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高常辉, 刘松玉, 杜广印, 庄仲旬, 杨泳, 何欢. 气动振杆密实法加固湿陷性黄土的模型试验研究[J]. 岩土工程学报, 2024, 46(2): 325-334. DOI: 10.11779/CJGE20221301
引用本文: 高常辉, 刘松玉, 杜广印, 庄仲旬, 杨泳, 何欢. 气动振杆密实法加固湿陷性黄土的模型试验研究[J]. 岩土工程学报, 2024, 46(2): 325-334. DOI: 10.11779/CJGE20221301
GAO Changhui, LIU Songyu, DU Guangyin, ZHUANG Zhongxun, YANG Yong, HE Huan. Model tests on reinforcement of collapsible loess by pneumatic-vibratory probe compaction method[J]. Chinese Journal of Geotechnical Engineering, 2024, 46(2): 325-334. DOI: 10.11779/CJGE20221301
Citation: GAO Changhui, LIU Songyu, DU Guangyin, ZHUANG Zhongxun, YANG Yong, HE Huan. Model tests on reinforcement of collapsible loess by pneumatic-vibratory probe compaction method[J]. Chinese Journal of Geotechnical Engineering, 2024, 46(2): 325-334. DOI: 10.11779/CJGE20221301

气动振杆密实法加固湿陷性黄土的模型试验研究

Model tests on reinforcement of collapsible loess by pneumatic-vibratory probe compaction method

  • 摘要: 气动振杆密实法是湿陷性黄土地基处理的一项全新技术。采用自行研制的气动振杆密实模型试验装置,进行了单一激振力、气体射流协同激振力两种条件下的模型试验,评价了土体加固效果,研究了振杆贯入过程中土体水平向土压力、土颗粒垂直振动速度和土体中气体压力值的变化规律。试验发现,处理后各深度土层的密度均有明显提高,湿陷系数降低;增设气体射流后,100 mm深度以下土层密度进一步提高,水平向土压力最大提高20.4%,同时放大了振杆密实法引起的土体振动响应。研究揭示了气体射流在土体加固过程中的作用机理,探讨了气动振杆密实法加固湿陷性黄土机理,为推广气动振杆密实法处理湿陷性黄土地基技术的应用提供了理论依据。

     

    Abstract: The pneumatic-vibratory probe compaction method is a new technology for the treatment of collapsible loess. By using the self-developed pneumatic-vibration model test devices, the model tests on the reinforcement of collapsible loess are carried out by the above method under two test conditions, single excitation force and air jet combined with excitation force. The reinforcement effects are evaluated. The change rules of the horizontal soil pressure, vertical vibration velocity of soil particles and gas pressure values in the soils during the penetration of the vibratory probe are studied. The results show that the density of soil layers at each depth is significantly increased, and the collapsibility coefficient is reduced after the treatment. With the addition of air jet, the density of the soil layers below 100 mm in depth is further increased, and the maximum horizontal soil pressure is increased by 20.4%. At the same time, the vibration response of soils caused by the method is amplified. The mechanism of air jet in the process of soil reinforcement is revealed, and the mechanism of the pneumatic-vibratory probe compaction method to reinforce collapsible loess is discussed, which provides the theoretical basis for promoting the application of the method to treat collapsible loess foundation.

     

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