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Experimental and field studies on the behavior of drilled displacement piles

机译:钻孔桩行为的实验与现场研究

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Piles or deep foundations are elements for transferring the load of structures to the substructure and soil layers with more suitable conditions to guarantee the stability of the structure and provide proper service by them. In this regard, the driven and bored piles are commonly used, but high noise and vibration of the driven piles, as well as difficulties and limitations in implementation of the bored piles, have led to the use of a new alternative type of piles installed in the soil using torque and a small amount of compressive axial force. Helical and drilled displacement piles can be mentioned as new types of these piles. Considering the increasing use of these piles, still a few studies have been conducted on them and there is a need for further research on their behavior in different soils and conditions. Therefore, in the present study, in two field and experimental sections, behavior of these piles was evaluated by performing tensile and compressive loading tests. Three models of helical, Tsubasa, and drilled displacement pile were implemented and loaded in experimental section in the frustum-confining vessel of the Amirkabir University of Technology (FCV-AUT) and were compared with the previous works in field section. Our results revealed that drilled displacement pile had better performance than other piles under tension and compression, and it had harder behavior and better capacity than the other two piles in both experimental and field conditions. Also, the required torque of this pile had higher values compared to other piles.
机译:桩或深层基础是用于将结构负荷转移到子结构和土层的元件,具有更合适的条件,以保证结构的稳定性并由它们提供适当的服务。在这方面,通常使用驱动和钻孔桩,但是从动桩的高噪音和振动以及钻孔桩的实施中的困难和限制导致了安装在中的新替代类型的桩使用扭矩和少量压缩轴向力的土壤。螺旋和钻孔位移桩可以提及这些桩的新类型。考虑到这些桩的使用日益越来越多,仍然对它们进行了一些研究,并且需要进一步研究他们在不同土壤和条件下的行为。因此,在本研究中,在两个场和实验部分中,通过进行拉伸和压缩负载测试来评估这些桩的行为。三种螺旋,Tsubasa和钻出的位移桩的模型是在Amirkabir Technology(FCV-AUT大学的Frustum-Conumined船舶(FCV-Aut)的实验部分中进行了实施和装载,并与前面的实地部分进行了比较。我们的研究结果表明,钻孔的位移桩比张力和压缩下的其他桩具有更好的性能,并且在实验和现场条件下,它比其他两堆更难的行为和更好的容量。而且,与其他桩相比,该堆的所需扭矩具有更高的值。

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