The Stability Analyze of KM. Rejeki Baru Kharisma of Tarakan – Tanjung Selor Route
Ship stability that is not according to the IMO standard will make the ship capsize when operating. The purpose of this research is to determine the cause of the overturn in terms of the stability criteria of the ship. The method used is software of simulation. Stability analysis is carried out wit...
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Diponegoro University
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doaj-d61d5500b5fe4616b6f6e5fbdb59eee42021-06-21T08:55:38ZengDiponegoro UniversityTeknik0852-16972460-99192021-05-01421526210.14710/teknik.v42i1.3128318480The Stability Analyze of KM. Rejeki Baru Kharisma of Tarakan – Tanjung Selor RouteAlamsyah Alamsyah0Zen Zulkarnaen1Suardi Suardi2Program Studi Teknik Perkapalan, Institut Teknologi Kalimantan, IndonesiaProgram Studi Teknik Perkapalan, Institut Teknologi Kalimantan, IndonesiaProgram Studi Teknik Perkapalan, Institut Teknologi Kalimantan, IndonesiaShip stability that is not according to the IMO standard will make the ship capsize when operating. The purpose of this research is to determine the cause of the overturn in terms of the stability criteria of the ship. The method used is software of simulation. Stability analysis is carried out with the load case that occurs in the field when an accident occurs and the ideal loadcase according to PM 104 2017 standards about’s the transportation of operation. The results showed is cargo of goods placed on the roof top (loadcase 1) based on the criteria of Intact Stability; area of the stability arm curve at heeling 0° ~ 30° = 0.9417 m.deg, area 0° ~ 40° = 1,0200 m.deg, 30° ~ 40° = 0.0783 m.deg, GZ value at heeling 30° = 0.029 m, angle of occurrence of maximum GZ = 21.8°, and the initial GMt value = 0.135 m, the results stated that all did not meet the Intact Stability code A.749 criteria, while in it was obtained cargo of goods placed in the hull (loadcase 2) based on Intact Stability; area of the stability arm curve at heeling 0° ~ 30° = 4.5338 m.deg, area 0° ~ 40° = 7.1643 m.deg, area 30° ~ 40° = 2.6305 m.deg, GZ value at heeling 30° = 0.265 m, angle of occurrence of maximum GZ = 34.5°, and the initial GMt value = 0.621 m, the results stated that all met the Intact Stability code A.749 criteriahttps://ejournal.undip.ac.id/index.php/teknik/article/view/31283stablitasterbalikkondisi pemuatanlengan stabilitaskeselamatankapal cepat |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Alamsyah Alamsyah Zen Zulkarnaen Suardi Suardi |
spellingShingle |
Alamsyah Alamsyah Zen Zulkarnaen Suardi Suardi The Stability Analyze of KM. Rejeki Baru Kharisma of Tarakan – Tanjung Selor Route Teknik stablitas terbalik kondisi pemuatan lengan stabilitas keselamatan kapal cepat |
author_facet |
Alamsyah Alamsyah Zen Zulkarnaen Suardi Suardi |
author_sort |
Alamsyah Alamsyah |
title |
The Stability Analyze of KM. Rejeki Baru Kharisma of Tarakan – Tanjung Selor Route |
title_short |
The Stability Analyze of KM. Rejeki Baru Kharisma of Tarakan – Tanjung Selor Route |
title_full |
The Stability Analyze of KM. Rejeki Baru Kharisma of Tarakan – Tanjung Selor Route |
title_fullStr |
The Stability Analyze of KM. Rejeki Baru Kharisma of Tarakan – Tanjung Selor Route |
title_full_unstemmed |
The Stability Analyze of KM. Rejeki Baru Kharisma of Tarakan – Tanjung Selor Route |
title_sort |
stability analyze of km. rejeki baru kharisma of tarakan – tanjung selor route |
publisher |
Diponegoro University |
series |
Teknik |
issn |
0852-1697 2460-9919 |
publishDate |
2021-05-01 |
description |
Ship stability that is not according to the IMO standard will make the ship capsize when operating. The purpose of this research is to determine the cause of the overturn in terms of the stability criteria of the ship. The method used is software of simulation. Stability analysis is carried out with the load case that occurs in the field when an accident occurs and the ideal loadcase according to PM 104 2017 standards about’s the transportation of operation. The results showed is cargo of goods placed on the roof top (loadcase 1) based on the criteria of Intact Stability; area of the stability arm curve at heeling 0° ~ 30° = 0.9417 m.deg, area 0° ~ 40° = 1,0200 m.deg, 30° ~ 40° = 0.0783 m.deg, GZ value at heeling 30° = 0.029 m, angle of occurrence of maximum GZ = 21.8°, and the initial GMt value = 0.135 m, the results stated that all did not meet the Intact Stability code A.749 criteria, while in it was obtained cargo of goods placed in the hull (loadcase 2) based on Intact Stability; area of the stability arm curve at heeling 0° ~ 30° = 4.5338 m.deg, area 0° ~ 40° = 7.1643 m.deg, area 30° ~ 40° = 2.6305 m.deg, GZ value at heeling 30° = 0.265 m, angle of occurrence of maximum GZ = 34.5°, and the initial GMt value = 0.621 m, the results stated that all met the Intact Stability code A.749 criteria |
topic |
stablitas terbalik kondisi pemuatan lengan stabilitas keselamatan kapal cepat |
url |
https://ejournal.undip.ac.id/index.php/teknik/article/view/31283 |
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