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Strain transfer theory of industrialized optical fiber-based sensors in civil engineering: A review on measurement accuracy, design and calibration

机译:土木工程工业化光纤传感器应变转移理论:测量精度,设计和校准综述

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摘要

Optical fiber sensors are the most promising technique in monitoring physical and chemical variables of civil structures. For the brittle material characteristics, a bare sensing fiber is prone to breakage under the shear or torsional action existed in the construction and operation. To guarantee the survival and long-term service of the sensors, the packaging measure is particularly significant. This treatment generates an intermedium layer between the sensing fiber and the monitored structure, which leads to the strain of the host material not entirely transferred to the sensing fiber for a portion of strain loss in the transferring path. To correct the error and improve the measurement accuracy, strain transfer theory is developed to establish the quantitative strain relationship between the sensing fiber and the host material. A state-of-the-art review on strain transfer theory of optical fiber based sensors developed for civil structures is addressed. It aims to demonstrate the advance, the application and the challenge of strain transfer theory and provide scientific guidance for the better understanding of the multi-layered sensing model and the theoretical instruction for the optimum design, calibration and measurement accuracy enhancement of optical fiber sensors. (C) 2018 Elsevier B.V. All rights reserved.
机译:光纤传感器是监测民用结构的物理和化学变量最有希望的技术。对于脆性材料特性,裸露的传感纤维在构造和操作中存在的剪切或扭转动作下容易出现破损。为了保证传感器的生存和长期服务,包装措施尤为显着。该处理产生感测纤维和监测结构之间的中间层,这导致未完全转移到传感纤维的主体材料的应变,以在转移路径中的一部分应变损失。为了纠正误差并提高测量精度,开发应变转移理论以建立感测光纤和主体材料之间的定量应变关系。解决了对民用结构开发的光纤基于传感器的应变转移理论的最先进的综述。它旨在展示应变转移理论的推进,应用和挑战,为更好地理解多层传感模型和光纤传感器的最佳设计,校准和测量精度提高的理论教学提供科学指导。 (c)2018年elestvier b.v.保留所有权利。

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