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Influence of Temperature on the Bolt Loads and Variation in a Bolted Flange for Subsea Pipeline Connection

机译:温度对螺栓荷载和螺栓凸缘变化的影响,用于海底管道连接

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This article proposed an analytic and finite element-combined modelling method for the investigation of temperature effects on bolt loads and variation in a bolted flange for subsea pipeline connection. With this method, the preloads of bolt in the bolted flange assembly were investigated under different medium liquid temperatures in the pipeline. The simulation results illustrate that the deviation of bolt loads can be increased due to the medium liquid temperature increasing. The final bolt load deviation increases along with the increasing of the initial deviation of bolt preloads in a constant medium liquid temperature. The final distribution of bolt loads can be affected by the initial condition of the bolts. When bolt preloads are staggered, the variance of the final bolt loads is minimized; when the bolt preloads are axisymmetric, the final bolt load variance is the maximum.
机译:本文提出了一种分析和有限元组合建模方法,用于研究螺栓载荷的温度效应和用于海底管道连接的螺栓凸缘的变化。 通过这种方法,在管道中的不同介质液体温度下研究了螺栓凸缘组件中的螺栓中的预载荷。 仿真结果表明,由于介质液体温度升高,可以增加螺栓载荷的偏差。 随着螺栓预载在恒定介质液体温度中的初始偏差的增加,最终螺栓负荷偏差随着螺栓预载荷的初始偏差而增加。 螺栓载荷的最终分布可能受到螺栓初始条件的影响。 当螺栓预加载被交错时,最终螺栓载荷的方差最小化; 当螺栓预加载是轴对称时,最终螺栓负载方差最大。

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