首页> 外文期刊>Journal of Pipeline Systems Engineering and Practice >Modeling and Parametric Study of Gasketed Bell and Spigot Joint in Buried RC Pipeline
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Modeling and Parametric Study of Gasketed Bell and Spigot Joint in Buried RC Pipeline

机译:垫圈贝尔和钢管接头的建模与参数研究埋藏钢管管道

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Joints in buried pipelines have diverse configurations and materials, and are subjected to different loading and installation conditions which will influence their performance. Therefore these parameters need to be examined, because joints play an important role in pipeline longevity. This research study developed a numerical model for a buried RC pipeline with a gasketed bell and spigot joint subjected to surface loads representing service conditions. The model was calibrated against experimental data and captured close to 80% of the joint rotation angle and the patterns of hoop strain at the joint components. The model was subsequently used in parametric studies which revealed the locations where a single wheel pair produces the largest shear displacement and rotation of the joints for the burial depth examined. The studies also indicated that a tandem axle configuration produces larger joint rotation than a single axle and single wheel pair configuration. The influence of the soil envelope stiffness and the effect of pavements on the joint performance was also described.
机译:埋地管道的关节具有不同的配置和材料,并且受到不同的装载和安装条件,这将影响其性能。因此,需要检查这些参数,因为关节在管道寿命中发挥着重要作用。该研究研究开发了一种具有垫圈的圆形管道的数值模型,垫圈的钟声和延长杆关节经受表面载荷表示服务条件。该模型针对实验数据校准,并捕获接触旋转角度的80%,接头部件的环荷应变的图案。随后在参数研究中使用该模型,该参数研究揭示了单轮对产生最大剪切位移和接头的旋转以进行埋藏深度的位置。研究还表明,串联轴配置产生比单轴和单轮对配置更大的关节旋转。还描述了土壤包络刚度的影响及路面效果对关节性能的影响。

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