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Newly Developed Seismic Resilient Steel Pipe Joint Safeguards: Pipeline Structural Integrity during Severe Geohazard Events

机译:新开发的地震弹性钢管联合保障:在严重地质血清事件中的管道结构完整性

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The mechanical performance of lap welded joints is essential for safeguarding the structural integrity of steel water pipelines, after a severe earthquake or other geohazard loadings. Over the past 4 years, an extensive experimental project was launched to determine the structural performance of lap welded joints under the most severe ground deformations. The research consisted of full-scale physical experiments, supported, and validated by rigorous numerical finite element simulations. The experimental results have indicated a remarkable strength and deformation capacity of the standard lap welded joints without loss of water containment. In addition questions related to local lap weld joint deformation were elucidated and the corresponding strains developed under extreme tensile or compressive loads at critical locations were quantified, demonstrating the ability of those joints to sustain a significant amount of local strain at critical locations. The latest phase of the research focuses on the behavior, analysis, and design of a new seismic resistant lap welded joint. Results of a series of additional full-scale experiments, supported by finite element numerical simulations, on the mechanical performance of the new lap welded joints under severe structural (axial and bending) loading conditions are presented herein. The new lap weld joint comprises the standard lap weld configuration but contains a small geometric projection introduced at a specific location near the field applied fillet weld. Based on current research results, a modification of the standard lap welded joint is proven to result in consistent buckling of the steel pipe cylinder and not the lap weld joint, during severe or extreme loading. The proposed joint, referred to as "Atlas Seismic Resilient or ATLAS SR-joint", effectively allows steel pipe to not be limited by the capacity of the standard lap welded joint during strong seismic or geohazard events, and offers an efficient, reliable, yet economical solution for welded joints in steel water pipelines in geohazard areas.
机译:搭接的焊接接头的机械性能是维护钢水管道的结构完整性,严重的地震或其他地质灾害载荷之后必不可少的。在过去的4年中,大量的实验项目,以确定一圈的结构性能焊接在最严重的地面变形的关节。这项研究包括了全面的物理实验,支持,并通过严格的有限元数值模拟验证。实验结果表明标准棉卷的一个显着的强度和变形能力焊接接头而不水保存的损失。除了与局部搭接问题熔接接头变形分别鉴定和下极端拉伸或在关键位置的压缩载荷开发了相应的菌株进行定量,这表明这些关节的,以维持关键位置局部应变的显著量的能力。这项研究的最新阶段侧重于行为,分析和新的抗震搭接设计焊接接头。一系列附加的全规模的实验,通过有限元数值模拟的支持,在新的棉卷的机械性能的结果焊接接头下严重的结构(轴向和弯曲)的本文中所呈现的负载条件。新棉卷焊接接头包括标准搭接焊缝的配置,但在含有靠近场的特定位置引入一个小的几何投影施加角焊缝。基于目前的研究成果,标准圈的变形焊接接头被证明导致钢管汽缸一致的屈曲和不搭接的焊接接头,严重的或极端载荷期间。所提出的关节中,被称为“阿特拉斯地震弹性或ATLAS SR-关节”,有效地允许钢管不受标准棉卷的容量在强地震或地质灾害事件限于焊接接头,并提供了一种高效的,可靠的,但用于在地质灾害区域钢水管道焊接接头经济的解决方案。

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