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

机译:摩擦土壤深基极限极限状态设计的岩土阻力因子

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This paper investigates the probabilistic nature of ultimate limit state failures of deep foundations in purely frictional soils (e.g., sands). In so doing, the theory required to predict both the probability of ultimate limit state failure and the resistance factors needed to avoid this limit state are proposed. The proposed resistance factors are functions of site understanding and failure consequence, and the theory leading to these resistance factors is validated via Monte Carlo simulation of a two-dimensional spatially variable random field. In both the theory and the simulation, a pile is assumed to be placed vertically at a certain position in the soil mass, and the soil is sampled at various distances from the pile to come up with characteristic soil properties (namely friction angle) for use in the pile design. Agreement between theory and simulation is found to be very good. The theoretical model is then employed to determine upper bound geotechnical resistance factors, which can be used to complement current ultimate limit state design code calibration efforts. An example of such a calibration is presented.
机译:本文研究了纯摩擦土壤(例如沙子)中深基础的极限极限状态破坏的概率性质。这样做,提出了预测最终极限状态失效概率和避免该极限状态所需的阻力因子的理论。所提出的阻力因素是现场理解和破坏后果的函数,导致这些阻力因素的理论通过二维空间可变随机场的蒙特卡罗模拟得到了验证。在理论和模拟中,都假定将桩垂直放置在土壤中的某个位置,并在距桩不同距离的位置对土壤进行采样,以得出具有特征性的土壤特性(即摩擦角)以供使用。在桩设计中。理论与仿真之间的一致性非常好。然后,采用理论模型来确定岩土工程阻力的上限因子,这些因子可用于补充当前的极限状态设计规范的校准工作。给出了这种校准的一个例子。

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