraulic modelling. Selected works demonstrate a coherent research direction spanning numerical simulation, comparative modelling, and model validation.

Research Impact

The practical relevance of this research lies in its connection between river hydraulics and infrastructure assessment. Bridge scour modelling can support engineers in understanding changes in riverbed elevation and in examining locations where hydraulic conditions may affect bridge foundations. Thembiliyagoda’s work contributes case-based evidence from Sri Lankan river systems and demonstrates the use of numerical tools for investigating scour processes. [2]

Award Suitability

The documented research profile aligns with an Innovative Research Award theme through its focus on applied hydraulic modelling and infrastructure-related water resources research. Thembiliyagoda’s studies address a defined engineering problem, use computational methods to investigate scour behaviour, and incorporate comparative or physical validation approaches. Her research therefore provides a clear academic basis for recognition within a civil engineering or water resources research context, subject to the award programme’s independent eligibility and evaluation procedures.

Conclusion

Ashvinie Thembiliyagoda’s research is characterized by an applied focus on water resources engineering, hydraulic modelling, and bridge-pier scour. Her work combines HEC-RAS-based numerical simulation with comparative analysis and physical validation, using Sri Lankan bridge and river environments as important case contexts. The resulting research direction connects computational hydraulic analysis with practical questions of bridge infrastructure and river-system management. Her developing publication record provides a coherent foundation for continued research into scour prediction, river morphology, hydraulic modelling, and infrastructure resilience.

References

  1. ResearchGate. (n.d.). Ashvinie Thembiliyagoda — Research profile. University of Moratuwa, Department of Civil Engineering.
    https://www.researchgate.net/profile/Ashvinie-Thembiliyagoda
  2. Thembiliyagoda, A., De Silva, K., & Wijayaratna, N. (2023). Application of HEC-RAS 2D Model to Simulate Scour Depth Around Bridge Piers—A Case Study on Kelanisiri Bridge, Sri Lanka. 2023 Moratuwa Engineering Research Conference, 660–665.
    https://doi.org/10.1109/MERCon60487.2023.10355411
  3. Thembiliyagoda, A., De Silva, K., & Wijayaratna, N. (2024). Comparative Analysis of 1D and 2D Modeling Approaches for Scour Depth Estimation: A Case Study of the Kelanisiri Bridge, Sri Lanka. Journal of Civil and Hydraulic Engineering, 2(3), 171–184.
    https://doi.org/10.56578/jche020304
  4. Thembiliyagoda, A., De Silva, K., & Wijayaratna, N. (2026). Hydrodynamic and morphological simulation of scour evolution around bridge piers due to sand mining activities using HEC-RAS 2D: a case study from Kelani River, Sri Lanka. Modeling Earth Systems and Environment, 12(2).
    https://doi.org/10.1007/s40808-026-02742-7
  5. Rathnayake, H. M., Thembiliyagoda, A., & De Silva, K. (2024). Validating Numerical Model for Bridge Pier Scour Estimation Through Physical Modelling—Case Study of Kelanisiri Bridge. 2024 Moratuwa Engineering Research Conference, 500–505.
    https://doi.org/10.1109/MERCon63886.2024.10688772

Wei Luo | Water Resources Engineering | Innovative Research Award

Innovative Research Award

Wei Luo
China Three Gorges University

Wei Luo
Affiliation China Three Gorges University
Country China
Scopus ID 56707975900
Documents 22
Citations 145
h-index 7
Subject Area Water Resources Engineering
Event Global Civil Engineering Awards

Wei Luo is a researcher affiliated with China Three Gorges University whose documented research profile is associated with Water Resources Engineering. The profile identified by Scopus author ID 56707975900 records 22 documents, 145 citations, and an h-index of 7. These bibliometric indicators provide a structured view of the researcher’s indexed scholarly output and citation record. The Innovative Research Award profile places this research activity within the broader context of civil and water resources engineering, where scholarly research contributes to the understanding, development, and management of water-related engineering systems. The information presented is intended as an academic recognition profile based on the supplied bibliographic record.

