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Large-scale experimental evaluation of soil saturation effect on behaviour of buried pipes under operational loads

机译:运作负荷下埋地管的土壤饱和效应的大规模试验评价

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摘要

The behaviour of pipelines in unsaturated soil is fundamentally different from that of pipelines buried in dry or saturated soils. However, the effect of soil saturation on buried pipe behaviour has been overlooked in past research mainly due to the very limited large-scale experimental studies available. Most of the available studies on buried pipes in unsaturated soil are based on numerical modelling that analyses the pipe behaviour using a calibrated soil model developed on the basis of fundamental unsaturated soil characteristics. Investigations with such approaches may not be acceptable owing largely to unverified or complicated pipe-soil interactions and three-dimensional stress re-distributions. In this paper, the effect of soil saturation on buried pipe behaviour is investigated using a comprehensive large-scale experimental setup. A detailed methodology of large-scale testing, which was used to obtain pipe deformations as well as soil stresses with reference to a cast iron pipeline buried in low-plasticity clay under different soil saturation levels, is presented. The results obtained from large-scale experiments are compared with those of three-dimensional finite element analysis. Results produced in this paper reveal that the degree of water saturation of backfill soil can significantly affect the pipe deformation under internal and external loadings.
机译:不饱和土水管道的行为从根本上不同于埋在干燥或饱和土壤中的管道。然而,过去的研究中,土壤饱和对埋地管行为的影响主要是由于具有非常有限的大规模实验研究。关于不饱和土壤埋地管的大多数可用研究基于数值模型,通过基于基本不饱和土特征开发的校准土壤模型分析了管道行为。由于未经证实的或复杂的管土相互作用和三维应力重新分布,具有这种方法的调查可能不可接受。在本文中,使用综合大规模实验设置研究了土壤饱和对埋地管行为的影响。提出了一种详细的大规模测试方法,用于在不同的土壤饱和水平下参考埋在低可塑性粘土中埋入的铸铁管道的管变形以及土壤应力。将从大规模实验获得的结果与三维有限元分析的结果进行比较。本文中生产的结果表明,回填土的水饱和度可以显着影响内部和外部载荷下的管道变形。

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