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Modeling the Effects of Backfilling and Soil Compaction beside Shallow Buried Pipes

机译:模拟浅埋管道旁的回填和土壤压实效果

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Compaction of the soil placed beside culverts (the side-fill) can have a significant effect on the behavior of flexible and rigid structures. This is particularly true for shallow buried structures when the stresses resulting from compaction represent a greater proportion of the total stresses present. Different techniques have been reported in the literature to model soil compaction during finite-element analyses. A new semiempirical technique is proposed, which takes into consideration the increase in lateral stress and soil kneading during compaction. A simple procedure is discussed to incorporate the compaction of granular material in finite-element analysis. The new technique is used to model five different pipe products composed of different materials and dimensions, and the results are compared to measured values reported in the literature. A new factor is proposed to account for soil kneading during compaction to provide an upper limit for the pipe deformations and stresses that result during installation. The technique can be used to estimate peaking in flexible culverts and the additional crown moments and thrust that result in rigid culverts.
机译:放置在涵洞(侧填土)旁边的土壤的压实会对柔性和刚性结构的性能产生重大影响。当由压实产生的应力占存在的总应力的更大比例时,对于浅埋结构而言尤其如此。文献报道了在有限元分析过程中模拟土壤压实的不同技术。提出了一种新的半经验技术,该技术考虑了压实过程中侧向应力和土壤捏合的增加。讨论了一种将粒状材料的压实纳入有限元分析的简单方法。该新技术用于对五种由不同材料和尺寸组成的不同管道产品进行建模,并将结果与​​文献中报道的测量值进行比较。提出了一个新的因素来考虑压实过程中的土壤捏合,以提供管道在安装过程中产生的变形和应力的上限。该技术可用于估计柔性涵洞的峰值,以及导致刚性涵洞的附加冠矩和推力。

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