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1.
孙丽  任学玲  周鹏  谷凡 《地震学刊》2010,(Z1):231-234
由于光纤、保护层和粘贴层以及基体材料的物理力学性能不同,使得光纤光栅传感器的测量应变不等于基体材料的实际应变。本文以埋入式非轴向力作用下的光纤光栅作为研究对象,采用弹性理论分析,利用剪滞法,推导了光纤光栅传感器在非轴向力和温度共同影响下的测量应变与基体结构实际应变之间的应变传递计算公式,并采用有限元方法对其分析,讨论了温度变化对非轴向力作用下的光纤光栅应变传递的影响,为埋入式光纤光栅传感器在非轴向力和温度影响下的应变测量提供理论依据。  相似文献   

2.
为了验证通过光纤光栅应变箍传感器对管道进行腐蚀监测的方法的可行性,在均匀腐蚀管道模型和局部腐蚀管道模型上分别进行了试验,试验所使用的应变箍传感器能够测量管道截面的环向应变,通过环向应变能够反应管道壁厚的变化情况。试验表明,这种光纤光栅应变箍传感器性能优良,可以应用于测量腐蚀引起的环向应变,在管道的腐蚀监测中具有很好的应用前景。  相似文献   

3.
光纤健康监测方法在土木工程中的研究与应用进展   总被引:25,自引:0,他引:25  
在土木工程领域,光纤智能健康监测方法是对建筑物或构筑物的健康状况进行检测的一种新方法。本文首先论述了光纤智能健康监测系统的构成,然后对国内外光纤健康监测系统在土木结构中的研究与应用进行了回顾,介绍了光纤传感器的种类、原理、特点和当前应用的状况,重点介绍了光纤位移传感器和布拉格光栅(Bragg grating)应变传感器,最后展望了光纤智能健康监测方法在土木结构中的应用前景。  相似文献   

4.
赵雪峰  孔祥龙  李乐 《地震学刊》2010,(Z1):243-246
设计了一种新型的光纤光栅倾角传感器。本设计将简单可靠的金属悬臂梁结构与高灵敏度的光纤布拉格光栅相结合,考虑了光纤布拉格光栅的温度补偿及灵敏度,从而保证其整体耐久性较好、测量精度较高。将该倾角传感器与光纤光栅解调仪组成监测系统,同时利用无线电容式倾角仪对其灵敏度进行标定,取得了良好的线性数据,证明该倾角传感器性能良好。  相似文献   

5.
针对传统测量方法在古建木梁实际变形监测中存在的不足,本文基于光纤布拉格光栅(FBG)应变测量技术结合构造函数法提出一种古建筑木梁挠度变形监测的新方法。该方法考虑了木梁两端榫卯连接半刚性支座、支座沉降和原木梁截面不规则三个因素,推导了应变测量结合构造函数法的古建木梁挠度计算公式;建立有限元仿真模型,得到所提方法在木梁监测中的最优传感器布设数量,并探讨了在实际工程中的适用范围;通过对木构架梁进行了静力加载试验来验证该方法的有效性,并分析支座沉降与截面不规则对挠度变形的影响程度。研究结果表明,本文所提的方法适用于半刚性支座的木梁,能够消除支座沉降与截面不规则的影响;该方法适合用于跨高比大于20的在役古建筑木梁挠度监测,仅需在5个位置布设FBG应变传感器即可满足精度的要求;支座沉降相对于截面不规则而言,其对挠度变形影响较大,且影响程度与加载模式无关。  相似文献   

6.
为了研究混凝土重力坝在地震动荷载作用下的潜在失效模式,以金安桥碾压混凝土重力坝5号非溢流坝段为例,运用粘弹性边界法和流固耦合法建立了反映重力坝在地震动作用下动力响应特征的坝体-地基-库水抗震分析模型。基于增量动力分析(IDA)法:绘制了以相对位移转角为x轴(损伤指标,DM)和峰值地面加速度为y轴(强度指标,IM)的IDA曲线簇;分析了金安桥大坝在极端荷载作用下的潜在失效模式和其在不同峰值地面加速度下重力坝的损伤破坏过程。结果表明:金安桥大坝在地震动荷载作用下,可能发生功能失效的地方多出现在坝体折坡处、碾压分区交界处、坝踵与坝基交界处、廊道顶等应力集中处。因此,加强对这些区域的抗震防护有利于提高大坝整体的抗震水平。  相似文献   

