Wave run-up on sandbag slopes
On occasions, sandbag revetments are temporarily applied to armour sandy beaches from erosion. Nevertheless, an empirical formula to determine the wave run -up height on sandbag slopes has not been available heretofore. In this study a wave run-up formula which considers the roughness of slo...
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Online Access: | http://www.mijst.mju.ac.th/vol8/48-57.pdf |
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doaj-414c41a5fa3043e2a75215b7bd06ca2d2020-11-24T21:00:40ZengMaejo UniversityMaejo International Journal of Science and Technology1905-78731905-78732014-03-01801485710.14456/mijst.2014.5Wave run-up on sandbag slopesThamnoon Rasmeemasmuang 0Wanich Chuenjai 1Winyu Rattanapitikon2Department of Civil Engineering, Burapha University, Chonburi, ThailandDepartment of Civil Engineering, Burapha University, Chonburi, ThailandSirindhorn International Institute of Technology, Thammasat University, Pathumthani, ThailandOn occasions, sandbag revetments are temporarily applied to armour sandy beaches from erosion. Nevertheless, an empirical formula to determine the wave run -up height on sandbag slopes has not been available heretofore. In this study a wave run-up formula which considers the roughness of slope surfaces is proposed for the case of sandbag slopes. A series of laboratory experiments on the wave run -up on smooth slopes and sandbag slopes were conducted in a regular-wave flume, leading to the finding of empirical parameters for the formula. The proposed empirical formula is applicable to wave steepness ranging from 0.01 to 0.14 and to the thickness of placed sandbags relative to the wave height ranging from 0.17 to 3.0. The study shows that the wave run-up height computed by the formula for the sandbag slopes is 26-40% lower than that computed by the formula for the smooth slopes.http://www.mijst.mju.ac.th/vol8/48-57.pdfwave run-upcoastal protectionsandbag revetmentwave steepnesssurf similarity parameter |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Thamnoon Rasmeemasmuang Wanich Chuenjai Winyu Rattanapitikon |
spellingShingle |
Thamnoon Rasmeemasmuang Wanich Chuenjai Winyu Rattanapitikon Wave run-up on sandbag slopes Maejo International Journal of Science and Technology wave run-up coastal protection sandbag revetment wave steepness surf similarity parameter |
author_facet |
Thamnoon Rasmeemasmuang Wanich Chuenjai Winyu Rattanapitikon |
author_sort |
Thamnoon Rasmeemasmuang |
title |
Wave run-up on sandbag slopes |
title_short |
Wave run-up on sandbag slopes |
title_full |
Wave run-up on sandbag slopes |
title_fullStr |
Wave run-up on sandbag slopes |
title_full_unstemmed |
Wave run-up on sandbag slopes |
title_sort |
wave run-up on sandbag slopes |
publisher |
Maejo University |
series |
Maejo International Journal of Science and Technology |
issn |
1905-7873 1905-7873 |
publishDate |
2014-03-01 |
description |
On occasions, sandbag revetments are temporarily applied to armour sandy beaches from erosion. Nevertheless, an empirical formula to determine the wave run -up height on sandbag slopes has not been available heretofore. In this study a wave run-up formula which considers the roughness of slope surfaces is proposed for the case of sandbag slopes. A series of laboratory experiments on the wave run -up on smooth slopes and sandbag slopes were conducted in a regular-wave flume, leading to the finding of empirical parameters for the formula. The proposed empirical formula is applicable to wave steepness ranging from 0.01 to 0.14 and to the thickness of placed sandbags relative to the wave height ranging from 0.17 to 3.0. The study shows that the wave run-up height computed by the formula for the sandbag slopes is 26-40% lower than that computed by the formula for the smooth slopes. |
topic |
wave run-up coastal protection sandbag revetment wave steepness surf similarity parameter |
url |
http://www.mijst.mju.ac.th/vol8/48-57.pdf |
work_keys_str_mv |
AT thamnoonrasmeemasmuang waverunuponsandbagslopes AT wanichchuenjai waverunuponsandbagslopes AT winyurattanapitikon waverunuponsandbagslopes |
_version_ |
1716779005898653696 |