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Reliability Analysis-Based Stress Intensity Factors and Biaxiality Rates for Shallow Cracked Foundations in Interaction with Elasto-Plastic Soils

机译:基于可靠度分析的弹塑性土相互作用中浅裂基础的应力强度因子和双轴率

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摘要

The numerical modeling of soil-structure interaction systems for cracked foundations laying on nonlinear clay soils is performed by solving line spring model, using the method of exact series solutions. This semi-analytical approach is well known in fracture mechanics practice for the computation of structural responses near the crack tips, as well as for the calculation of normalized stress intensity factors (SIF). The effects of the crack topologies and soil material nonlinearity are analyzed especially on SIF and biaxiality rates (SBR) tendencies. A parametric study based on the variations of equivalent (SIF) for cracked foundations is discussed to investigate the prediction of failure occurrences for several cases of crack extensions and positions along shallow spread footing span. The numerical finding of this study can be potentially employed to direct engineers and researchers to optimal solutions for revamping design works, as well as in the improvement of mechanical reliability of cracked foundations mainly the ones of strategic industrial parts of petrochemical and nuclear infrastructures.
机译:采用精确级数解法,通过求解线弹性模型,对非线性黏土上裂基的土-结构相互作用体系进行了数值模拟。这种半分析方法在断裂力学实践中是众所周知的,用于计算裂纹尖端附近的结构响应以及用于计算归一化应力强度因子(SIF)。分析了裂纹拓扑和土壤材料非线性的影响,特别是对SIF和双轴率(SBR)趋势的影响。讨论了基于裂隙基础等效变化量(SIF)的参数研究,以研究对沿浅扩展基础跨度的几种裂纹扩展和位置情况的破坏发生的预测。这项研究的数值发现可以潜在地用于指导工程师和研究人员找到最佳解决方案,以改进设计工作,以及提高破裂基础的机械可靠性,这些基础主要是石化和核基础设施的战略性工业部分。

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