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3-D NUMERICAL ANALYSIS OF TIME-DEPENDENT BEHAVIOR OF STRUCTURE-PILED RAFT-FOUNDATION INTERACTION SYSTEMS CONSIDERING CONSOLIDATION EFFECT

机译:考虑固结效应的结构桩筏基础相互作用系统时移行为的三维数值分析

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In coastal areas where exists a deep layer of soft soils, raft foundations are widely employed for high-rise or multi-rise structures in order to be adapted to the soft grounds. Under such conditions, effects of consolidation of soft soil ground on performance of interaction system of rafts and foundation as well as superstructures cannot be overlooked, which display a certain nonlinear characteristics. Both conventional methods of structural design and numerical procedures of two-dimensional interaction analysis cannot realistically simulate load-carrying and deformation mechanism of the interaction system and cannot completely predict variations of deformations and internal forces of both structure and raft foundation. Therefore in order to well understand long-term behaviour of the interaction system, time-dependent effect of soil deformations on performance of the interaction system of rafts and foundations as well as superstructure is evaluated in this paper. The nonlinear deformation and strength behaviour of foundation soils are taken into account by using the elasto-plastic constitutive model based on Mohr-Coulomb's yield criterion while the consolidation effect of subsoil under loading is incorporated by numerically solving the coupling Biot's equations of consolidation. Numerical analyses are conducted for the structure-raft-foundation interaction system by using the finite element methods. Based on numerical analyses for a given interaction system, both the features of variation in time of internal forces and settlements and the characteristics of compatibility mechanism of interaction system are examined. It is shown that both nonlinear behaviour of soft soils and consolidation characteristics of foundation remarkably affect the time-dependent performance of the interaction system. Such dependency is intimately related to variation of excess pore water pressure of subsoil.
机译:在存在深层软土的沿海地区,筏式地基被广泛用于高层或多层结构,以适应软土地基。在这种情况下,软土地基的固结对木筏与地基以及上层建筑相互作用系统的性能影响不容忽视,具有一定的非线性特征。传统的结构设计方法和二维相互作用分析的数值程序都不能真实地模拟相互作用系统的承载和变形机理,也不能完全预测结构和筏基的变形和内力变化。因此,为了更好地理解相互作用系统的长期行为,本文评估了土体变形对筏板-基础相互作用系统和上部结构相互作用的时效性。利用基于莫尔-库仑屈服准则的弹塑性本构模型,考虑了地基土的非线性变形和强度特性,同时通过数值求解Biot固结耦合方程,考虑了地基在荷载作用下的固结效果。利用有限元方法对结构-筏-基础相互作用系统进行了数值分析。基于给定相互作用系统的数值分析,研究了内力和沉降时间的变化特征以及相互作用系统的相容性机理。结果表明,软土的非线性行为和地基的固结特性都会显着影响相互作用系统的时变性能。这种依赖性与地下土壤的过量孔隙水压力的变化密切相关。

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