Abstract

Wei Luo is a researcher affiliated with China Three Gorges University and associated with the subject area of Water Resources Engineering. The supplied Scopus profile identifies 22 indexed documents, 145 citations, and an h-index of 7. These indicators provide a bibliometric representation of scholarly activity and citation visibility within indexed research literature. The Innovative Research Award profile recognizes this research record in the broader context of civil engineering and water resources research. This article summarizes the documented affiliation, research area, publication record, bibliometric indicators, and relevance of the research profile to an academic recognition framework without making claims beyond the supplied information.

Keywords

Wei Luo; Innovative Research Award; Water Resources Engineering; Civil Engineering; China Three Gorges University; Scopus; research publications; citation analysis; h-index; academic research.

Introduction

Water Resources Engineering encompasses engineering approaches concerned with the assessment, development, management, and protection of water-related systems. It forms an important component of civil engineering because water infrastructure and resource management require systematic analysis of physical processes, engineering systems, and environmental conditions. Wei Luo’s documented subject-area classification places the research profile within this interdisciplinary engineering context. The supplied Scopus record provides bibliometric information that can be used to describe the researcher’s indexed scholarly presence. [1]

Research Profile

Wei Luo is affiliated with China Three Gorges University in China and is identified with Water Resources Engineering. The supplied Scopus author record is associated with author ID 56707975900 and reports 22 documents, 145 citations, and an h-index of 7. These values describe the indexed research record supplied for this profile and should be interpreted as bibliometric indicators rather than as independent measures of research quality. [1]

Research Contributions

The documented research area connects Wei Luo’s academic profile with Water Resources Engineering, a field that supports engineering analysis and planning for water-related systems. On the basis of the supplied information, the profile can be situated within civil engineering research concerned with water resources. Specific methodological contributions, individual research findings, projects, or technological outcomes should be assessed from the underlying publications rather than inferred solely from bibliometric indicators. [1]

Publications

The supplied bibliometric record identifies 22 documents associated with Wei Luo’s Scopus author profile. These documents constitute the indexed publication basis for the reported citation and h-index indicators. A complete assessment of publication themes, journals, collaboration patterns, individual article contributions, and research methodologies would require examination of the underlying indexed records. The Scopus author profile provides the appropriate bibliographic source for verifying the publication record. [3]

Research Impact

The supplied profile records 145 citations and an h-index of 7 across the identified Scopus record. Citation counts can provide one quantitative indication of how frequently indexed publications have been cited within scholarly literature, while the h-index combines publication and citation dimensions. Such indicators are dependent on database coverage, citation practices, publication age, and disciplinary patterns, and therefore provide contextual evidence rather than a complete assessment of research influence. [1]

Award Suitability

The supplied profile information places Wei Luo within Water Resources Engineering and documents an indexed research record through Scopus. These characteristics provide a factual basis for presenting the researcher within an academic recognition context associated with civil engineering. Final award eligibility or selection should be determined according to the published criteria, documentation requirements, evaluation procedures, and decision-making process of the Global Civil Engineering Awards. [2]

Conclusion

Wei Luo’s supplied academic profile identifies China Three Gorges University as the institutional affiliation and Water Resources Engineering as the subject area. The associated Scopus record reports 22 documents, 145 citations, and an h-index of 7. Together, these details provide a concise bibliometric and disciplinary description of the research profile. The Innovative Research Award recognition context connects the documented research activity with the wider academic landscape of civil and water resources engineering while leaving detailed assessment of individual research contributions to the underlying scholarly record and applicable award criteria.

References

  1. Elsevier. (n.d.). Scopus author details: Wei Luo, Author ID 56707975900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56707975900
  2. Global Civil Engineering Awards. (2026). Official award website and recognition information.
    https://civilengineeringawards.com/
  3. Elsevier. (2026). The enhanced VECD model for hydraulic asphalt concrete damage evolution under UV and thermal-oxidative aging.
    https://doi.org/10.1016/j.conbuildmat.2026.147556
  4. Effects of magnet arrangement on the separation behavior of magnetic particles in high-concentration suspensions based on numerical simulations: Magnetic force induced eddies.
    https://doi.org/10.1080/01496395.2023.2198105