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Load transfer approach for the geotechnical analysis of energy piles in a group with slab

机译:用板坯岩石岩土地分析岩土地分析的负荷转移方法

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摘要

Thermally induced group effects characterise closely spaced energy piles. It has been observed experimentally that the behaviour of energy piles subjected to mechanical and thermal loads, in which the piles are located sufficiently close to each other, is different from the behaviour of single isolated piles. Therefore, civil engineers encounter new challenges in the geotechnical design of such foundations. This leads to the necessity to develop practical tools to address their analysis and design. The conventional load transfer method is one of the commonly used methods for the analysis of axially loaded conventional piles. Thus, the purpose of this study has been to propose a formulation of the load transfer method to consider the thermally induced effects among energy piles in groups. The soil response is characterized in a lumped form by ascribing the behavioural features of the soil to interface elements. The individual response, in terms of strain and stress of an energy pile in a group, can be addressed for the first time through the application of the displacement factor in the load displacement curve of the single isolated energy pile. A validation through a full-scale field test reveals the capability of the approach to provide the necessary information in the analysis and design phases of the foundation for one-way thermal loads.
机译:热诱导的组效应表征了紧密间隔的能量桩。已经通过实验观察到经受机械和热负荷的能量桩的行为,其中桩位于彼此足够靠近的机械和热负荷,与单个隔离桩的行为不同。因此,土木工程师在此类基金会的岩土设计中遇到了新的挑战。这导致了开发实用工具来解决分析和设计的必要性。传统的负载转移方法是用于分析轴向装载的传统桩的常用方法之一。因此,本研究的目的是提出了配制负载转移方法,以考虑群体中的热诱导的效果。通过将土壤的行为特征视为界面元件来表征土壤反应以集体形式。在组中的能量桩的应变和应力方面,可以首次通过在单个隔离能量桩的负载位移曲线中的置换因子的应用来解决个体响应。通过全尺寸现场测试的验证揭示了该方法的能力,以便在基础的分析和设计阶段提供必要的信息,以便单向热负荷。

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