Maritime Park: Journal Of Maritime Technology and Socienty
Volume 2, Issue 1, 2023

A Finite Element Analysis of Bottom Structure of LCT Converted from SPOB

Muhammad Uswah Pawara (Naval Architecture Program, Kalimantan Institute of Technology, Balikpapan, Indonesia)
Alamsyah Alamsyah (Naval Architecture Program, Kalimantan Institute of Technology, Balikpapan, Indonesia)
I Putu Arya Kusuma (Naval Architecture Program, Kalimantan Institute of Technology, Balikpapan, Indonesia)
Amalia Ika Wulandari (Naval Architecture Program, Kalimantan Institute of Technology, Balikpapan, Indonesia)
Rodlian Jamal Ikhwani (Naval Architecture Program, Kalimantan Institute of Technology, Balikpapan, Indonesia)
Mursid Nugraha Arifuddin (Naval Architecture Program, Kalimantan Institute of Technology, Balikpapan, Indonesia)



Article Info

Publish Date
27 Feb 2023

Abstract

SPOB (Self-Propelled Oil Barge) ship is useful for transporting oil. Due to certain requests, the owner and operator have converted SPOB into LCT. If before the conversion the ship transported oil, now the ship is transporting vehicles or heavy equipment on the deck. after the transfer of function from a SPOB ship to an LCT (Landing Craft Tank) ship, the cargo transported is different, the bottom is the part that is submerged in the water, so this part is vulnerable. Therefore, it is necessary to systematically predict the weight of the load that can be held by the ship at the bottom, this is so that there is no damage to the structure at the bottom of the ship which can harm the company from the ship owner. The purpose of this study is to find the maximum stress and strain that can be accepted by the ship and the value of the stress ratio (safety factor) in the bottom construction using the finite element method. The results obtained from the maximum stress and strain of the ship after and before conversion of 96.349Mpa, 272.56 Mpa, and 0.0013628 mm, 5.042 x 10-4 mm, safety factor according to BKI after and before conversion obtained 3.624 and 1.057, the safety factor according to the material criteria is 3.685 and 1.172, respectively, for the maximum deformation of the ship, the safety factor is 6.328 and 3.287 respectively

Copyrights © 2023






Journal Info

Abbrev

maritimepark

Publisher

Subject

Civil Engineering, Building, Construction & Architecture Control & Systems Engineering Environmental Science Industrial & Manufacturing Engineering Mechanical Engineering

Description

Isu maritim menjadi fokus utama dunia, hal ini tidak lepas dari bumi kita yang memiliki sekitar 70 persen luas lautan. Jadi penelitian tentang kemaritiman merupakan investasi jangka panjang karena memakan biaya yang banyak dan waktu yang lama, barulah dapat terlihat manfaatnya. Untuk itu, penelitian ...