Skenario konsekuensi analisis pengangkutan LNG Semarang-Yogyakarta dengan simulasi ALOHA

Didik Supriyadi
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Abstract

Liquefied Natural Gas (LNG) is one of the potential alternative fuels to replace conventional fuels. Using LNG as fuel in Indonesia especially Yogyakarta will give many advantages, for instance, reduced greenhouse gas emissions so that eco-city in Yogyakarta can be realized. Although LNG has many advantages, LNG still contains many hazards whether during storage or distribution, the major hazard is radiant heat. This study aims to analyze and simulate hazard scenarios when transporting LNG such as fire pools, fireballs and vapor clouds and establishing exclusion zone by Areal Location of Hazardous Atmospheres (ALOHA) simulation. This study assumes that the diameter of the tank leak is 1 in and 3 in. The simulation results the exclusion zone from pool fire’s heat radiation from 1 in and 3 in leaks are more than 14 m and 39 m. While the safe distance of the fireball is 799 m. While in the distance vapor clouds that have a possibility of fire for the diameter leakage of 1 and 3 in are 21 m and 59 m.
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液化天然气(LNG)是一种有潜力取代常规燃料的替代燃料。在印度尼西亚,特别是日惹使用液化天然气作为燃料将带来许多优势,例如,减少温室气体排放,从而实现日惹生态城市。尽管液化天然气具有许多优点,但液化天然气无论是在储存还是在运输过程中仍然存在许多危害,其中最主要的危害是辐射热。本研究旨在通过ALOHA模拟,分析和模拟LNG运输过程中的火灾池、火球和蒸汽云等危险情景,并建立禁区。本研究假设油罐泄漏的直径为1英寸和3英寸。模拟结果表明,1 in和3 in泄漏处池火隔离区的热辐射分别大于14 m和39 m。而火球的安全距离为799米。而在远处,泄漏直径为1英寸和3英寸的蒸汽云有着火的可能性,分别为21米和59米。
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