http://scholars.ntou.edu.tw/handle/123456789/26688| Title: | Analysis of wave overtopping and dissipation mechanisms on stepped coastal embankments | Authors: | Shih, Ruey-Syan Li, Chi-Yu. |
Keywords: | Hydraulic model test;Overtopping rate;Attenuation coefficient;Stepped embankment;Irregular wave | Issue Date: | 2026 | Publisher: | SPRINGER | Journal Volume: | 30 | Journal Issue: | 3 | Source: | JOURNAL OF COASTAL CONSERVATION | Abstract: | Coastal protection structures have been widely developed using diverse engineering approaches to mitigate wave over-topping and enhance hydraulic resistance through increased surface roughness. This study examines the effectiveness of stepped embankment configurations in augmenting surface roughness and reducing wave overtopping rates. A series of controlled hydraulic model experiments were conducted to evaluate the performance of stepped-surface embankments in comparison with conventional smooth-surfaced configurations. Wave overtopping characteristics were systematically investigated under a range of wave conditions, with incident wave periods varying from 5 to 15 s. The results demonstrate that the wave energy dissipation performance of both simple-stepped and composite-stepped embankments is strongly influenced by step height and geometric configuration. In contrast, smooth-surfaced embankments consistently exhibit the highest overtopping rates, indicating limited dissipation capacity. Based on the experimental findings, simple-stepped embankments are recommended for application in relatively shallow water conditions, whereas composite-stepped config-urations are more suitable for deeper coastal environments, where enhanced dissipation is required. The study provides a scientific basis for optimizing coastal protection design by integrating hydraulic performance with considerations of envi-ronmental compatibility and structural resilience. Furthermore, the insights into wave-structure interactions over stepped geometries contribute to the advancement of more efficient and sustainable coastal engineering practices. |
URI: | http://scholars.ntou.edu.tw/handle/123456789/26688 | ISSN: | 1400-0350 | DOI: | 10.1007/s11852-026-01218-1 |
| Appears in Collections: | 河海工程學系 |
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