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The application of CFRP to strengthen buried steel pipelines against subsurface explosion

机译:CFRP在地下埋管加固中的应用。

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Multiple explosions in the route of oil and gas transmission pipelines during recent years demonstrate that terrorist attacks and sabotages have unfortunately increased. The present investigation is carried out numerically in order to minimize the amount of damages imposed on steel pipelines under close-in explosions. This research presents a novel concept, using CFRP (Carbon Fiber Reinforced Polymer) to strengthen the wall of steel pipelines against these incidents. For this purpose, a full coupled 3D finite element model developed using a combined Eulerian-Lagrangian method. The simplified Johnson-Cook material model, the JWL equation of state, and the ideal gas equation of state were employed for modeling the pipe material behavior, charge detonation, and air, respectively. Mechanical behavior of the composite wrap was simulated using an anisotropic material model and the damage initiation criteria were based on Hashin's theory. In addition, soil mass behavior was modeled applying a Drucker-Prager strength criterion with piecewise hardening and hydro tensile limit accompanied by Mie-Gruneisen equation of state. Several comparisons carried out between the results from present investigation and those from field and empirical studies and good agreements were observed. The results show that using a proper thickness of CFRP wrap for every particular circumstance can significantly improve the performance of steel pipelines under blast loads. For instance, in the current example, maximum equivalent strains developed in the most of the studied pipelines decreased by over 30% (up to 64%) with the application of 4-mm-thickness CFRP wrap. The present study contributes to protective design of steel, pipelines. (C) 2016 Elsevier Ltd. All rights reserved.
机译:近年来,石油和天然气输送管道的多次爆炸表明,不幸的是恐怖袭击和破坏活动增加了。为了使在近距离爆炸下对钢管造成的损害最小化,本研究以数字方式进行。这项研究提出了一种新颖的概念,即使用CFRP(碳纤维增强聚合物)来加固钢管壁以抵御这些事故。为此,使用组合的欧拉-拉格朗日方法开发了全耦合3D有限元模型。使用简化的Johnson-Cook材料模型,JWL状态方程和理想气体状态方程分别对管道材料的行为,装药爆轰和空气建模。使用各向异性材料模型模拟了复合材料包裹物的力学行为,并且基于Hashin的理论来确定损伤的起始标准。此外,使用具有分段硬化和水力拉伸极限的Drucker-Prager强度准则以及Mie-Gruneisen状态方程对土壤质量行为进行建模。目前的调查结果与实地调查,实证研究和良好协议之间进行了几次比较。结果表明,在每种特定情况下使用适当厚度的CFRP包裹材料,都可以显着改善爆炸载荷下钢管的性能。例如,在当前示例中,使用4毫米厚的CFRP缠绕膜,在大多数研究管道中产生的最大等效应变降低了30%以上(最高64%)。本研究有助于钢,管道的防护设计。 (C)2016 Elsevier Ltd.保留所有权利。

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