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A Modified Mohr-Coulomb Model to Simulate the Response of Buried Pipes Subjected to Large Ground Displacement

机译:一种改进的Mohr-Coulomb模型,用于模拟大地位移下埋管的响应

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At the present time, it is very common in practice (industry as well as in research) to utilize Mohr-Coulomb to simulate the soil behaviour in the application of soil-structure interaction problems. The model is often chosen considering its simplicity, ease of use, reasonable computational time and the high level of understanding among the engineers. However, the linear elastic-perfectly plastic Mohr-Coulomb model is unable to predict the softening behaviour of material and hence to predict the pipe load accurately when subjected to large soil movements such as from landslides or earthquakes. A user defined modified Mohr-Coulomb model is developed to capture the strain softening behaviourof soil and to simulate the pipeline response subjected to large ground deformation. The softening behaviour of the model has been calibrated on the basis of direct shear test data, and triaxial test data have been used for calibrating the yielding and flow characteristics of the model. The calibrated model has been applied to simulate the response of HDPE pipeline undergoing different ground displacements. Finally, the model response was used to develop a strain demand model for buried pipelines facilitating the risk assessments.
机译:目前,在应用土-结构相互作用问题时,利用莫尔-库仑来模拟土壤行为在实践中(在工业界和在研究中)是非常普遍的。选择该模型时通常考虑到其简单性,易用性,合理的计算时间以及工程师之间的高度了解。但是,线性弹性完美塑性Mohr-Coulomb模型无法预测材料的软化行为,因此无法在遇到大的土壤运动(例如滑坡或地震)时准确预测管道的载荷。开发了用户定义的修改后的Mohr-Coulomb模型,以捕获土壤的应变软化行为,并模拟经受较大地面变形的管道响应。已基于直接剪切试验数据对模型的软化行为进行了校准,并已使用三轴试验数据对模型的屈服和流动特性进行了校准。校准后的模型已用于模拟HDPE管道在不同地面位移下的响应。最后,模型响应被用于为地下管道开发应变需求模型,以促进风险评估。

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