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Strength reduction for upheaval buckling of buried pipes in blocky clay backfill

机译:块状粘土回填中埋管的大幅度屈曲强度降低

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摘要

Offshore pipelines are often buried to protect the pipeline from external loads and upheaval buckling. Models for pipe uplift resistance in clay soils are based predominantly on homogenous backfill conditions. In practice, however, there will be significant soil disturbance during installation. With certain trenching techniques this may produce a backfill more akin to a matrix of lumps of intact soil connected by weaker remoulded interfaces. This research uses centrifuge modelling to assess the resistance provided by a representative lumpy clay backfill that has experienced self-weight consolidation. A model pipe is then uplifted through this model backfill in order to assess the soil uplift resistance. Results show that the uplift resistance in this material is governed strongly by the size of the lumps and, to a lesser extent, by the rate at which displacement occurs. When interpreted in terms of the strength reduction η, that may be used to correct between theoretical and measured uplifts, lower values were derived than those currently used based on intact soils. The value of η is seen to be controlled by a non-dimensional drainage parameter, but may be practically estimated based on an estimate of the size of lumps relative to the pipe diameter.
机译:海上管道通常被掩埋以保护管道免受外部负荷和剧变的屈曲。粘土中的管道抗拔性模型主要基于均质的回填条件。然而,实际上,在安装过程中会严重干扰土壤。使用某些挖沟技术,这可能会产生类似于由较弱的重塑界面连接的完整土壤块矩阵的回填。这项研究使用离心机模型来评估具有自重固结作用的代表性块状粘土回填所提供的阻力。然后通过该模型回填将模型管举起,以评估土壤的抗隆起性。结果表明,这种材料的抗隆起性主要受结块大小的影响,在较小程度上受位移发生率的影响。当用强度折减η来解释时(可用于在理论隆起和实测隆起之间进行校正),得出的值要比目前基于完整土壤的值低。 η的值被视为由无量纲的排水参数控制,但实际上可以基于相对于管道直径的块体大小的估计来估计。

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