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Comparison Analysis of Bearing Capacity Approaches for the Strip Footing on Layered Soils

机译:层状地基上条形基础承载力方法的比较分析

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摘要

The ultimate bearing capacity of shallow foundations is mostly based on the simplified idea that bearing layer is infinite and homogenous. However, in practice multilayered soils are mainly being used. Determination of reliable ultimate bearing capacity of foundation in multilayer soil stratum is required in the safety assessment and design analysis of a foundation structure. In present study, large number experimental, limit equilibrium, finite element analyses are performed. It has been found that a number of factors may influence bearing capacity of the soil, such as soil layer thickness, soil properties, applied stress, and type of design analysis which is not taken into consideration in the traditional bearing capacity theories. Such simplification causes structural design that is more conservative. In this study, ultimate bearing capacity of layered soil is investigated according to different conventional and recently developed techniques including finite element model, limit equilibrium methods, and experimental assessment. It is also found that the critical h / B point (first layer thickness to the foundation width) from analytical, numerical, and experimental methods are equal to 2.0, 2.5, and 1.5, respectively.
机译:浅层基础的极限承载力主要基于简化的思想,即承载层是无限且均匀的。然而,实际上,主要使用多层土壤。在基础结构的安全评估和设计分析中,需要确定多层土层中基础的可靠极限承载力。在本研究中,进行了大量实验,极限平衡,有限元分析。已经发现,许多因素可能影响土壤的承载力,例如土壤层厚度,土壤特性,施加的应力以及设计分析的类型,而传统的承载力理论并未考虑这些因素。这种简化导致结构设计更加保守。在这项研究中,根据不同的常规和最近开发的技术(包括有限元模型,极限平衡方法和实验评估)研究了层状土的极限承载力。还发现,分析,数值和实验方法得出的临界h / B点(第一层厚度至基础宽度)分别等于2.0、2.5和1.5。

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