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A New Model For Hydrogen-Induced Crack (HIC) Growth in Metal Alloy Pipelines Under Extreme Pressure

机译:极压下金属合金管道氢诱导裂纹(HIC)生长的新模型

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Pipeline failure caused by Hydrogen-Induced Cracking (HIC), also known as Hydrogen Embrittlement (HE), is a pressing issue for the oil and natural gas industry. Bursts in pipelines are devastating and extremely costly. The explosive force of a bursting pipe can inflict fatal injuries to workers, while the combined loss of product and effort to repair are highly costly to producers. Further, pipeline failures due to HIC have a long lasting impact on the surrounding environment. Safe use and operation of such pipelines depend on a good understanding of the underlying forces that cause HIC. Specifically, a reliable way to predict the growth rate of hydrogen-induced cracks is needed to establish a safe duration of service for each length of pipeline. Pipes that have exceeded or are near the end of their service life can then be retired before the risk of HIC-related failures becomes too high. However, little is known about the mechanisms that drive HIC. To date, no model has been put forth that accurately predicts the growth rate of fractures due to HIC under extreme pressures, such as in the context of natural gas and petroleum pipelines. Herein, a mathematical model for the growth of fractures by HIC under extreme pressures is presented. This model is derived from first principles, and the results are compared with other models. The implications of these findings are discussed, and a description of future work based on these findings is presented.
机译:氢诱导的裂化(HIC)引起的管道失效,也称为氢脆(HI),是石油和天然气工业的压制问题。管道中的爆发是毁灭性的,非常昂贵。爆破管道的爆炸力可能会对工人造成致命伤害,而制造商的产品和努力的联合损失是高昂的。此外,由于HIC引起的管道故障对周围环境产生了较长的影响。这种管道的安全使用和操作取决于对导致HIC的潜在力量的良好理解。具体地,需要一种可靠的方法来预测氢引起的裂缝的生长速率,以确定每条管道的安全持续时间。然后在与其与服务生活的终结结束时的管道可以在与之相关的失败风险之前退休。然而,关于驱动HIC的机制少知之甚少。迄今为止,没有提出模型,可在极端压力下准确预测由于HIC引起的骨折的生长速度,例如在天然气和石油管道的背景下。这里,提出了在极限压力下通过HIC进行骨折生长的数学模型。该模型来自第一原理,结果与其他模型进行了比较。讨论了这些发现的含义,并介绍了基于这些发现的未来工作的描述。

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