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GRP offshore - applications and design for fire

机译:GRP Offshore - 火灾的应用和设计

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摘要

Glass reinforced plastic members have a number of attractions as structural members, particularly in offshore applications. A primary hindrance to their more widespread use is their perceived poor performance in fire and at elevated temperature. This paper summarises some recent research and provides some indicative results for the performance of pipes, gratings and stringer panel walls at elevated temperature. These give grounds for optimism regarding the use of GRP pultrusions as gratings and members of wall panels. It may be noted here that the examples given all involved relatively thin composite material. Thicker composites generally show a significantly better performance in fire because they tend to form a protective char and then burn away rather slowly as a result of the endothermic reaction. In practice, the most realistic scenarios for fire water systems involve pipes under conditions of empty or stagnant water followed by flowing water. The stagnant water condition is advantageous and unprotected pipes of appropriate wall thickness are clearly viable when they are maintained in this state. It has been shown that, in medium or high water flow conditions, GRE pipes can last for extended periods in fire with little or no further damage after the quasi-steady state condition has been achieved.
机译:玻璃增强塑料构件有许多景点作为结构构件,特别是在海上应用中。他们更广泛使用的主要障碍是他们在火灾中感觉到的差,温度升高。本文总结了最近的一些研究,并为升高温度下的管道,光栅和纵梁面板的性能提供了一些指示性结果。这些为乐观态度提供了关于使用GRP Pultrusions作为墙板的光栅和成员。这里可以注意到,给定的实施例涉及相对薄的复合材料。较厚的复合材料通常在火中显示出明显更好的性能,因为它们倾向于形成保护性焦炭,然后由于吸热反应而相当燃烧。在实践中,火水系统最现实的情景涉及管道在空或停滞水条件下,然后是流动的水。停滞水状况是有利的,并且当它们保持在该状态时,适当的壁厚的不受保护的管道在显然是可行的。已经表明,在培养基或高水流条件下,GRE管道可以持续在实现准稳态条件后几乎没有或没有进一步损坏的延长期。

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