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CAREER: Engineered Spatially Periodic Structure Design Integrated with Damage Detection Philosophy

CAREER: Engineered Spatially Periodic Structure Design Integrated with Damage Detection Philosophy
职业:与损伤检测原理相结合的工程空间周期性结构设计
批准号:
1552375
负责人:
Didem Ozevin
金额:
$50.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2016
资助国家:
美国
项目状态:
已结题
起止时间:
2016-06-01 至 2021-05-31

项目摘要

项目成果

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中文摘要
翻译
该学院早期职业发展(CAREER)奖的研究目标是使土木工程师能够设计桥梁和其他关键结构,以便结构自然地提供有关其结构状态的信号,只需安装最少的传感器。这将导致更安全和更有弹性的民用基础设施,因为新建筑或改造将采用这些设计。这一点很重要,因为关键结构在没有足够警告的情况下发生了故障,尽管这些结构中的裂缝已经用最新的现代技术进行了检查和监测。这项研究有可能通过在最早阶段检测损伤来改变结构工程领域。 该研究的教育影响将包括修改现有的钢和预应力混凝土设计课程,向本科生介绍损伤检测概念,开发荣誉学院研究项目,让高中和本科生参与研究,并在女性土木工程学生中开发辅导计划。在本研究中,一个基于声学的损伤检测方法将被引入到设计阶段,通过添加空间周期子系统的结构元素。现有的结构表现出一些局部的周期性,如穿孔梁,等间距螺栓在钢连接的间距是基于应力分布和间距要求。可以调整结构周期性以使设计表现为声学超材料,其能够阻挡、重定向和加强由部署的基础设施中新形成的裂纹表面释放的传播弹性波。声学超材料介质中的局部共振影响弹性波谱,使得如果频率福尔斯落在这些阻带内,则某些波频率不能传播到介质。一旦损伤改变了弹性波的周期性,弹性波的频谱就会发生变化,这时结构的损伤就可以很容易地作为正常共振频率的扰动来检测。高度窄带和敏感的微机械换能器将被调谐到周期性子系统的阻带,并被战略性地定位,使得一个传感器将足以检测局部损伤。结构设计和周期性行为的组合响应将通过分析和数值模型进行测试,并在实验室规模的结构测试中进行验证。
英文摘要
The research objective of this Faculty Early Career Development (CAREER) award is to enable civil engineers to design bridges and other critical structures so that the structure will naturally provide signals about its structural state with only a minimum installation of sensors. This will result in a safer and more resilient civil infrastructure as new construction or retrofitting incorporates these designs. This is significant because critical structures have been failing without sufficient warning despite the fact that the cracks in these structures were already being inspected and monitored with the latest modern techniques. The research has the potential to transform the field of structural engineering by detecting damage at the earliest stage. The educational impact of the research will include modifying existing steel and prestressed concrete design courses to introduce damage detection concepts to undergraduate students, developing Honors College research projects, involving high school and undergraduate students into research, and developing mentoring program within female civil engineering students. In this research, an acoustic based damage detection method will be introduced into the design stage by adding spatially periodic subsystems into structural elements. Existing structures exhibit some localized periodicity such as perforated beams, and equally spaced bolts in steel connections where spacing is based on stress distribution and spacing requirements. The structural periodicity can be tuned to make the design behave as an acoustic metamaterial, which can be able to block, redirect, and strengthen propagating elastic waves released by newly formed crack surfaces in the deployed infrastructure. Local resonance in an acoustic metamaterial medium affects the elastic wave spectrum such that certain wave frequencies cannot propagate to the medium if the frequency falls within these stop bands. Once the periodicity is modified by damage, the elastic wave spectrum will change, and then structural damage can easily be detected as a disturbance of the normal resonant frequencies. Highly narrowband and sensitive micro-mechanical transducers will be tuned to the stop band of the periodic subsystem and positioned strategically such that one sensor will be sufficient to detect the localized damage. The combined response of structural design and periodic behavior will be tested with analytical and numerical models and validated on laboratory scale structural tests.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
DOI: 10.1007/s13349-018-0291-6
发表时间: 2018-06
期刊: Journal of Civil Structural Health Monitoring
影响因子: 4.4
作者: [M. Kabir;A. Mostavi;D. Ozevin]
通讯作者: M. Kabir;A. Mostavi;D. Ozevin
DOI: 10.1016/j.sna.2018.05.044
发表时间: 2018-08-15
期刊: SENSORS AND ACTUATORS A-PHYSICAL
影响因子: 4.6
作者: [Kabir, Minoo, Kazari, Hanie, Ozevin, Didem]
通讯作者: Ozevin, Didem
DOI: 10.1063/1.5007771
发表时间: 2017-11-13
期刊: APPLIED PHYSICS LETTERS
影响因子: 4
作者: [Mostavi, Amir, Kabir, Minoo, Ozevin, Didem]
通讯作者: Ozevin, Didem
PFI-TT: Multi-Frequency Acoustic Device for Rapid Infrastructure Damage Diagnostics
  • 批准号:
    2016444
  • 项目类别:
    Standard Grant
  • 资助金额:
    $25.0万
  • 财政年份:
    2020
  • 负责人:
    Didem Ozevin
  • 依托单位:
Collaborative Research: Conformal Gradient-Index Lenses for Ultrasonic Wave Amplification and Improved Diagnostics
  • 批准号:
    1914663
  • 项目类别:
    Standard Grant
  • 资助金额:
    $33.86万
  • 财政年份:
    2019
  • 负责人:
    Didem Ozevin
  • 依托单位:
Multi-Dimensional Stress Quantification at Complex Loaded Structural Components with Nonlinear Rayleigh Waves
  • 批准号:
    1335526
  • 项目类别:
    Standard Grant
  • 资助金额:
    $26.64万
  • 财政年份:
    2013
  • 负责人:
    Didem Ozevin
  • 依托单位:
BRIGE: Preventing Imminent Failures of Pipeline Networks via Real Time Damage Detection and Location System
  • 批准号:
    1125114
  • 项目类别:
    Standard Grant
  • 资助金额:
    $17.36万
  • 财政年份:
    2011
  • 负责人:
    Didem Ozevin
  • 依托单位:
海外基金