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Health monitoring during vibratory compaction of soil

机译:振动压实过程中的健康监测

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摘要

Vibratory compaction is a proven and commonly adopted densification technique appb'cable for a wide variety of soil types and compositions. There is a clear need to develop performance-based intelligent vibratory soil compaction techniques wherein the state of the soil is determined during compaction (i.e., health monitoring, continuous quality control). The application of vibration-based structural health monitoring strategies utilized in damage detection applications to the problem of soil compaction appears promising. A vibratory compactor (plate or drum) operating on a soil mass constitutes a coupled dynamic system. As the soil densifies and its mechanical properties change, the dynamic response of the compactor will change. This paper examines the changes in dynamic response of a vibratory plate during compaction. The analysis of vibration data taken from sensors on the plate and embedded within the soil reveals clear changes in both amplitude and frequency components that provide insight into the evolving nonlinear response of the system.
机译:振动压实是一种经过验证的且普遍采用的致密化技术,适用于多种土壤类型和成分。显然需要开发基于性能的智能振动土壤压实技术,其中在压实过程中确定土壤状态(即,健康监测,连续质量控制)。基于振动的结构健康监测策略在损伤检测应用中对土壤压实问题的应用看来很有希望。在土壤团块上运行的振动压实机(板式或鼓式)构成了一个耦合动力系统。随着土壤的致密化及其机械性能的变化,压实机的动态响应也会发生变化。本文研究了压实过程中振动板动力响应的变化。对从平板上的传感器获取并嵌入土壤中的振动数据进行的分析表明,振幅和频率分量均发生了明显变化,从而可以深入了解系统不断变化的非线性响应。

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