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Effect Of Piled Raft Design On High-Rise Building Considering Soil Structure Interaction

机译:考虑土-结构相互作用的桩筏设计对高层建筑的影响

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Abstract: Piled-raft foundations for important high-rise buildings have proved to be a valuable alternative to conventional pile foundations or mat foundations. The concept of using piled raft foundation is that the combined foundation is able to support the applied axial loading with an appropriate factor of safety and that the settlement of the combined foundation at working load is tolerable. Pile raft foundation behavior is evaluated with many researches and the effect of pile length; pile distance, pile arrangement and cap thickness are determined under vertical or horizontal static and dynamic loading. In the present paper the influence of pile length configurations on behavior of multi-storied are evaluated under vertical loading. In practice, the foundation loads from structural analysis are obtained without allowance for soil settlements and the foundation settlements are estimated assuming a perfectly flexible structure. However, the stiffness of the structure can restrain the displacements of the foundations and even tiny differential settlements of the foundations will also alter forces of the structural members. Hence, the interaction among structures, their foundations and the soil medium below the foundations alter the actual behaviour of the structure considerably than what is obtained from the consideration of the structure alone. In this work, analysis of pile soil structure interaction has been studied by finite element software ANSYS 11. The soil structure interaction has been found to be significantly affecting the performance of structure and it is discussed in this paper.
机译:摘要:事实证明,用于重要高层建筑的桩筏基础是常规桩基础或垫层基础的宝贵替代品。使用桩筏基础的概念是,组合式基础能够以适当的安全系数支撑施加的轴向载荷,并且组合式基础在工作载荷下的沉降是可以容忍的。对桩筏基础行为进行了许多研究,并评估了桩长的影响。在垂直或水平静态和动态载荷下确定桩距,桩布置和桩帽厚度。在本文中,评估了竖向荷载下桩长配置对多层结构行为的影响。实际上,在不考虑土壤沉降的情况下,通过结构分析获得地基荷载,并在假定结构完全柔性的情况下估算地基沉降。然而,结构的刚度可以限制基础的位移,即使基础的微小差异沉降也会改变结构构件的力。因此,与仅考虑结构而获得的结果相比,结构,其基础和基础之下的土壤介质之间的相互作用极大地改变了结构的实际行为。在这项工作中,已经通过有限元软件ANSYS 11研究了桩土结构相互作用的分析。已经发现土结构相互作用对结构性能的影响很大,本文对此进行了讨论。

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