An attempt to apply the kinematic method of rigid solids in the study of bearing capacity of shallow foundations

M. Bencheikh, Assia Aidoud, B. F. Zohra, Belabed Lazhar, Dorbani Meriem
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Abstract

Abstract In the geotechnical engineering field, shallow foundations are frequently needed to ensure good fieldwork stability. They are also intended to permanently and uniformly transmit all load pressure on the seating floor. However, numerous mechanical constraints, such as bearing capacity of foundations, durability, stability, design of shallow foundations, lead, unfortunately, to a serious realization challenge. Finding an adequate solution presents the main goal and effort of both scholars and professionals. Indeed, the corresponding drawback is observed through the high number of reported damages that occurred in the structure of foundations and the punching failure. The failure mechanisms of shallow foundations, verified in full size or on scale models, show “sliding surfaces” and rigid (solid) blocks, which can be described with the kinematic method of rigid solids. The main objective of this study is the application of the kinematic method of rigid solids in the study of the stability of shallow foundations with respect to punching, the purpose of which is to determine the bearing capacity factors Nc, Nγ, and the passive earth pressure coefficient Kp of foundations. In this context, two mechanical models have been proposed with 5 and 7 rigid solids, and a program developed via the MathCAD environment is applied to check the validity of the two previous models. The kinematic method of rigid solids gives results very close and comparable with that of Caquot/Kerisel for the factors of the bearing capacity and passive earth pressure coefficient - the ratio Kp - according to the five- and seven-solid model.
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将刚体运动学方法应用于浅基础承载力研究的尝试
摘要在岩土工程领域,为了保证良好的现场稳定性,经常需要使用浅基础。它们还旨在永久和均匀地传递阀座地板上的所有负载压力。然而,众多的力学约束,如基础的承载力、耐久性、稳定性、浅基础的设计,不幸地导致了一个严重的实现挑战。寻找一个合适的解决方案是学者和专业人士的主要目标和努力。事实上,相应的缺陷是通过大量报告的基础结构损坏和冲孔破坏观察到的。在全尺寸或比例模型上验证的浅基础破坏机制显示出“滑动面”和刚性(实体)块,可以用刚性实体的运动学方法来描述。本研究的主要目的是将刚体运动学方法应用于浅基础冲孔稳定性研究,确定基础承载力系数Nc、Nγ和被动土压力系数Kp。在此背景下,提出了5个和7个刚性实体的两种力学模型,并通过MathCAD环境开发了一个程序来检查前两种模型的有效性。刚性固体的运动学方法给出了与Caquot/Kerisel根据五和七固体模型计算承载力和被动土压力系数Kp的结果非常接近和可比。
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