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Structural health monitoring - What is the prescription?

机译:结构健康监测-处方是什么?

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Structural health monitoring (SHM) systems can prevent structural failure of safety-critical structures such as aircraft, bridges. nuclear reactors and dams, which cannot be allowed to fail. An SHM system uses the techniques of non-destructive inspection (NDI) to provide continuous (or on-demand) information about the state of a structure, so that an assessment of the structural integrity can be made at any time, and timely remedial actions may be taken as necessary. A large number of sensors forms the front end of an SHM system to provide information on the condition of the structure. The information from the sensors is incorporated into structural analyses and failure models to assess the state of the structure and to predict the remaining lifetime. Thus, the underlying concept is based on detecting and characterizing damage and assessing it in terms of failure mechanics and damage growth laws. Materials engineering and applied mechanics play dominant roles in both the diagnostic and prognostic components of SHM. A probabilistic approach is essential, as will be shown by an example of the growth and detection, or lack thereof, of surface-breaking cracks. The probabilistic approach also plays a key role in the determination of inspection schedules.
机译:结构健康监测(SHM)系统可以防止关键安全结构(例如飞机,桥梁)的结构故障。不能让其失效的核反应堆和水坝。 SHM系统使用非破坏性检查(NDI)技术来提供有关结构状态的连续(或按需)信息,以便可以随时评估结构完整性并及时采取补救措施可能会视需要采取。大量传感器构成SHM系统的前端,以提供有关结构状况的信息。来自传感器的信息被整合到结构分析和失效模型中,以评估结构的状态并预测剩余寿命。因此,基本概念基于检测和表征损坏并根据故障机制和损坏增长定律对其进行评估。材料工程和应用力学在SHM的诊断和预后方面均起着主导作用。概率方法是必不可少的,这将通过表面裂纹的增长和发现(或缺乏发现)的示例来说明。概率方法在确定检查计划中也起着关键作用。

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