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光纤传感器在纺织增强混凝土中的应用:智能结构健康监测综述。

Fiber Optic Sensors Embedded in Textile-Reinforced Concrete for Smart Structural Health Monitoring: A Review.

机构信息

School of Engineering and the Built Environment, Edinburgh Napier University, 10 Colinton Road, Edinburgh EH10 5DT, UK.

Hannover Centre for Optical Technologies, Leibniz University of Hannover, 30167 Hannover, Germany.

出版信息

Sensors (Basel). 2021 Jul 21;21(15):4948. doi: 10.3390/s21154948.

Abstract

The last decade has seen rapid developments in the areas of carbon fiber technology, additive manufacturing technology, sensor engineering, i.e., wearables, and new structural reinforcement techniques. These developments, although from different areas, have collectively paved way for concrete structures with non-corrosive reinforcement and in-built sensors. Therefore, the purpose of this effort is to bridge the gap between civil engineering and sensor engineering communities through an overview on the up-to-date technological advances in both sectors, with a special focus on textile reinforced concrete embedded with fiber optic sensors. The introduction section highlights the importance of reducing the carbon footprint resulting from the building industry and how this could be effectively achieved by the use of state-of-the-art reinforcement techniques. Added to these benefits would be the implementations on infrastructure monitoring for the safe operation of structures through their entire lifespan by utilizing sensors, specifically, fiber optic sensors. The paper presents an extensive description on fiber optic sensor engineering that enables the incorporation of sensors into the reinforcement mechanism of a structure at its manufacturing stage, enabling effective monitoring and a wider range of capabilities when compared to conventional means of structural health monitoring. In future, these developments, when combined with artificial intelligence concepts, will lead to distributed sensor networks for smart monitoring applications, particularly enabling such distributed networks to be implemented/embedded at their manufacturing stage.

摘要

过去十年,碳纤维技术、增材制造技术、传感器工程(即可穿戴设备)和新型结构加固技术领域取得了快速发展。这些发展虽然来自不同领域,但共同为具有非腐蚀性加固和内置传感器的混凝土结构铺平了道路。因此,本研究旨在通过概述两个领域的最新技术进展,在土木工程和传感器工程领域之间架起桥梁,特别关注嵌入光纤传感器的纤维增强混凝土。引言部分强调了减少建筑行业碳足迹的重要性,以及如何通过使用最先进的加固技术来有效实现这一目标。除了这些好处之外,还可以通过利用传感器(特别是光纤传感器)对基础设施进行监测,在结构的整个生命周期内实现安全运行。本文对光纤传感器工程进行了广泛的描述,使传感器能够在结构的制造阶段融入到加固机制中,与传统的结构健康监测方法相比,能够实现更有效的监测和更广泛的功能。在未来,这些发展与人工智能概念相结合,将为智能监测应用带来分布式传感器网络,特别是能够在制造阶段实现这些分布式网络的实施/嵌入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31c8/8347898/289dc36a2427/sensors-21-04948-g001.jpg

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