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A novel preloading method for foundation underpinning for the remodeling of an existing building

机译:一种新的预加载方法,用于基于现有建筑重塑的基础

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The utilization of buildings can be improved by extending them vertically. However, the added load of the extension might require building foundations to be underpinned; otherwise, the loads on the foundations might exceed their bearing capacity. In this study, a preloading method was presented aiming at transferring partial loads from existing piles to underpinning piles. A pneumatic-type model preloading device was developed and used to carry out centrifuge experiments to evaluate the load-displacement behavior of piles, the pile-soil interaction during preloading, and the additional loading caused by vertical extension. The results showed that the preloading devices effectively transfer load from existing piles to underpinning piles. In the additional loading test of group piles, the load-sharing ratio of a pile increased with its stiffness. The load-sharing ratio of a preloaded micropile was less than that of a non-preloaded micropile as a result of the reduction in axial stiffness caused by preloading before additional loading. Therefore, a slight reduction of the load-sharing capacity of an underpinning pile should be considered if the preloading method is applied. Further, two full scale preloading devices was developed. The devices preload underpinning piles and thereby produce reaction forces on a reaction frame to jack existing piles upward, thus transferring load from the existing piles to the underpinning piles. Specifically, screw-type and hydraulic-jack type devices were developed for the practical application of foundation underpinning during vertical extension, and their operability and load transfer effect verified via full-scale structural experiments.
机译:可以通过垂直延伸它们来改善建筑物的利用。但是,扩展的附加负载可能需要建立基础的基础;否则,基础上的负载可能会超过其承载力。在该研究中,提出了一种预加载方法,其旨在将来自现有桩的部分载荷转移到支撑桩。开发了一种气动式模型预加载装置并用于进行离心机实验,以评估桩的负载 - 位移行为,预加载过程中的桩土相互作用,以及由垂直延伸引起的额外装载。结果表明,预加载装置有效地将载荷从现有桩转移到堆积桩。在组桩的额外装载试验中,桩的载荷共用比率随着其刚度而增加。由于在额外装载之前预先加载引起的轴向刚度降低,预载微型微量厚度的负荷共用比率小于非预载微量的微量。因此,如果施加预加载方法,则应考虑支撑桩的载荷分布容量的略微降低。此外,开发了两个满量程预加载设备。这些装置预加载底桩,从而在向上的反应框架上产生反作用力以向上升降成立,从而将来自现有桩的载荷转移到底层桩。具体而言,螺旋型和液压千斤顶型器件是开发用于垂直延伸期间基础支撑的实际应用,以及通过全规模结构实验验证的可操作性和负载转移效果。

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