2022
DOI: 10.14710/ijoce.v4i1.12929
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Model Fisik Pengaruh Armour Cylinder Concrete pada Vertical Breakwater Terhadap Koefisien Refleksi Gelombang

Abstract: Vertical Breakwater merupakan salah satu bangunan pantai yang dapat digunakan untuk melindungi pantai dari erosi maupun abrasi. Vertical breakwater sering kali mengalami kerusakan dan kegagalan struktur yang disebabkan oleh hantaman gelombang yang mengenai bangunan sehingga perlu ditambahkannya lapisan armour, salah satunya cylinder concrete. Lapisan armour cylinder concrete merupakan salah satu inovasi lapisan pelindung yang mempunyai beberapa kelebihan yaitu proses pembuatan dan perencanan mudah dan cepat da… Show more

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Cited by 3 publications
(2 citation statements)
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“…This study used a scale of 1:30 as a comparison between test objects in the laboratory and reality in the field. The determination of the scale was based on the experimental scale by considering the laboratory capacity, test tubes and sample material, as well as supporting literature based on previous research (Alfani et al, 2022). In building scaling, there were no definite criteria regarding the scale range used, but most laboratory experiments have been successful with a scale range of 1:10 to 1:50 depending on the tested parameters and laboratory capacity (Esmaeilpour et al, 2023).…”
Section: Methodsmentioning
confidence: 99%
“…This study used a scale of 1:30 as a comparison between test objects in the laboratory and reality in the field. The determination of the scale was based on the experimental scale by considering the laboratory capacity, test tubes and sample material, as well as supporting literature based on previous research (Alfani et al, 2022). In building scaling, there were no definite criteria regarding the scale range used, but most laboratory experiments have been successful with a scale range of 1:10 to 1:50 depending on the tested parameters and laboratory capacity (Esmaeilpour et al, 2023).…”
Section: Methodsmentioning
confidence: 99%
“…To achieve the planned specimen characteristics (cu) of 0.211 kg/cm 2 and a water content (wc) of 58.631%, the slurry needed to be subjected to an effective stress load (σp') of 114,149 kN/m 2 over a timeframe (t) of 5 to 7 days. In this laboratory study, a 1/30 scale was adopted, consistent with the field scale used by Alfani et al [18,19]. The resulting clay soil test object, obtained through loading, had a diameter (ds) of 0.33 m and a height (Hs) of 0.185 m. The loading process of the slurry is visually represented in Fig.…”
Section: Manufacture Of Test Objectsmentioning
confidence: 99%