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Reliability-based serviceability limit state design for immediate settlement of spread footings on clay

机译:基于可靠性的可使用性极限状态设计,用于立即解决粘土上的地基问题

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摘要

While many spread footings constructed on clayey soils are designed using consolidation settlement analyses for the serviceability limit state (SLS), immediate settlement, or undrained displacement, of the footing may also contribute a significant portion of the total and/or differential settlement. Owing to possible magnitudes in immediate settlement, and with regard to stress history, assessment of the contribution of immediate settlement comprises an essential task for the understanding of the performance of a foundation system. This study proposes a simple reliability-based design (RBD) procedure for assessing the allowable immediate displacement of a spread footing supported on clay in consideration of a desired serviceability limit state. A relationship between the traditional spread footing bearing capacity equation and slope tangent capacity is established, then incorporated into a bivariate normalized bearing pressure displacement model to estimate the mobilized resistance associated with a given displacement. The model was calibrated using a high quality database of full-scale loading tests compiled from various sources. The loading test data was used to characterize the uncertainty associated with the model and incorporated into an appropriate reliability-based performance function. Monte Carlo simulations were then used to calibrate a resistance factor with consideration of the uncertainty in the bearing pressure displacement model, bearing capacity, applied bearing pressure, allowable displacement, and footing width. An example is provided to illustrate the application of the proposed procedure to estimate the bearing pressure for an allowable immediate displacement of a footing at the targeted probability and serviceability limit state. (C) 2015 The Japanese Geotechnical Society. Production and hosting by Elsevier B.V. All rights reserved.
机译:尽管使用固结沉降分析设计了在黏性土壤上建造的许多散布基础,用于使用寿命极限状态(SLS),立即沉降或不排水位移,但基础也可能占总沉降和/或差异沉降的很大一部分。由于即时解决的可能幅度以及应力历史,评估即时解决的贡献是理解基础系统性能的一项重要任务。这项研究提出了一种简单的基于可靠性的设计(RBD)程序,该程序考虑了预期的使用寿命极限状态,评估了支撑在粘土上的摊铺基础的允许即时位移。建立了传统的摊铺基础承载力方程和边坡切线承载力之间的关系,然后将其合并到双变量归一化轴承压力位移模型中,以估算与给定位移相关的动员阻力。该模型使用高质量的数据库进行了校准,该数据库包含从各种来源收集的满负荷测试。负载测试数据用于表征与模型相关的不确定性,并结合到基于可靠性的适当性能函数中。然后,使用蒙特卡洛模拟法来考虑轴承压力位移模型,轴承容量,施加的轴承压力,允许的位移和基脚宽度的不确定性来校准阻力系数。提供了一个示例来说明所建议程序的应用,以估计在目标概率和可使用性极限状态下基础的允许立即位移的承压。 (C)2015年日本岩土学会。 Elsevier B.V制作和托管。保留所有权利。

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