首页> 外文会议>International pipeline conference >FULL ENCIRCLEMENT ENGINEERED LAMINATED STEEL SLEEVE SYSTEM FOR REPAIRS AND AUGMENTATION OF PIPELINES: THE ENGINEERING DEVELOPMENT, VALIDATION TEST RESULTS, AND IMPLICATIONS FOR MITIGATION OF BOTH STRESS AND STRAIN DEPENDENT INTEGRITY THREATS
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FULL ENCIRCLEMENT ENGINEERED LAMINATED STEEL SLEEVE SYSTEM FOR REPAIRS AND AUGMENTATION OF PIPELINES: THE ENGINEERING DEVELOPMENT, VALIDATION TEST RESULTS, AND IMPLICATIONS FOR MITIGATION OF BOTH STRESS AND STRAIN DEPENDENT INTEGRITY THREATS

机译:用于维修和增强管道的完整包围工程夹层套管系统:工程开发,验证测试结果,以及减轻压力和应变依赖性完整性威胁的影响

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A full encirclement thin layer steel laminated sleeve system has been designed, developed, and optimized for pipeline integrity management applications. Development goals included the elimination of thixotropic concerns as well as the exclusion of the degradation of material properties of composite repairs. Elimination of cyclical fatigue of welded repairs and safety concerns associated with hot work were also considerations. The use of thin layer steel with a modulus matched to base pipe and steel's homogenous isotropic properties enable axial calculations and evaluation of strain-based concerns. The thin layer steel laminated design results in extremely high fracture toughness and promotes intrinsic mitigation of potential future third party damage. The resulting system has demonstrated the reliable engineering data and analysis required for pipeline repairs and demonstrates applicability for the augmentation of existing pipes without defects. An Engineering Critical Assessment (ECA) has been completed. This ECA follows the industry's precedents of ASME B31G and ASME PCC-2 Article 4 type assessments and provides operators with greater functionality. This ECA has been named the Leewis Augmentation Analysis (LAA) and is presented, reviewed, and discussed. Third party full scale ASME PCC-2 style burst testing has been completed. The results are presented. Highly instrumented tests were also conducted to determine an effective modulus of elasticity of the installed system as well as a determination of any delay in system acceptance of load. As installed, an effective modulus of 14 million psig (96526.60 MP)a with loading in layer 3 of the laminate at only 50 micro strain is reviewed. Long term creep and cyclical fatigue testing of the steel/adhesive laminate is presented and reviewed. 10 million cycles at 50% of ultimate lap shear has been achieved, which exceeds current industry practice by several orders of magnitude. The classic metal loss defect mitigation principle is reviewed and updated in light of these available technical advances. Finally, the implications for mitigation of both stress and strain dependent integrity concerns is discussed.
机译:一个完整的合围薄层钢层压套筒系统已经设计,开发和用于管道完整性管理应用进行了优化。发展目标包括触变性的担忧消除,以及复合材料修理的材料性能退化的排斥。热加工相关的焊接维修和安全问题的周期性消除疲劳也考虑。薄层钢的相匹配的基管和钢的均匀各向同性性质的弹性模量的用途使轴向计算和基于应变的顾虑评价。薄层钢层叠设计导致非常高的断裂韧性和促进的潜在的未来第三方损伤固有减轻。所得到的系统已经证明管道修理所需的可靠的工程数据和分析,并演示适用性已埋设管的无缺陷的增强。一个工程临界评估(ECA)已经完成。这ECA遵循行业的ASME B31G和ASME PCC-2第4条型评估的先例,并为运营商提供更强大的功能。这ECA先后被评为Leewis增强分析(LAA)并提出,审查和讨论。第三方满量程ASME PCC-2型爆的测试已经完成。结果呈现。还进行了高度仪表测试,以确定所安装的系统的弹性的有效弹性模量,以及在系统接受负荷的任何延迟的确定。如安装,1400万磅(96526.60 MP)一个与所述层叠体的层3装载在仅50微应变的有效模量审查。长期蠕变和钢/粘附用层叠体的周期性疲劳试验被呈现和审查。在最终搭接剪切的50%10万次循环已经实现,其通过几个数量级超过当前的工业实践。经典的金属损失缺陷减轻原则审查和光这些可用技术进步的更新。最后,对于应力和应变依赖性完整性问题的缓解的影响进行了讨论。

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