基于分布式光纤传感技术的结构变形估计方法研究
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TH17 TB121

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国家重点研发计划(2018YFA0702800)、基础科研经费(DUT16ZD214,DUT19ZD101)、国家自然科学基金(11602048,51805068)项目资助


Research on structural deformation estimation based on distributed optical fiber sensing technology
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    摘要:

    悬臂板是广泛应用于工程实践的常见结构形式,在航空航天、轨道交通、土木工程等领域均有重要应用,其变形监测问 题一直是此类领域重要的研究内容之一。 本文将矩形弹性悬臂薄板纯弯曲的一般问题作为研究对象,讨论求解该问题的方法, 建立应变与位移的联系,并在线弹性小变形理论框架下,得到结构横向位移的有限差分表达式;采用具有高密度应变测量能力 的分布式光纤传感器获取表达式所需的应变输入量,并提出了一种变形测量数据的误差修正策略;在金属悬臂梁弯曲试验中采 用百分表进行对比,验证基于分布式光纤传感技术进行结构变形估计的技术可行性与测量的准确性。 结果表明,结构变形估计 值与百分表测量值的偏差最大为 2. 0 mm,占百分表示数的 9. 22% ,分布式光纤传感技术可以实现结构变形估计,具有潜在的应 用前景。

    Abstract:

    Cantilever plates are common structures, which have been widely utilized in engineering practice, including aerospace, rail transportation, civil engineering and other fields. The deformation estimation is always one of the important research contents. This paper aims to solve the problem of bending of rectangular elastic cantilever plates and proposes a method to solve it by establishing the relationship between strain and deformation. The finite difference expression of structural transverse deformation is achieved under the framework of linearly elastic small deflection theory. The distributed optical fiber sensor with the ability of high-density strain measuring is used to obtain the strain input required for the expression, and a method of error correction for deformation measurement is proposed. The technical feasibility and measurement accuracy of structural deformation estimation based on distributed optical fiber sensing technology are evaluated. Some dial indicators are used in the metal cantilever bending tests. Experimental results show that the maximum deviation between results from the estimation and the dial indicators is 2. 0 mm, which accounts 9. 22% of the indication from dial indicators. The distributed optical fiber sensing technology is competent to perform deformation estimation, which has the potential application prospect.

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单一男,马智锦,曾 旭,徐新生,武湛君.基于分布式光纤传感技术的结构变形估计方法研究[J].仪器仪表学报,2021,(4):1-9

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  • 在线发布日期: 2023-06-28
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