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Geotechnical resistance factors for ultimate limit state design of deep foundations in cohesive soils

机译:粘性土中深基础极限极限状态设计的岩土阻力因子

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This paper investigates the ultimate limit state load and resistance factor design (LRFD) of deep foundations founded within purely cohesive soils. The geotechnical resistance factors required to produce deep foundation designs having a maximum acceptable failure probability are estimated as a function of site understanding and failure consequence. The probability theory developed in this paper, used to determine the resistance factors, is verified by a two-dimensional random field Monte Carlo simulation of a spatially variable cohesive soil. The agreement between theory and simulation is found to be very good, and the theory is then used to derive the required geotechnical resistance factors. The results presented in this paper can be used to complement current ultimate limit state design code calibration efforts for deep foundations in cohesive soils.
机译:本文研究了在纯粘性土壤中建立的深层基础的极限极限状态荷载和抗力因子设计(LRFD)。估计产生具有最大可接受破坏概率的深层基础设计所需的岩土工程抗力系数是根据现场理解和破坏后果而估计的。本文开发的用于确定阻力因子的概率论已通过对空间可变粘性土的二维随机场蒙特卡罗模拟进行了验证。理论与仿真之间的一致性非常好,然后将该理论用于导出所需的岩土工程抗力因子。本文介绍的结果可用于补充粘性土壤深层基础的当前极限状态设计规范校准工作。

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