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Analysis of impact load on tubing and shock absorption during perforating

机译:穿孔过程中管道冲击载荷的分析

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摘要

During the past few decades, the technologies of the higher-shot densities, larger perforating guns and tubing-conveyed perforation (TCP) combined well testing have been used widely used for well completions. This results in a large increase of impact loads in the tubing during TCP. The safety of the tubing is directly related to the success of perforation combined well test,which is the key link in the oil and gas production. In this study, the influence factors of perforating impact load have firstly been analyzed. Also the dynamic response of tubing during TCP in three dimensions has been studied by numerical simulation. According to the computing results, the vulnerable parts of tubing during TCP have been found, where the axial impact load is the strongest and it is concluded that the axial shock absorber has the optimal installation position to achieve the best shock absorption effect, which is verified by the case. This study proposes a novel method for the safety analysis of the tubing, which has important significance to provide guidance for the design of field perforating operations and to improve security.
机译:在过去的几十年中,较高射击密度,较大的穿孔枪和管道传送的穿孔(TCP)组合井测试的技术已被广泛用于井井井。这导致在TCP期间管道中的冲击载荷大幅增加。管道的安全性与穿孔综合测试的成功直接相关,这是石油和天然气生产中的关键环节。在这项研究中,首先分析了穿孔冲击载荷的影响因素。通过数值模拟研究了三维TCP期间管道的动态响应。根据计算结果,已经发现了在TCP期间管道的易受攻击的部件,其中轴向冲击载荷是最强的,并且得出结论是轴向减震器具有最佳安装位置,以实现最佳的减震效果,这是验证的最佳的减震效果案件。本研究提出了一种新的管道安全性分析方法,这对为田野穿孔操作设计和提高安全性提供了重要意义。

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