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Monitoring of rocks using smart sensors

机译:使用智能传感器监控岩石

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This paper examines the feasibility of employing the new generation fibre optic and piezoelectric sensor systems for comprehensive monitoring of rocks, covering load history monitoring/retrieval as well as damage assessment. A detailed experimental study was conducted on the Bukit Timah granite rock samples obtained from a cavern site in Singapore. The rock specimens were subjected to cyclic loading and their conditions were continuously monitored using such smart sensors. Optical fibres with multiplexed fibre Bragg gratings (FBGs), surface bonded on the rock specimens, were used as strain and temperature sensors. Their performance was compared with the conventional electric strain gauges (ESGs). Piezo-electric ceramic patches made up of lead zirconate titanate (PZT) were employed as piezo-impedance transducers for detecting the onset of damages. These typically employed high frequencies of the order of kHz to extract impedance information of the specimens. Typically, the piezo-impedance transducers detected cracks even before they reached macroscopic dimensions. The results of this experimental study demonstrate the superior performance and cost-effectiveness of the new generation smart technologies as compared to the conventional sensor systems for monitoring rock-structures such as caverns and tunnels.
机译:本文探讨了使用新一代光纤和压电传感器系统对岩石进行全面监控的可行性,该系统涵盖了负载历史记录监视/检索以及损害评估。对从新加坡一个洞穴地点获得的武吉知马花岗岩岩石样品进行了详细的实验研究。岩石标本受到循环载荷,并使用此类智能传感器连续监测其状况。表面粘合在岩石样本上的具有多路复用布拉格光栅(FBG)的光纤用作应变和温度传感器。将其性能与传统的电应变仪(ESG)进行了比较。由锆钛酸铅(PZT)组成的压电陶瓷贴片用作压电阻抗传感器,用于检测损坏的发生。这些通常采用kHz量级的高频来提取样本的阻抗信息。通常,压电阻抗传感器甚至在裂纹达到宏观尺寸之前就检测到裂纹。该实验研究的结果表明,与用于监视岩洞和隧道等岩石结构的传统传感器系统相比,新一代智能技术具有卓越的性能和成本效益。

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