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Damage Monitoring of Dry and Saturated Rocks Using Piezo Transducers

机译:使用压电传感器监测干燥和饱和岩石的损伤

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This paper explores the possibility of using the electro-mechanical impedance (EMI) technique for structural health monitoring (SHM) of underground rock structures. The underground structures are complex in design and require continuous inspection for their maintenance. However, some of the underground areas are inaccessible for the inspection team or might warrant a special clearing arrangement, leaving the structure out of service. The complexity in their design, their construction, and the conditions encountered during service life necessitate the deployment of a dedicated SHM system. Sometimes the stress ratio in rock because of overburden stress and tectonic activities may reach a high value exceeding threshold, which may lead to rock bursts and subsequent failure of the structure. The SHM technique becomes important for underground infrastructure to enable timely detection of the damage caused by any anticipated or unanticipated loads. In the present study, rock specimens have been tested in a laboratory environment under saturated, as well as dry, conditions, under pre-loaded stress conditions by applying continuous quasi-static loading, so as to simulate the near-real-life underground conditions. The EMI technique is used for damage monitoring. The vibrations generated by the actuation of lead zirconate titanate (PZT) patch are sensed by the same PZT patch and recorded in the form of conductance and susceptance signatures. The signatures have been quantified using root-mean-square-deviation (RMSD) method. The test results clearly establish the potential of the EMI technique in detecting and quantifying load-induced damage in dry, as well as saturated, conditions in the underground structures, opening avenues for applications in real-life situations.
机译:本文探讨了将机电阻抗(EMI)技术用于地下岩石结构的结构健康监测(SHM)的可能性。地下结构设计复杂,需要对其进行连续检查。但是,检查人员无法进入某些地下区域,或者可能需要采取特殊的清理措施,从而使结构停止工作。它们的设计,结构和使用寿命中遇到的条件非常复杂,因此必须部署专用的SHM系统。有时,由于上覆应力和构造活动,岩石中的应力比可能达到超过阈值的高值,这可能导致岩石破裂和结构的后续破坏。 SHM技术对于地下基础设施而言,对于及时发现由任何预期或意外负载造成的损坏至关重要。在本研究中,通过连续施加准静态载荷,在实验室环境中的饱和和干燥条件下,在预加载应力条件下对岩石标本进行了测试,以模拟近乎真实的地下条件。 EMI技术用于损坏监测。由相同的PZT贴片感应到锆钛酸铅(PZT)贴片致动所产生的振动,并以电导和电纳记号的形式记录下来。使用均方根偏差(RMSD)方法对签名进行了量化。测试结果清楚地证明了EMI技术在检测和量化地下结构的干燥以及饱和条件下的载荷引起的损坏方面的潜力,为在现实生活中的应用开辟了道路。

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