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Acoustic emission detection with fiber optical sensors for dry cask storage health monitoring

机译:利用光纤传感器进行声发射检测,以监测干桶存储的健康状况

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The increasing number, size, and complexity of nuclear facilities deployed worldwide are increasing the need to maintain readiness and develop innovative sensing materials to monitor important to safety structures (ITS). In the past two decades, an extensive sensor technology development has been used for structural health monitoring (SHM). Technologies for the diagnosis and prognosis of a nuclear system, such as dry cask storage system (DCSS), can improve verification of the health of the structure that can eventually reduce the likelihood of inadvertently failure of a component. Fiber optical sensors have emerged as one of the major SHM technologies developed particularly for temperature and strain measurements. This paper presents the development of optical equipment that is suitable for ultrasonic guided wave detection for active SHM in the MHz range. An experimental study of using fiber Bragg grating (FBG) as acoustic emission (AE) sensors was performed on steel blocks. FBG have the advantage of being durable, lightweight, and easily embeddable into composite structures as well as being immune to electromagnetic interference and optically multiplexed. The temperature effect on the FBG sensors was also studied. A multi-channel FBG system was developed and compared with piezoelectric based AE system. The paper ends with conclusions and suggestions for further work.
机译:在全球范围内部署的核设施的数量,规模和复杂性日益增加,因此需要保持战备状态并开发创新的传感材料以监测对安全结构(ITS)至关重要的信息。在过去的二十年中,广泛的传感器技术开发已用于结构健康监测(SHM)。诸如干桶存储系统(DCSS)之类的核系统诊断和预后技术可以改善对结构健康状况的验证,从而最终减少部件意外失效的可能性。光纤传感器已经成为专门针对温度和应变测量而开发的主要SHM技术之一。本文介绍了适用于MHz范围内有源SHM的超声波导波检测的光学设备的发展。在钢块上进行了使用光纤布拉格光栅(FBG)作为声发射(AE)传感器的实验研究。 FBG的优点是耐用,轻巧,并且易于嵌入到复合结构中,并且不受电磁干扰和光学复用的影响。还研究了温度对FBG传感器的影响。开发了多通道FBG系统,并将其与基于压电的AE系统进行了比较。本文最后提出了结论和对下一步工作的建议。

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