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Multi-physics analysis - a method for the design of safe pressurised systems to resist accidental fire

机译:多物理场分析-一种设计安全的加压系统以防止意外火灾的方法

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Pressure vessels for on-shore refineries and terminals, and offshore production facilities are often designed in accordance with the API RP 521, which is a Recommended Practice for the design of pressure-relieving and depressurising systems. It is widely recognised that in some aspects the design according to API 521 is inadequate. Recent guidance developments in Norway address this problem and call for the application of design methods where all processes involved in the fire attack and response of pressurised systems are considered. These processes are of a multi-physics nature combining the time-dependent effects of heat transfer from the fire to the vessel, heat conduction through the vessel shell, heat transfer from the vessel shell to the contents of the vessel, thermodynamics of the vessel contents, pressure and stress. This Paper addresses these processes in detail and presents case studies in the application of multi-physics analysis as a method for safe design of pressurised equipment against accidental fires.
机译:陆上炼油厂,码头和海上生产设施的压力容器通常根据API RP 521设计,API RP 521是设计泄压和减压系统的推荐做法。众所周知,在某些方面,根据API 521的设计是不适当的。挪威最近的指导性发展解决了这个问题,并呼吁应用设计方法,其中要考虑到涉及火灾袭击和加压系统响应的所有过程。这些过程具有多物理性质,结合了从火到容器的热传递,通过容器壳的热传导,从容器壳到容器内容物的热传递,容器内容物的热力学随时间变化的影响。 ,压力和压力。本文详细介绍了这些过程,并介绍了在多物理场分析中的案例研究,作为安全设计加压设备以防止意外火灾的一种方法。

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