Abstract
There is a large proportion of pool fire occurrence on the upper part of offshore platforms. In order to reduce the occurrence of fire disasters, the fire risk assessment of FPSOs should be carried out. According to the temperature characteristics of offshore platform fires based on computational fluid dynamics, the temperature field of the superstructure of the offshore platform under pool fire has been analyzed, the regularities of the distribution of the wall temperature of the platform of FPSO under different wind speeds are studied, and research on the distribution of heat radiation flux of different fire is made. Based on the finite element method, the structural response of the platform structure in different fire scenarios has been made. In consideration of the pool fires caused by liquid leakage of the upper part of the platform structure, with the basis of the changes of temperature field and radiation field being obtained by CFD, a structural response analysis of the offshore platform structure using the finite element method and a risk assessment method based on quantitative analysis for pool fires caused by liquid leakage is proposed.
Subject
Building and Construction,Civil and Structural Engineering,Architecture
Reference32 articles.
1. FPSO Handbook;Mather,2009
2. The Floating Production, Storage and Offloading system–past, present and future;Duggal;Proceedings of the Offshore Technology Conference,2020
3. FPSO/FSO: State of the art
4. Safety of Offshore Topside Processing Facilities: The Era of FPSOs and FLNGs;Khakzad,2018
5. Offshore Risk Assessment Vol. 2 Principles, Modelling and Applications of QRA Studies;Vinnem,2014