Buried Pipe Span Ovality Assessment

R. Phillips, M. Martens, R. Mcaffee, L. Tan, J. Barrett
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Abstract

This paper evaluates field ovalization measurements of NPS 24 pipe using 3D continuum finite element analyses. The combination of the soil backfill weight and loose bedding material beneath the pipe near a tie-in concentrates stresses at the location where native undisturbed soil transitions to loose backfill along the trench bottom, which increases the ovality in the pipe cross section. The analysis indicated that at burial depth, transient surface loading temporarily increases the ovality in unpressurized pipe but the ovality is reduced to near normal levels when the transient surface loading is removed. The internal pressure reduces the elastic pipe ovality. This analysis method can be useful for a cost benefit analysis between using thicker pipe, versus the additional costs, such as intervention and/or padding/compacting of soil around the pipe (with inspections).
地埋管跨径椭圆度评定
本文采用三维连续体有限元方法对nps24管道的现场卵圆测量结果进行了评价。土壤回填体重量和管道下方靠近接头的松散层理材料的组合将应力集中在原生未受扰动的土壤沿沟槽底部向松散回填体过渡的位置,这增加了管道截面的椭圆度。分析表明,在埋深处,瞬态表面载荷暂时增加了非加压管道的椭圆度,但当去除瞬态表面载荷后,椭圆度降至接近正常水平。内部压力降低了弹性管的椭圆度。这种分析方法可以用于分析使用较厚管道与额外成本(如干预和/或填充/压实管道周围的土壤)之间的成本效益。
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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