7.
光纤光栅传感器用于高精度应变测量研究   总被引:5,自引:3,他引:2       下载免费PDF全文
利用光纤光栅对温度和应力应变的敏感效应制成的传感器可以将温度、压力、应力、应变等物理量转换成光学量(波长),由此所构成的测量系统具有极高的稳定性,不存在零点漂移,抗干扰能力强等一系列优点.不足的是光纤光栅传感器本身灵敏度不够高,在许多场合其测量分辨率不能满足要求,特别是作为地震前兆观测的主要测量手段——应力应变测量精度要求较高.本文提出一种技术思路,即通过增敏装置来提高系统测量分辨率,理论上可以将应力应变的测量分辨率提高到10-9至10-10量级,可以满足高精度应力应变测量的指标要求.  相似文献   

8.
光纤光栅作为新型传感元件,因为其具有抗电磁干扰和分布式测量等电学传感器无法比拟的优点,正在被广泛的研究.为了实现替代现有的高精度电学温度传感器的目的,可以尝试利用光纤光栅对温度和应变共同敏感的特性,制作高灵敏度光纤光栅温度传感器.尽管已经出现了对高灵敏光纤光栅温度传感器的报到,但是,很少有针对高灵敏光纤光栅温度传感器稳定性的研究.在实验室环境下,我们对高灵敏光纤光栅温度传感器的稳定性进行了测试.我们制作了一款高灵敏光纤光栅温度传感器,将其与普通光纤光栅温度传感器和电学石英温度传感器共同置于盛满水的不锈钢容器中,观测室温变化.通过对它们两周的观测结果进行对比,我们发现:尽管与普通光纤光栅温度传感器的结果相比,高灵敏光纤光栅温度传感器的观测结果与石英温度传感器的结果更一致;但是,高灵敏光纤光栅温度传感器出现了微小漂移.因为该漂移出现在进一步拉伸光纤光栅的过程中,所以它很可能是由于光纤光栅的固定点出现了微小滑动造成的.这为光纤光栅在高精度温度测量领域的应用作了有益尝试.  相似文献   

9.
利用光纤光栅对温度和应变同时敏感的特性,我们设计制作了一款满足地震前兆观测中地温观测精度要求的双金属光纤光栅温度传感器,并首次对温度增敏后的光纤光栅传感器样品进行了精度分析,得到该传感器的精度达到士0.05℃,获得了现今光纤光栅温度传感器最高的分辨率0.0014℃/pm.该传感器的成功研制从实验上证明了光纤光栅用于地震前兆观测的可行性,为地震前兆观测的光学化打下了坚实的基础.  相似文献   

10.
正光纤应变仪是利用特种光纤光栅器件或者光纤干涉技术进行高精度应变传感的仪器。常见特种光纤光栅有相移光栅和光纤光栅谐振腔,线宽均较窄,可达到0.01 pm量级甚至更窄,结合高精度解调方法,可显著提高系统的应变测量精度。传统的光纤光栅准静态解调,主要技术方案有光谱分析法、窄带滤波器法、匹配光栅法等,可满足大多数工程应用需求。但高精度地应变传感需求更高,  相似文献   

11.
论证了广大坝抗震安全性研究的实践与发展现状。目前大坝在地震作用下的应力与变形分析方法主要有拟静力法和动力响应分析法,并依据大坝混凝土的抗拉强度判断大坝的安全性;各国规范体现的抗震设防弹念和大坝材料的容许应力差别很大。坝址河谷不同高程处地震动状态不尽相同、河谷两恻同一高程处地震动也不一样。混凝土材料的强度与加载速度、应变速率有关;地震时大坝不同部位的应变速率不相同、同一部位的应变速率也随时间变化;混凝土的动态强度既与应变速率有关。也与应变历史等其它因素有关。大坝河谷地震动的输入机理和模型研究、混凝土的动态强度的变化规律探索、大坝抗震安全性评价准则的完善与创新等将有待深入。通过以上内容针对性分析,提出了大坝抗震评价的一些合理建议、方法以及进一步的研究方向。  相似文献   

12.
A novel smart control system based on genetic algorithms (GAs) is proposed in this paper. The system is comprised of three parts: the fiber Bragg grating (FBG) sensor‐based sensing network for structural health monitoring, the GA‐based location optimizer for sensor arrangement, and the GA‐based controller for vibration mitigation under external excitation. To evaluate the performance of the proposed system, an eight‐story steel structure was designed specifically to represent a structure with large degrees of freedom. In total 16 FBG sensors were deployed on the structure to implement the concept of a reliable sensing network, and to allow the structure to be monitored precisely under any loading. The advantage of applying a large amount of information from the sensing system is proven theoretically by the GA‐based location optimizer. This result greatly supports the recent tendency of distributing sensors around the structure. Two intuitive GA‐based controllers are then proposed and demonstrated numerically. It is shown that the structure can be controlled more effectively by the proposed GA‐strain controller than by the GA‐acceleration controller, which represents the traditional control method. A shaking table test was carried out to examine the entire system. Experimental verification has demonstrated the feasibility of using this system in practice. Copyright © 2008 John Wiley & Sons, Ltd.  相似文献   

