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Numerical Study of the Mechanical Behavior of a Foundation Raft under the Hydrodynamic Influence of the Mechanical Characteristics of Clay Soils

机译:粘土土壤机械特性水动力影响基础筏机械行为的数值研究

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摘要

The clay soils of the city of Douala are constantly saturated with water, which permanently favors the hydrodynamic behavior of the soils (swelling or consolidation). This phenomenon can cause serious disturbances in the structure of buildings resulting in the appearance of cracks in structures (buildings, road bridge, viaduct, etc.). The foundation raft is a very important structure in the dimensioning of structures. Given the soil-structure interactions, its mechanical characteristics must be the subject of a special study linked to the building environment. In this article, we present a study of the mechanical behavior of a foundation raft anchored in a laminate floor. The aim is to highlight the influence of the mechanical properties of the foundation soil on the evolution of the mechanical behavior of the raft. The method used is a numerical simulation. A physical model taking into account a 5-storey building based in Douala in the Denver district is studied. The foundation on the raft foundation of this building follows an elastic constitutive law with Mazars damage, and rests on a laminated soil of plastic elastic model with Camclay plasticity criterion. The ground-raft and ground-ground interfaces are carried out with the finite elements joined to three nodes (JOI3), and obey the Coulomb model;it is an expansion joint model with Mohr-Coulomb type criterion and associated flow. The numerical resolution is carried out by the finite element method, and the numerical simulations via the Cast3M calculation code. The results from the simulations show that the mechanical characteristics of foundation soils, in this case the water content, the compactness, the state of consolidation, greatly influence the mechanical behavior of the foundation slab. There is indeed a significant settlement and a great deformation of the raft foundation when the water content of the soil layers increases, and when the states of consolidation and compactness are low. This article allows us to predict and control the evolution of the behavior of the ground-structure interface of a raft foundation and to adopt a new model appropriate for the sizing of civil engineering structures.
机译:杜阿拉市的粘土土壤与水不断饱和,这永久性地利用土壤的流体动力学行为(肿胀或固结)。这种现象可能导致建筑物结构中的严重紊乱导致结构的裂缝(建筑物,道路桥,高架桥等)的出现。基础筏是结构尺寸的一个非常重要的结构。鉴于土壤结构相互作用,其机械特性必须是与建筑环境相关的特殊研究的主题。在本文中,我们展示了锚固在层压板中的基础筏的力学行为的研究。目的是突出基础土壤机械性能对筏子力学行为演变的影响。使用的方法是数值模拟。考虑到丹佛地区杜阿拉的5层大楼的物理模型进行了研究。该建筑物筏基础的基础遵循弹性本构规定的马扎尔损坏,并依靠塑料弹性模型的层压土,具有山腰可塑性标准。地筏和地面接地接口是用连接到三个节点(JOI3)的有限元(JOI3),并遵守库仑模型;它是具有MOHR-COULOMB型标准和相关流量的扩展联合模型。数值分辨率由有限元方法进行,通过CAST3M计算代码进行数值模拟。仿真结果表明,基础土壤的机械特性,在这种情况下,含水量,紧凑性,固结状态,大大影响了基础板的力学行为。当土壤层的水含量增加时,筏基础的重大沉降和筏子基础的大大变形,并且当固结和紧凑性的状态低时。本文使我们能够预测和控制筏基础地面结构界面行为的演变,并采用适合于土木工程结构尺寸的新型号。

著录项

  • 来源
    《工程(英文)》 |2020年第010期|P.766-780|共15页
  • 作者单位

    Mechanics Laboratory Doctoral Training Unit in Engineering Sciences Doctoral School of Fundamental and Applied Sciences University of Douala Douala CameroonDepartment of Architecture and Urbanism Institute of Fine Arts University of Douala Douala Cameroon;

    Mechanics Laboratory Doctoral Training Unit in Engineering Sciences Doctoral School of Fundamental and Applied Sciences University of Douala Douala CameroonHigher Normal School of Technical Education University of Douala Douala Cameroon;

    Mechanics Laboratory Doctoral Training Unit in Engineering Sciences Doctoral School of Fundamental and Applied Sciences University of Douala Douala Cameroon;

    Mechanics Laboratory Doctoral Training Unit in Engineering Sciences Doctoral School of Fundamental and Applied Sciences University of Douala Douala CameroonHigher Normal School of Technical Education University of Douala Douala Cameroon;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 金属学与热处理;
  • 关键词

    Raft Foundation; Water Content; Compactness; Consolidation; Settlement; Deformation; Numerical Simulation;

    机译:筏基础;含水量;紧凑;整合;结算;变形;数值模拟;
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