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Response of reinforced concrete piles including soil-pile interaction effects

机译:钢筋混凝土桩的响应包括土桩相互作用效应

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This paper discusses the importance of modeling soil-pile interaction in the response of reinforced concrete (RC) piles. A displacement-based, RC beam-column fiber model with distributed lateral deformable supports is presented first. The formulation is general and applies to both monotonic and cyclic loads. The proposed model is simple, computationally efficient and capable of representing the salient features of the soil-pile interaction, including dragging force and gap formation along the pile-soil interfaces as well as hysteretic responses of piles and surrounding soils. Two applications are presented to illustrate the model characteristics, to show the model capabilities, and to discuss the importance of modeling the pile-soil system. The first application deals with a single end-bearing pile embedded in a cohesionless soil. The proposed beam-column model is used to investigate the effects of different model parameters on the pile-soil response, including pile length, pile diameter, and pile and soil nonlinearities. The second application validates the accuracy of the proposed model with the experimental results of a cyclic test on a RC pile/shaft system where the influence of the pile-soil interaction is essential. Results from the correlation studies indicate that the proposed model can represent well both global and local responses of the pile-soil system. The effects of the interfacial characteristics between pile and soil on the system response are also studied.
机译:本文讨论了在钢筋混凝土(RC)桩响应中建立土-桩相互作用模型的重要性。首先提出了基于位移的,具有分布侧向可变形支撑的RC梁柱纤维模型。该公式是通用的,适用于单调和循环载荷。所提出的模型简单,计算效率高,并且能够代表土-桩相互作用的显着特征,包括沿桩-土界面的拖曳力和间隙形成以及桩和周围土壤的滞后响应。提出了两个应用程序来说明模型特征,显示模型功能以及讨论对桩-土系统建模的重要性。第一个应用程序涉及嵌入无粘性土壤中的单个端承桩。提出的梁柱模型用于研究不同模型参数对桩-土响应的影响,包括桩长,桩直径以及桩与土的非线性。第二个应用程序通过对RC桩/竖井系统进行循环测试的实验结果验证了所提出模型的准确性,其中桩-土相互作用的影响至关重要。相关研究的结果表明,所提出的模型可以很好地代表桩-土系统的整体和局部响应。还研究了桩与土之间的界面特性对系统响应的影响。

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