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首页> 外文期刊>International journal of steel structures >Seismic Fragility of Steel Piping System Based on Pipe Size, Coupling Type, and Wall Thickness
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Seismic Fragility of Steel Piping System Based on Pipe Size, Coupling Type, and Wall Thickness

机译:基于管道尺寸,接头类型和壁厚的钢管系统的地震易损性

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摘要

In this study, a probabilistic framework of the damage assessment of pipelines subjected to extreme hazard scenario was developed to mitigate the risk and enhance design reliability. Nonlinear 3D finite element models of T-joint systems were developed based on experimental tests with respect to leakage detection of black iron piping systems, and a damage assessment analysis of the vulnerability of their components according to nominal pipe size, coupling type, and wall thickness under seismic wave propagations was performed. The analysis results showed the 2-inch schedule 40 threaded T-joint system to be more fragile than the others with respect to the nominal pipe sizes. As for the coupling types, the data indicated that the probability of failure of the threaded T-joint coupling was significantly higher than that of the grooved type. Finally, the seismic capacity of the schedule 40 wall thickness was weaker than that of schedule 10 in the 4-inch grooved coupling, due to the difference in the prohibition of energy dissipation. Therefore, this assessment can contribute to the damage detection and financial losses due to failure of the joint piping system in a liquid pipeline, prior to the decision-making.
机译:在这项研究中,开发了一种在极端危险情况下对管道进行损伤评估的概率框架,以减轻风险并提高设计可靠性。根据关于黑铁管道系统泄漏检测的实验测试,开发了T型接头系统的非线性3D有限元模型,并根据公称管道尺寸,接头类型和壁厚对其部件的脆弱性进行了损害评估分析。在地震波传播下进行。分析结果表明,就公称管道尺寸而言,2英寸附表40螺纹T形接头系统比其他系统更易碎。对于联轴器类型,数据表明,螺纹T形联轴器的失效概率明显高于沟槽式。最后,由于在能量消耗的禁止方面的差异,在40英寸槽形联轴器中,壁厚40的抗震能力比壁厚10的抗震能力弱。因此,在进行决策之前,该评估可有助于发现由于液体管道中的联合管道系统故障而导致的损坏检测和财务损失。

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