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Contribution to the design methodologies of piled raft foundations under combined loadings

机译:组合荷载下桩筏基础设计方法的贡献

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Although simplified design methods for piled raft foundations have been proposed to allow for the group effect and soil-pile-raft interaction, most of them are concentrated on one type of loading, rendering the applicability of these methods limited to cases under such loads. In the case of a combined pile raft foundation (CPRF), the structural loads are carried partly by the piles and partly by the raft as a function of the foundation settlement, rendering the CPRF a complex soil-structure interaction issue. Despite the recent development of computational resources and advances in numerical expertise, a detailed three-dimensional (3-D) numerical analysis, accounting for soil nonlinearities, nonlinear behavior of the interfaces between the soil, piles, and raft under various combinations of loadings remains impractical. The objective of this paper is to provide a rather simplified and straightforward design methodology for pile foundations under combined loadings. To achieve this goal, previous research works on the group effect under axial and lateral loading have been evaluated and the piles-raft interaction effect has been considered. The proposed procedure is fully compatible with structural software codes and can be straightforwardly applied to the design of the structural members, as it is able to effectively solve a CPRF under the numerous combinations of loadings required by most design codes.
机译:尽管已经提出了用于桩筏基础的简化设计方法,以实现群效应和土-桩-筏相互作用,但它们大多数都集中在一种载荷上,使得这些方法的适用性仅限于这种载荷下的情况。在组合桩筏基础(CPRF)的情况下,结构载荷部分由桩承载,部分由筏承载,这是基础沉降的函数,这使CPRF成为复杂的土壤-结构相互作用问题。尽管计算资源的最新发展和数值专业知识的进步,但仍进行了详细的三维(3-D)数值分析,考虑了土壤非线性,在各种荷载组合下土壤,桩和筏之间界面的非线性行为。不切实际的。本文的目的是为组合荷载下的桩基础提供一种相当简化和直接的设计方法。为了达到这个目的,已经对先前在轴向和横向载荷下的群效应进行了研究,并考虑了桩-筏相互作用效应。所提出的程序与结构软件代码完全兼容,并且可以直接应用于结构构件的设计,因为它能够在大多数设计代码所需的多种载荷组合下有效地求解CPRF。

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