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ASSESSMENT OF AN EXISTING HOT TAP CONNECTION ON THE BORD GAIS EIREANN BRIGHOUSE BAY GAS EXPORT TERMINAL

机译:对BORD GAIS EIREANN BRIGHAUSE BAN GAS GAS GAS GAS EXPORT终端的现有热龙头连接的评估

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A previous IPC conference paper (1) described the technical challenges associated with the installation of a new hot tap connection, supplementary to an existing hot tap connection, on the Bord Gais Eireann Brighouse Bay high pressure gas export terminal in the UK. Work carried out to verify that the hot tap connection would be fit for purpose included a pipe stress analysis, Finite Element Analysis (FEA) and Engineering Critical Assessment (ECA). These assessments were performed because the split tee shell thickness and consequently also the circumferential fillet weld leg lengths did not achieve the 2 x carrier pipe thickness criterion required by UK specifications for applications where design stress levels exceed 30% specified minimum yield strength. Subsequently, it was identified that the existing hot tap connection installed in 2001 also did not meet the 2 x carrier pipe thickness criterion. Furthermore the material grade was lower than that for newer hot tap, i.e. P355 compared with P460 and the tee had been chamfered down from 50 mm to 40 mm at the ends, leading to reduced section circumferential fillet welds. This resulted in a leaner design than that for the newer hot tap and an ASME B31.3 area replacement calculation revealed that the area replacement ratio barely achieved the 1.0 requirement of the code suggesting a limited tolerance to system loading. Consequently similar stress analysis, FEA and ECA assessments to those previously undertaken were also subsequently performed for the existing hot tap connection. This paper provides details of the analyses and results obtained to determine the integrity of the existing hot tap split tee assembly which required a bespoke approach and a need to challenge conventional thinking.
机译:以前的IPC会议论文(1)描述了与在英国的BORD Gais Eireann Brighouse Bay高压天然气出口终端上的现有热门龙头连接,辅以安装新的热门龙头连接的技术挑战。进行的工作以验证热龙头连接是否适合目的,包括管道应力分析,有限元分析(FEA)和工程关键评估(ECA)。进行这些评估是因为分裂式三通壳厚度以及周向圆角焊缝长度没有达到英国规格所需的2×载波厚度标准,用于设计应力水平超过特定最小屈服强度的30%。随后,识别出2001年安装的现有热龙头连接也不符合2 X载波厚度标准。此外,材料等级低于较新的热点,即P355与P460相比,T恤在两端的50mm至40mm倒角,导致截面圆周圆角焊缝。这导致了更精简的设计,而不是较新的热龙头,ASME B31.3面积替换计算显示,该区域更换比率几乎没有实现了对系统加载有限差的准则的1.0要求。因此,对于现有的热龙头连接,还随后对先前进行的那些进行了类似的应力分析,FEA和ECA评估。本文提供了分析和结果的详细信息,以确定现有热门龙头分裂T恤组装的完整性,该散热器组件需要定制方法,需要挑战常规思维。

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