首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.8: Seismic Engineering >FINITE ELEMENT MODELING OF BURIED PIPELINES SUBJECTED TO SEISMIC LOADS: SOIL STRUCTURE INTERACTION USING CONTACT ELEMENTS
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FINITE ELEMENT MODELING OF BURIED PIPELINES SUBJECTED TO SEISMIC LOADS: SOIL STRUCTURE INTERACTION USING CONTACT ELEMENTS

机译:地震荷载作用下的地下管道有限元建模:利用接触单元的土-结构相互作用

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摘要

Buried pipelines pass under lands exposed to traffic, railroads and highways, and cross through seismically active lands. The pipelines are exposed to the combined loads of soil weight, traffic load and seismic loads, and internal pressure. Several design practices exist for the combination of stresses due to soil, seismic and traffic loads, such as ASME design guide', VDTUV 1063~2, and DIN 2413~3. However, the soil structure interaction is not considered especially in the case of seismic loads. When the pipeline loses its support due to soil liquefaction then the problem can only be solved using the finite element method. Customarily, spring elements have been used to model the pipeline-soil interaction under the combined action of action of seismic, soil and pressure loads. This meshing technique, however, is tedious and time consuming. Furthermore it requires the analyst to kill spring elements that are not active. Verification of the model is thus difficult and prone to errors. In this work frictional elements are used to model the pipeline-soil interaction. This meshing technique is automatic and it does not require keeping track of the contact surfaces. The soil surface is the contact surface and the pipeline outside diameter is the target. The pipeline can be modelled as either a contact surface or a contact line depending on the dimensionality of the model.
机译:埋藏的管道在交通,铁路和公路暴露的土地下面穿过,并穿越地震活跃的土地。管道承受着土壤重量,交通负荷和地震负荷以及内部压力的综合负荷。对于土壤,地震和交通荷载引起的应力,存在几种设计方法,例如ASME设计指南,VDTUV 1063〜2和DIN 2413〜3。但是,尤其是在地震荷载作用下,并未考虑土壤结构相互作用。当管道由于土壤液化而失去支撑时,只能使用有限元方法解决该问题。通常,在地震,土壤和压力荷载作用的共同作用下,弹簧元件已被用来模拟管道与土壤的相互作用。但是,这种网格划分技术既繁琐又费时。此外,它要求分析人员杀死不活动的弹簧元件。因此,对模型的验证很困难并且容易出错。在这项工作中,摩擦元件被用来模拟管道-土壤的相互作用。这种啮合技术是自动的,不需要跟踪接触面。土壤表面是接触表面,管道外径是目标。可以将管道建模为接触面或接触线,具体取决于模型的尺寸。

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