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STRESS ANALYSIS OF BURIED PIPELINES UNDER THAW SETTLEMENT OF PERMAFROST ZONE BASED ON MOISTURE-HEAT-STRESS COUPLED ANALYSIS

机译:基于水分热应激耦合分析的多年冻土区解冻下埋入管道的应力分析

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Permafrost thawing caused by the hot crude pipeline is a major threat to the safe operation of buried pipelines in permafrost zone. In this paper, the process of thawing and consolidation of frozen soil is considered, and a three-dimensional (3D) finite element model of buried pipelines in permafrost zone is established using ABAQUS. The calculation of thaw settlement displacement of frozen soil based on moisture-heat-stress coupled was carried out, and the deformation and stress of buried pipelines were analyzed. The effects of ground temperature, oil temperature, thermal conductivity of insulation material and soil distribution along the pipeline on the vertical displacement and longitudinal stress of buried pipelines in frozen soil were studied. Research results show that in thaw-unstable soil, the vertical displacement and stress of the pipeline increase significantly with the increase of the average ground temperature, and change on ground temperature amplitude has a little effect on the vertical displacement and longitudinal stress of the pipeline in thaw settlement zone. It is 1/3 of the vertical displacement of the pipeline without a heat insulating layer. When the thermal conductivity of the insulation material is less than 0.4 W/m°C, the vertical displacement of the pipeline in the thawing zone can be further reduced by reducing the thermal conductivity of the insulation material. When clay and sand appear alternately along the pipeline, the vertical displacement and longitudinal stress of the pipeline can be reduced by reducing the length of clay section. This study has certain reference value for optimizing the design parameters of buried pipelines in permafrost zone and reducing the impact of differential thaw settlement of frozen soils on the safe operation of pipelines.
机译:由于热油管道多年冻土解冻是在多年冻土区埋地管道的安全运行构成重大威胁。在本文中,解冻和冻结土体固结过程被认为是,利用ABAQUS建立三维(3D)有限元埋地管道在多年冻土区模型。基于耦合湿热应力冻土的解冻沉降位移的计算进行了,并且埋地管道的变形和应力进行分析。进行了研究地面温度,油温,绝缘材料和沿垂直方向的位移和在冻土埋地管道的纵向应力的管道土壤分布的热导率的影响。研究结果表明,在解冻不稳定的土壤,平均地面温度的升高显著管道增加的垂直位​​移和应力,以及变化对地面温度幅度对在管道的垂直位移和纵向应力影响不大融沉区。它是流水线的无绝热层的垂直位移的1/3。当绝缘材料的热导率小于0.4W /米°可以通过减小绝缘材料的热导率可以进一步降低C,在解冻区中的管道的垂直位移。当粘土和砂沿管道交替出现,管道的垂直位移和纵向应力可以通过减少粘土部分的长度可以减小。该研究为在多年冻土区优化埋地管道的设计参数,减少对管道的安全运行冻土差融沉的影响具有一定的参考价值。

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