Improved Surface Loading Stress Analysis Method Considering Protection Measures

Shenwei Zhang, Ke Zhang, Maria Pino, Jonathan Law, Tammie Matchim
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Abstract

This paper presents a methodology to evaluate pipe stress induced by surface vehicle loading at uncased road crossings that are protected by mat or bridging. When vehicles cross an existing pipeline, additional circumferential and longitudinal pipe stresses induced by surface vehicle loadings should be comprehensively considered to ensure pipe integrity and safe operation. Surface protection measures are sometimes installed to distribute the surface loading away from pipe centerline and reduce “footprint pressure”. A modified CEPA equation was proposed to calculate the radius of relative stiffness (or effective length) of mat and was validated by comparing with results from continuum FEA. The effective length calculated by the modified equation demonstrates good consistency with the FEA-predicted effective length. An approach was proposed to evaluate the pipe stress with user-defined free span of bridging, which provide flexibility for optimizing bridging protection in the field. A tool was developed to facilitate the assessment of surface loading stress of pipeline with mat or bridging protection. Case studies were presented to demonstrate the application of the proposed methods and the effect of mat thickness or bridging free span on the reduction of live load stress. The proposed methods will benefit pipeline operators with derived cost-effective protection measures for vehicle crossing while assuring safety of pipeline operation.
考虑保护措施的改进表面载荷应力分析方法
本文提出了一种方法来评估由地面车辆荷载引起的管道应力在无套管的道路交叉路口,保护垫或桥梁。当车辆穿越现有管道时,应综合考虑地面车辆荷载引起的额外周向和纵向管道应力,以确保管道的完整性和安全运行。有时会安装地面保护措施,将地面载荷分散到远离管道中心线的地方,减少“足迹压力”。提出了一种修正的CEPA方程来计算垫块的相对刚度半径(或有效长度),并与连续有限元结果进行了对比验证。修正方程计算的有效长度与有限元预测的有效长度吻合较好。提出了一种基于自定义桥架自由跨度的管道应力评估方法,为现场优化桥架保护提供了灵活性。开发了一种工具,以方便地评估具有垫层或桥接保护的管道的表面载荷应力。通过实例分析,论证了所提方法的应用以及垫板厚度或桥梁自由跨度对降低活载应力的影响。所提出的方法在保证管道运行安全的同时,为管道运营商提供了经济有效的车辆穿越保护措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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