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Quality evaluation of ground improvement by deep cement mixing piles via ground-penetrating radar.


ABSTRACT: Deep cement mixing piles are a key technology for treating settlement distress of soft soil subgrade. However, it is very challenging to accurately evaluate the quality of pile construction due to the limitations of pile material, large number of piles and small pile spacing. Here, we propose the idea of transforming defect detection of piles into quality evaluation of ground improvement. Geological models of pile group reinforced subgrade are constructed and their ground-penetrating radar response characteristics are revealed. We have also developed ground-penetrating radar attribute analysis technology and established ground-penetrating radar technical system for evaluating the quality of ground improvement. We further prove that the ground-penetrating radar results integrating single-channel waveform, multi-channel section and attributes can effectively detect the defects and stratum structure after ground improvement. Our research results provide a rapid, efficient and economic technical solution for the quality evaluation of ground improvement in soft soil subgrade reinforcement engineering.

SUBMITTER: Shen H 

PROVIDER: S-EPMC10257722 | biostudies-literature | 2023 Jun

REPOSITORIES: biostudies-literature

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Quality evaluation of ground improvement by deep cement mixing piles via ground-penetrating radar.

Shen Hongyan H   Li Xinsheng X   Duan Ruifeng R   Zhao Yong Y   Zhao Jing J   Che Han H   Liu Guoxin G   Xue Zhijia Z   Yan Changgen C   Liu Jiwei J   Jiang Chao C   Li Boke B   Chang Hong H   Gao Jianqiang J   Yan Yueying Y  

Nature communications 20230610 1


Deep cement mixing piles are a key technology for treating settlement distress of soft soil subgrade. However, it is very challenging to accurately evaluate the quality of pile construction due to the limitations of pile material, large number of piles and small pile spacing. Here, we propose the idea of transforming defect detection of piles into quality evaluation of ground improvement. Geological models of pile group reinforced subgrade are constructed and their ground-penetrating radar respo  ...[more]

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