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Uplift Resistance of Buried Pipelines in Partially Saturated Sands

机译:部分饱和砂土中地下管道的抗拔性

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High Pressure and High Temperature (HPHT) oil and gas pipelines are commonly buried subsurface and the depth of burial is determined by upheaval buckling mitigation requirement or legislation requirement. The upheaval buckling mitigation design requires evaluation of uplift resistance of soil in which pipeline is buried. Conventional design guidelines and current analytical models for predicting the soil uplift resistance are based on either dry soil or fully saturated soil. However, onshore pipeline are buried in soils which are often partially saturated. Therefore, current analytical models do not capture the effects of soil saturation on the uplift resistance of buried pipeline. In partially saturated soils, the uplift resistance is greater than that under fully saturated conditions. This is because the water meniscus between soil particles creates an additional normal force due to suction, which in turn makes the soil behaviour stiffer and stronger. This paper presents full scale pipe-soil tests results and finite-element parametric studies conducted to investigate the effects of soil moisture content, dimensionless cover heights (soil cover height to diameter ratio) and soil relative density on the peak uplift resistance of pipes. The results demonstrate that the current available analytical models under-predict the soil peak uplift resistance in partially saturated conditions. Further, the analyzed results are presented as dimensionless design charts and non-linear regression models which can be used to quantify the partial saturation effect on uplift resistance of buried pipes.
机译:高压和高温(HPHT)石油和天然气管道通常埋在地下,埋葬深度由动荡屈曲缓解要求或法规要求决定。剧变屈曲缓解设计需要评估埋有管道的土壤的抗隆起性。用于预测土壤抗隆起性的常规设计准则和当前的分析模型基于干燥土壤或完全饱和的土壤。但是,陆上管线埋在通常部分饱和的土壤中。因此,当前的分析模型不能捕捉到土壤饱和度对地下管线抗拔性的影响。在部分饱和的土壤中,抗隆起性大于在完全饱和的条件下。这是因为土壤颗粒之间的水弯液面会由于吸力而产生额外的法向力,从而使土壤行为变得更硬。本文介绍了完整的管道土壤测试结果,并进行了有限元参数研究,以研究土壤水分,无因次覆盖高度(土壤覆盖高度与直径之比)和土壤相对密度对管道峰值抗力的影响。结果表明,当前可用的分析模型低估了部分饱和条件下的土壤峰值抗拔性。此外,分析结果以无因次设计图和非线性回归模型的形式呈现,可用于量化局部饱和度对埋管抗拔力的影响。

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