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Engineering property evaluation of soil before and after PHC pipe pile installation

机译:PHC管桩安装前后土壤工程性能评价

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Researchers at home and abroad are mainly focused on the bearing capacity, effects of soil plug and pile driving of PHC pipe piles. However, little attention is paid to property variation of soil before and after their installation especially when different installation technology is adopted. For further study of engineering property of PHC pipe pile composite foundation, the property variation of soils among PHC pile piles before and after their installation was studied with CPTU in-situ test technique in northern connection project of Chongqi Bridge expressway. The results indicate that, regardless of the pile installation, either hammer percussion method or static pressure method, several physical and mechanical parameters of soils among PHC piles were increased while both the consolidation coefficient and permeability coefficient of soft soil decreased one year after installation. For hammer percussion method, during the process of pile driving, soils around the pile accept a strong non-uniform drag effect, which makes the soil compacted in local area significantly. So the CPTU tip resistance of hammer percussion method is often significantly higher than that of static pressure method in local areas, which also leads to that the average deduced parameters of hammer percussion method such as the relative density and the effective internal friction angle of sand or undrained shear strength of cohesive soil are usually higher. Under the condition of same geology and design parameters, the skin friction of soils around pile in hammer percussion method is generally lower than that of static pressure method. This is of great significance for the PHC pipe pile which used as friction pile and for the bearing characteristic of PHC pipe pile composite foundation.
机译:国内外的研究人员主要集中在轴承能力,土壤塞和PHC管桩桩驱动的影响。但是,特别是在安装不同的安装技术之前和之后,在安装之前和之后,对土壤的性能变化很少。为了进一步研究PHC管桩复合地基的工程性能,研究了在Chongqi Bridge Expractway北部连接项目中的CPTU原位试验技术研究了PHC桩桩中土壤的性能变化。结果表明,无论桩安装,无论是锤击机制还是静态压力法,PHC桩之间的几种物理和机械参数都会增加,同时安装后软土的固结系数和渗透系数减少。对于锤击式撞击法,在桩驾驶过程中,桩周围的土壤接受强烈的非均匀拖曳效果,使土壤在局部地区显着压实。因此,锤式撞击法的CPTU尖端电阻通常显着高于局部区域静压方法的电阻,这也导致锤击锤的平均推导参数,例如相对密度和砂的有效内部摩擦角粘性土壤的未染色剪切强度通常更高。在同一地质和设计参数的条件下,锤击撞击法周围的土壤的皮肤摩擦通常低于静压法的桩。这对于用作摩擦桩的PHC管桩以及PHC管桩复合地基轴承特性具有重要意义。

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