Author:
Safi’i M H,Husna I Z,Puspitasari N W D,Fahmi F A,Dwianggada R Y,Handani D W
Abstract
Abstract
The increasing demand for Liquified Natural Gas (LNG) is directly proportional to the risk of LNG Facilities. One of the risks is fire due to leakage of the LNG storage tank at the LNG terminal. This study aims to predict the impact of jet fire on humans due to leaks of LNG storage tanks using Fire Dynamic Simulator and predict the probability of injury or death due to the accident. This simulation uses LNG storage tank capacity as variations including primary data obtained from field surveys. The first results are Hazard and Operability (HAZOP) analysis which found that the cause of the leak was caused by 3 aspects: overpressure, temperature, and corrosion. In addition, the simulation results show 21 deaths due to thermal radiation that occurred in the 20000 m3 storage tank, with a radius of 250 m from the LNG storage tank and a radiation dose of 9,787,223 W4/3sm−8/ 3. Finally, it is recommended that the LNG storage tank be 1200 m3. have a minimum radius of 80 m from the office or housing while the LNG storage tanks of 7500 m3 and 20000 m3 must be 185 m and 250 m apart from the residence.
Reference14 articles.
1. Online prediction of ship behavior with automatic identification system sensor data using bidirectional long short-term memory recurrent neural network;Gao;Sens. Switz,2018
2. Assessment of Cascading Accidents of Frostbite, Fire, and Explosion Caused by Liquefied Natural Gas Leakage;Yue;Adv. Civ. Eng,2020
3. Modelling large LNG pool fires on water;Betteridge;J. Loss Prev. Process Ind,2018
4. Contribution of the lessons learned from oil refining accidents to the industrial risks assessment;Samia;Manag. Environ. Qual. Int. J.,2018
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