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Assessment of Dynamic Characteristics for Compaction Piles with Geophysical Logging in Soft Ground

机译:软土地基物探压实桩的动力特性评估。

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摘要

In this paper, a case study was performed on a sand compaction pile (SCP) and a gravel compaction pile (GCP) to estimate the dynamic characteristics and the improvement effect of soft ground. The dynamic elastic modulus, shear modulus, bulk modulus, and Poisson's ratio were estimated and the dynamic characteristics were analyzed using the compression and shear wave velocity of the improved ground based on the results of suspension P- and S-wave (PS) logging. The results revealed that the dynamic properties were increased in the order of unimproved subsoil and improved subsoil using SCP and GCP. The increase in the effects of dynamic properties with each replacement ratio of SCP was not large, whereas a good increase in the effects was observed in the case of the improved subsoil with GCP. Consequently, it was presented that the resistance characteristics against the seismic loading of GCP are excellent. As a result of analyzing the density distribution of the improved subsoil through density field logging, the overall density distribution gradually exhibits increasing trends in the order of unimproved subsoil and improved subsoil with SCP and GCP. Thus, the improvement effect of GCP was relatively high in comparison with the same replacement ratio of SCP.
机译:本文以压实桩(SCP)和碎石压实桩(GCP)为例进行了研究,以估算其动力特性和软土地基的改善效果。根据悬架P波和S波(PS)测井的结果,估算了改进地面的压缩和剪切波速度,估算了动态弹性模量,剪切模量,体积模量和泊松比,并分析了动力特性。结果表明,使用SCP和GCP,动态性能按未改良的地基和改良的基础依次增加。每次更换SCP时,动态特性的影响增加并不大,而在使用GCP改良的底土中,观察到的效果有很好的增加。因此,提出了对GCP的地震载荷的抵抗特性是优异的。通过密度场测井分析改进后的土壤的密度分布的结果,总体密度分布按未改进的土壤和采用SCP和GCP改进的土壤的顺序逐渐显示出增加的趋势。因此,与相同的SCP替代率相比,GCP的改善效果相对较高。

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