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S-Curve Rubble Mound Breakwater
The aim of this study is to examine the relationship between the wave steepness (Hi/L) with a stable profile slope of small size stone rubble mound breakwaters. The results of the study are expected to solve the difficulty of getting a big size crushed stone as a required based on Hudson method. Laboratory physical model study under 1:20 geometric scale was performed. The results showed that the initial sloping breakwater was changed into the S Curve shape profile and achieve a stable condition on the profile equation of y = −ax3−bx + c, where a, b and c are the factors which are functions of dHi/L2. Factor c is a relative depth (d’/d). The Equations obtained can be used in the planning and designing of S-Curve rubble mound breakwater with relatively small grain size of rocks.
S-Curve Rubble Mound Breakwater
The aim of this study is to examine the relationship between the wave steepness (Hi/L) with a stable profile slope of small size stone rubble mound breakwaters. The results of the study are expected to solve the difficulty of getting a big size crushed stone as a required based on Hudson method. Laboratory physical model study under 1:20 geometric scale was performed. The results showed that the initial sloping breakwater was changed into the S Curve shape profile and achieve a stable condition on the profile equation of y = −ax3−bx + c, where a, b and c are the factors which are functions of dHi/L2. Factor c is a relative depth (d’/d). The Equations obtained can be used in the planning and designing of S-Curve rubble mound breakwater with relatively small grain size of rocks.
S-Curve Rubble Mound Breakwater
Lecture Notes in Civil Engineering
Mohammed, Bashar S. (editor) / Shafiq, Nasir (editor) / Rahman M. Kutty, Shamsul (editor) / Mohamad, Hisham (editor) / Balogun, Abdul-Lateef (editor) / Thaha, Muhammad Arsyad (author) / Dwipuspita, Andi Ildha (author) / Dharmowijoyo, Dimas Bayu Endrayana (author)
Proceedings of the International Conference on Civil, Offshore and Environmental Engineering ; 2021 ; Kuching, Malaysia
2021-01-01
8 pages
Article/Chapter (Book)
Electronic Resource
English
S-Curve Rubble Mound Breakwater
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