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Field Tests on Bearing Characteristics of X-Section Pile Composite Foundation

机译:X截面桩复合地基承载特性的现场试验

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摘要

To investigate the behavior of X-section cast-in-place concrete piles (XCC pile), a series of static load tests for piled foundation are conducted on the basis of a soft soil reinforcement engineering for a sewage treatment plant in the north of Nanjing, China. The testing results are presented in load-settlement curves, pile-soil stress ratios, distributions of skin friction (side friction) and axial force, and load-sharing between side resistance and end-bearing capacity. Comparative analysis between an XCC pile and a circular section concrete pile (circular pile) with the same cross-sectional area indicates that the XCC pile with its increased perimeter can improve the vertical-bearing capacity by 20% because of the larger skin friction. Also, the XCC pile shows increasing pile-soil stress ratio and reduces settlement. The existing design standards for traditional piles can be referenced by the XCC pile composite foundation, because the axial force and skin friction distribution are the same as those of the traditional pile. It has been found that pile spacing is an important factor for XCC piles, and the XCC pile should be considered as a special friction pile because of high skin friction sharing. Above all, the XCC pile can significantly increase ground-bearing capacity.
机译:为了研究X型截面现浇混凝土桩(XCC桩)的性能,在南京北部污水处理厂的软土加固工程的基础上,进行了一系列桩基础的静载荷试验。 ,中国。测试结果以荷载-沉降曲线,桩-土应力比,表皮摩擦(侧向摩擦)和轴向力的分布以及侧向阻力与端承力之间的载荷分担的形式表示。 XCC桩和相同横截面的圆形截面混凝土桩(圆形桩)之间的比较分析表明,周向增大的XCC桩由于较大的表皮摩擦力,可将竖向承载力提高20%。同样,XCC桩表现出增加的桩土应力比并减少沉降。 XCC桩复合地基可以参考传统桩的现有设计标准,因为其轴向力和表皮摩擦力分布与传统桩相同。已经发现,桩间距是XCC桩的重要因素,并且XCC桩由于具有较高的表皮摩擦力而应被视为特殊的摩擦桩。最重要的是,XCC桩可以显着提高地面承载力。

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