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Theoretical modeling of signal loss versus crack opening for a novel crack sensor

机译:新型裂缝传感器的信号损失与裂缝开度的理论模型

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The degradation of concrete structures is always accompanied by the formation of cracks. Crack monitoring is hence useful in assessing the "health condition" of the structure. In our previous investigation on an optical-fiber crack sensor, we have successfully demonstrated the possibility of crack detection and monitoring without requiring prior knowledge of crack locations. Also, a single fiber can be employed to monitor a number of cracks. In practical applications, the signal loss versus crack opening relationship of the sensor needs to be properly "designed" to satisfy performance requirements on sensitivity to small cracks and/or the total number of detectable cracks (which is limited by the maximum loss at each crack). In this paper, a theoretical model for the signal loss versus crack opening relationship is developed through a combination of mechanical and optical analyses. Using concrete beams with embedded sensors, crack monitoring experiments are conducted. Test results are found to be in reasonably good agreement with predictions from the model. With the verified model, simulations are carried out to study the effect of various parameters on sensor performance. The potential application of the theoretical model to generate sensor design guidelines is hence demonstrated.
机译:混凝土结构的退化总是伴随着裂缝的形成。因此,裂缝监测对于评估结构的“健康状况”很有用。在我们先前对光纤裂缝传感器的研究中,我们已经成功地证明了裂缝检测和监控的可能性,而无需事先了解裂缝的位置。同样,可以使用单根光纤来监视许多裂缝。在实际应用中,需要适当地“设计”传感器的信号损失与裂缝开度的关系,以满足对小裂缝敏感性和/或可检测裂缝总数的性能要求(受每个裂缝的最大损失限制) )。在本文中,通过机械和光学分析相结合,建立了信号损失与裂纹开度关系的理论模型。使用带有嵌入式传感器的混凝土梁,进行裂缝监测实验。发现测试结果与模型的预测相当合理地吻合。通过验证的模型,可以进行仿真来研究各种参数对传感器性能的影响。因此证明了理论模型在生成传感器设计指南中的潜在应用。

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