13.
黄土地区地铁车站数值模型及测试位置研究   总被引:4,自引:4,他引:0  
介绍了黄土地区地铁车站振动台模型试验的测试设备与数据采集系统;基于ABAQUS有限元分析软件,采用有限元-无限元耦合的建模方法,对地震作用下黄土地区地铁车站的加速度反应、位移反应、应变反应,以及土-结构相互作用的接触土压力进行了研究。结果表明,结构构件交叉部位的应变反应及接触土压力较大。最后,根据地铁车站地震反应特点,研究了黄土地区地铁车站振动台模型试验中传感器的布置原则和布置方案,为试验获得可靠数据提供了重要保证。同时,本文得到的黄土地区地铁车站地震反应特点和规律,可为黄土介质模型试验及深度数值模型分析提供参考。  相似文献   

14.
This study improves a NEURO‐FBG active control system to mature the concept of a smart structure. Originally, a system similar to the human brain is created from FBG sensors and neural networks. The system comprises three parts, namely, a structural condition surveillance system, a NEURO‐FBG converter, and a NEURO‐FBG controller. To solve the inherent time‐consuming and reliability problem of the NEURO‐FBG converter, a new technology is first proposed, and the relationship between inter‐story drift and strain data is established. Global indices such as displacement and velocity of the structure are then reconstructed for searching the optimal control force of the actuator. Meanwhile, the soundness of a building with hydraulic actuators is also an important issue to be solved. To make the building sound, the characteristics of earthquakes are considered for enhancing the performance of the NEURO‐FBG controller. Theoretical analysis shows satisfactory improvement to the control efficiency of both displacement and acceleration. To verify the enhanced system, a series of shaking table tests was conducted. Experimental results demonstrated that the new NEURO‐FBG system can effectively manage the structure; and the controller, taking into consideration the ground acceleration effect, is more reliable and robust for practical application than a conventional controller. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

15.
The concept of distributed strain‐sensing techniques has been proposed in our recent research, which was dedicated to utilizing the strain distributions throughout the full or partial areas of structures to detect arbitrary and unforeseen damage. An algorithm not requiring a detailed analytical model is presented for damage locating in flexural structures through the direct use of dynamic responses recorded by distributed long‐gauge strain sensors. The modal macro‐strain vector (MMSV), which has been proven to have a mapping relation with displacement mode shape, can be extracted directly from macro‐strain time‐series data, from which a damage evaluating index can be derived and used as an indicator for locating damage. Numerical examples are simulated to verify the sensitivity and effectiveness of the index in different cases. Furthermore, experimental investigations on a cantilevered beam with various long‐gauge fibre optic sensors placements are carried out to examine the feasibility and applicability of the proposed method. Copyright © 2007 John Wiley & Sons, Ltd.  相似文献   

16.
The front part of the flow is very important and complex in the case of debris flow where there is an accumulation of large boulders. It is important to control or dampen the energy of the frontal part of a debris flow for the safety of the downstream area because the impact pressure of debris flow is much greater than that of clear fluid. The main objective of this study is to analyze the hydraulic characteristics of the proposed dam (i.e. closed-type dam with flap). The vertical pressure distribution of this type is compared with conventional dam types. In the experiments, the total pressure associated with major debris flows was recorded in real time by a system consisting of four dynamic pressure sensors installed on different types of dam. The results from experimental data clearly show that the dam with the flap has advantages of capturing the debris flow with large boulders and controls the total pressure by flow circulation due to presence of the flap structure compared to a closed-type dam without flap. Further-more, the empirical coefficients of hydrodynamic and solid collision models were proposed and com-pared with available coefficients.  相似文献   

