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141.
Existing relationships for lateral backfill pressures on pipelines assume that the trench is adequately wide to contain the failure surface. This condition is commonly violated in design and construction practice, putting at risk the pipeline safety. In this context, size and shape effects for trenches excavated in stiff soils and rocks, are numerically investigated, through experimentally-calibrated parametric analyses. It is shown that, for narrow trenches, ultimate pressures and yield displacements may increase up to an order of magnitude compared to “infinite-trench” values, while excavation of inclined walls reduces the above detrimental effects. Simplified relations are developed to aid pipeline design. 相似文献
142.
One of the most critical lessons of the recent earthquakes is the need for seismic planning for lifelines, with appropriate
supplies and back up systems for emergency repair and restoration. Seismic planning, however requires physical loss estimations
before the earthquakes occur. Buried pipeline damage correlations are critical part of loss estimation procedures applied
to lifelines for future earthquakes. We review the existing pipeline damage relationships only for ground shaking (transient
ground deformations) in the light of recent developments and evaluate them with Denizli City, Turkey water supply system.
Eight scenario earthquakes with four different earthquake magnitudes between M6 and M7 caused by two different fault ruptures (Pamukkale and Karakova-Akhan Faults) were used. Analyses were performed by using
Geographical Information Systems (GIS). This high number of different scenario earthquakes made it possible to compare the
pipeline damage relationships at different ground shaking levels. Pipeline damage estimations for Denizli City were calculated
for each damage relationship and earthquake scenario. Relative effects of damage relationships and scenario earthquakes on
the results were compared and discussed. The results were presented separately for brittle, ductile, and all pipelines. It
was shown that the variation in ductile pipeline damage estimations by various relationships was higher than the variation
in brittle pipeline damage estimations for a particular scenario earthquake. 相似文献
143.
144.
城市地下管线采用承插式接口连接,管线结构的连续性与否取决于接口刚度。然而,现有研究大都假定地下管线为连续结构,忽略了接口转角对管线变形的影响。开展土工离心模型试验和两阶段有限元参数分析,系统研究了盾构下穿不同接口刚度管线的变形特性。发现非连续管线的薄弱接口导致其整体抗弯刚度明显小于连续管线,且接口转动导致非连续管线具有更好的与土体协调变形能力。因此,盾构下穿施工引起的非连续管线沉降明显大于连续管线。非连续管的结构连续性假定将大大低估管线沉降。盾构下穿引起的接口转角与地层损失呈线性关系。基于系统的有限元参数分析,建立了区分相对刚性、柔性管线的无量纲组。针对相对刚性、柔性的非连续管线,分别建立了管节相对长度、管-土相对刚度与接口转角的预测方法,利用离心模型试验结果验证了预测方法的合理性。新方法能有效地预测盾构穿越地下管线的接口转角,研究成果可应用于城市地下管网改造工程。 相似文献
145.
146.
This paper presents analytical and numerical researches on the buckling or collapse of offshore pipelines under external hydrostatic pressure. Firstly the case of homogeneous ring model is investigated followed by a detailed study on corroded rings. The elastic-plastic collapse pressure could be treated as the least root of an elementary function. We prove that collapse pressure is a strictly increasing function of mode number in this paper and present some interesting structures of the roots. Partially corroded ring is parametrized by corrosion depth and angle extent. A comprehensive comparison shows that plasticity should not be neglected when the ring is thick-walled. Moreover, a study on large deflection deformation of 3D cylindrical shells quasi-statically dented under constant external pressure is carried out theoretically and numerically. The buckle propagation pressure is shown to be a meaningful value to normalize external pressure. This paper serves to enhance the understanding of destabilizing effect of external pressure mainly applicable and relevant to subsea offshore industry. 相似文献
147.
148.
149.
非黏结柔性管道骨架层由不锈钢材料互锁缠绕而成,主要用于抵抗外压防止软管发生压溃失效.骨架层失效是柔性软管故障的最大风险,骨架层失效模式主要分为压溃失效和拉伸失效.采用非线性有限元方法并且考虑几何大变形、材料非线性、接触和摩擦等非线性效应的影响,对"S"型骨架层结构建立三维有限元模型,进行了单外压作用下的压溃失效分析和单一轴向拉力作用下的拉伸失效分析,而后开展轴向拉力和外压载荷组合作用下骨架层压溃失效分析.结果表明轴向拉力会一定程度上降低骨架层压溃承载力,相关结论可以为柔性软管结构设计和完整性评价提供参考. 相似文献
150.
考虑阻尼海底悬跨段管道的动力特性及允许悬空长度 总被引:8,自引:0,他引:8
以海底悬跨段输液管道为研究对象,考虑管道结构阻尼、流体附加阻尼、管内流体流动及管道轴向力和压强的作用,对其进行受力分析,导出管道振动微分方程,进而得到管道动力特性方程。用Hermit插值函数对管道的动力特性方程进行离散得到有限元表达式,采用复模态分析法,求得管道的自振频率。为防止管道发生横向涡激振动,用约化速度作为控制条件,确定管道允许悬空长度。结果表明,管道允许悬空长度随着内流流速、轴向压力和管内压强的增加而减小,随着轴向拉力的增加而加大。 相似文献