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Full scale validation of the fracture control of a pipeline designed to transport rich natural gas

机译:对用于输送丰富天然气的管道的裂缝控制进行全面验证

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Full-scale fracture propagation tests have validated the design for a major new pipeline to transport gas 1800 miles from British Columbia in Canada to Chicago in the USA. The pipeline, being built by Alliance Pipeline Ltd, will transport rich natural gas, with a higher than normal proportion of heavier hydrocarbons, at a maximum operating pressure of 12,000kPa. This gas mixture and pressure combination imposes a more severe requirement on the pepe steel toughness than that of traditional North American pipelines. The Battelle two curve model, for predicting the ductile propagation arrest toughness, was used by Alliance in setting pipe toughness specifications. However, the proposed gas composition and pressure were in a range beyond that proven by full scale fracture propagation tests. This paper describes the reasons why the two full-scale experiments were required. Details of the construction of the 367m long experimental facility at the BG Technology Spadeadam test site are given along with the key experimental data, which validated Alliance's fracture control design.
机译:全面的裂缝扩展测试已经验证了一条主要的新管道的设计,该管道将从加拿大的不列颠哥伦比亚省向美国的芝加哥运送1800英里。该管道由Alliance Pipeline Ltd建造,将以最高12,000kPa的最大压力输送富含天然气的天然气,其中较重的碳氢化合物所占比例要高于正常水平。与传统的北美管道相比,这种气体混合物和压力组合对pepe钢的韧性提出了更严格的要求。 Alliance在设定管道韧性规格时使用了Battelle两曲线模型来预测延展性的传播停止韧性。但是,建议的气体成分和压力范围超出了全尺寸裂缝扩展测试所证明的范围。本文介绍了为什么需要两次全面实验的原因。给出了BG Technology Spadeadam试验场长367m的实验设施的建设细节以及关键的实验数据,这些数据验证了Alliance的裂缝控制设计。

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