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DEFORMATION-BASED BEHAVIOR OF X65 GAS PIPELINE IN RECTANGULAR CONCRETE ENCASEMENT

机译:基于变形的矩形混凝土封口X65天然气管道的行为

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The pipelines located in cold region, offshore and under riverbed are exposed and unpredictable loads and these pipelines should be protected by assistant structures. As one manner of protecting river crossing pipelines, a rectangular concrete encasement is generally used in Korea. This paper describes behavior characteristics of underground pipelines encased in rectangular concrete box in terms of deformed radius derived from occurred hoop stress. The solution for contact pressure between steel pipeline and concrete encasement is derived from the equation of Lame's double walled cylinder. Every FEA model adopted in this study has same pipe diameter (762mm), internal pressure and cover depth. A variable is only the thickness of concrete encasement. This problem is formulated as a shrink-fit cylinder because of the inner steel pipe expanding by internal gas pressure. In order to get a deformed radius, the interface (contact) pressure was calculated, and the local deformed radius was determined based on obtained interface pressure and hoop stress. In this data processing, peculiar ovalized shape was developed in the section of the X65 steel pipeline covered with rectangular concrete encasement. The result in terms of the rate of local diameter change describes that shoulder (±45 ,±135°) part has the largest change rate over 120% and the smallest values occurred at a bottom ( ±180° ). By using the relation of encasement size and deformed diameter, the results make stress design for the double layer pipeline be more precise and effective.
机译:位于寒冷地区,河床和河床下的管道暴露,负载不可预测,这些管道应受到助理结构的保护。作为保护河流横穿管道的一种方式,韩国通常使用矩形混凝土壳。本文介绍了在发生箍应力的变形半径方面包装在矩形混凝土箱中的地下管道的行为特征。钢管管道和混凝土封口之间的接触压力的解决方案来自跛脚的双壁圆柱体的等式。本研究采用的每个FEA模型具有相同的管道直径(762mm),内部压力和覆盖深度。变量只是混凝土封装的厚度。由于内部气体压力膨胀,该问题被配制为收缩配合圆柱体。为了获得变形半径,计算界面(接触)压力,基于获得的界面压力和箍应力确定局部变形半径。在该数据处理中,特殊的卵形化形状是在X65钢管管的截面覆盖的截面覆盖的截面中。局部直径变化率的结果描述了肩部(±45,±135°)部分的最大变化率超过120%,最小的值发生在底部(±180°)。通过使用封口尺寸和直径变形的关系,结果使双层管道的应力设计更精确,有效。

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