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A systematic framework for formulating convex failure envelopes in multiple loading dimensions

机译:一个用于在多个载荷维度上制定凸面破坏包络的系统框架

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摘要

The failure envelope approach is widely used to assess the ultimate capacity of shallow foundations for combined loading, and to develop foundation macro-element models. Failure envelopes are typically determined by fitting appropriate functions to a set of discrete failure load data, determined either experimentally or numerically. However, current procedures to formulate failure envelopes tend to be ad hoc, and the resulting failure envelopes may not have the desirable features of being convex and well-behaved for the entire domain of interest. This paper describes a new systematic framework to determine failure envelopes - based on the use of sum of squares convex polynomials - that are guaranteed to be convex and well-behaved. The framework is demonstrated by applying it to three data sets for failure load combinations (vertical load, horizontal load and moment) for shallow foundations on clay. An example foundation macro-element model based on the proposed framework is also described.
机译:破坏包络法被广泛用于评估浅层基础在组合荷载作用下的极限承载力,并建立基础宏单元模型。通常通过将适当的函数拟合到一组离散的故障负载数据来确定故障包络,这些数据是通过实验或数值确定的。但是,目前制定失效包络线的程序往往是临时性的,并且所产生的失效包络线可能不具有在整个关注领域中凸出并表现良好的理想特征。本文介绍了一种新的系统框架,该框架可基于平方和凸多项式的总和的使用来确定失效包络,这些包络可以保证是凸的且行为良好。通过将该框架应用于粘土浅层基础上的破坏荷载组合(垂直荷载,水平荷载和弯矩)的三个数据集来演示该框架。还描述了一个基于所提出框架的示例基础宏元素模型。

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