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A novel method to monitor soft soil strength development in artificial ground freezing projects based on electromechanical impedance technique: Theoretical modeling and experimental validation

机译:一种基于机电阻抗技术的人工冻结工程中柔软土壤强度发展的新方法:理论建模与实验验证

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摘要

The artificial ground freezing is an important technique for soft soil reinforcement and underground water sealing carried out by continuously refrigerating ground. It is of great significance to monitor the soil strength development in artificial ground freezing projects not only for better evaluation of the soil freeze-thaw status but also for predicting and controlling the concurrent adverse effects which may cause serious engineering accidents. In this study, the electromechanical impedance method was explored in monitoring the soil strength development in the freeze-thaw process. The lead zirconate titanate transducer was embedded inside the soil specimen, and changes in the conductance signatures were monitored throughout the soil freeze-thaw process. The experimental results indicate that the resonant frequency of the embedded lead zirconate titanate transducer can serve as a reliable index for assessment of the soil's dynamic elastic modulus in the freeze-thaw process. More importantly, an analytical model was developed based on the piezo-elasticity theory to characterize the correlation between the electromechanical impedance of the lead zirconate titanate transducer and the soil's mechanical properties, and its validity was further confirmed by the experimental research. Based on the proposed model, the development of the soil's strength can be well predicted from the measured conductance signatures. As a nondestructive testing method, the proposed soil testing technique will help save considerable time and resources by avoiding the conventional sampling, specimen preparation, and testing of soil. The theoretical and experimental research will contribute to the future application of the electromechanical impedance method in real-life artificial ground freezing engineering projects.
机译:人工冻结是通过连续制冷地进行的软土加固和地下水密封的重要技术。监测人工冻结项目中的土壤强度发展是具有重要意义,不仅可以更好地评估土壤冻融状态,而且为了预测和控制可能导致严重工程事故的并发不利影响。在本研究中,探讨了机电阻抗法监测冻融过程中的土壤强度发展。铅锆钛酸盐换能器嵌入土壤上,在整个土壤冻融过程中监测电导签名的变化。实验结果表明,嵌入式引线锆钛酸盐换能器的共振频率可以作为评估冻融过程中土壤动态弹性模量的可靠指标。更重要的是,基于压电弹性理论开发了分析模型,以表征引线锆钛换能器的机电阻抗与土壤的机械性能之间的相关性,并通过实验研究进一步证实了其有效性。基于所提出的模型,可以从测量的电导签名开始良好地预测土壤强度的发展。作为非破坏性测试方法,所提出的土壤测试技术将通过避免传统的采样,样本制备和土壤测试来帮助节省大量时间和资源。理论和实验研究将有助于将机电阻抗法在现实生活中冻结工程项目中的应用。

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