17.
A new plastic-damage constitutive model for cyclic loading of concrete has been developed for the earthquake analysis of concrete dams. The rate-independent model consistently includes the effects of strain softening, represented by separate damage variables for tension and compression. A simple scalar degradation model simulates the effects of damage on the elastic stiffness and the recovery of stiffness after cracks close. To simulate large crack opening displacements, the evolution of inelastic strain is stopped beyond a critical value for the tensile damage variable. Subsequent deformation can be recovered upon crack closing. The rate-independent plastic-damage model forms the backbone model for a rate-dependent viscoplastic extension. The rate-dependent regularization is necessary to obtain a unique and mesh objective numerical solution. Damping is represented as a linear viscoelastic behaviour proportional to the elastic stiffness including the degradation damage. The plastic-damage constitutive model is used to evaluate the response of Koyna dam in the 1967 Koyna earthquake. The analysis shows two localized cracks forming and then joining at the change in geometry of the upper part of the dam. The upper portion of the dam vibrates essentially as rigid-body rocking motion after the upper cracks form, but the dam remains stable. The vertical component of ground motion influences the post-cracking response. © 1998 John Wiley & Sons, Ltd.  相似文献   

18.
In this study, two different earthquake input models are introduced, i.e. massless foundation model and viscous-spring boundary input model considering radiation damping. Linear elastic and nonlinear contraction joint opening analyses of the 210 m high Dagangshan arch dam under construction in China are performed using the two different earthquake input models. First, the responses of the three-dimensional (3-D) canyon without the dam are analyzed, respectively, with massless-truncated foundation and with viscous-spring boundary; second, linear and nonlinear analyses of the dam–foundation system are performed and compared by using the two input models. Hydrodynamic effects are considered using finite element discretization for incompressible reservoir fluid. It is concluded that stresses and displacements and contraction joint opening in the dam are significantly reduced both in linear and nonlinear analyses when using viscous-spring boundary model. Interestingly, in the case of linear analysis of the Dagangshan, the massless foundation input model with a relatively higher damping ratio of 10% leads to a comparable response of the dam to that using viscous-spring boundary model. In addition, the maximum tensile stresses from nonlinear analysis are 10–25% larger than that of the corresponding linear cases due to a partial release of the arch action.  相似文献   

19.
Forced vibration field tests and finite-element studies were conducted on the Shahid Rajaee concrete arch dam in Northern Iran to determine the dynamic properties of the dam–reservoir–foundation system. The first forced vibration tests on the dam were performed with two different types of exciter units, with a limited maximum force, bolted on the dam crest for alternative in-phase and out-of-phase sequencing. Because of an insufficient number of recording sensors, two arrangements of sensors were used to cover sufficient points on the dam crest and one gallery during tests. Two kinds of vibration tests, on–off and frequency sweeping, were carried out on the dam. The primary natural frequencies of the coupled system for both symmetric and anti-symmetric vibration modes were approximated during on–off tests in two types of sequencing of exciters, in phase and out-of-phase, with a maximum frequency of 14 Hz. The principal forced vibration tests were performed at precise resonant frequencies based on the results of the on–off tests in which sweeping around the approximated frequencies at 0.1 Hz increments was performed. Baseline correction and suitable bandpass filtering were applied to the test records and then signal processing was carried out to compute the auto power, cross power and coherence spectra. Nine middle modes of vibration of the coupled system and corresponding damping ratios were estimated. The empirical results are compared against the results from calibrated finite-element modeling of the system using former ambient vibration tests, considering the dam–reservoir–foundation interaction effects. Good agreement is obtained between experimental and numerical results for eight middle modes of the dam–reservoir–foundation system.  相似文献   

20.
In the Erlenbach stream, a pre‐alpine steep channel in Switzerland, sediment transport has been monitored for more than 25 years. Near the confluence with the main valley river, stream flow is monitored and sediment is collected in a retention basin with a capacity of about 2000 m3. The basin is surveyed at regular intervals and after large flood events. In addition, sediment transport has been continuously monitored with piezoelectric bedload impact and geophone sensors since 1986. In 2008–2009, the measuring system in the Erlenbach stream was enhanced by installing an automatic system to obtain bedload samples. Movable metal baskets are mounted on a rail at the downstream wall of the large check dam above the retention basin, and they can be moved automatically into the flow to take bedload transport samples. The wire mesh of the baskets has a spacing of 10 mm to sample all sediment particles coarser than this size (which is about the limiting grain size detected by the geophones). The upgraded measuring system permits to obtain bedload samples over short sampling periods and to measure the grain size distribution of the transported material and its variation over time and with discharge. The analysis of calibration relationships for the geophone measuring system confirms findings from very similar measurements which were performed until 1999 with piezoelectric bedload impact sensors; there is a linear relationship between impulse counts and bedload mass passing over the sensors. Findings from flume experiments are used to discuss the most important factors which affect the calibration of the geophone signal. The bedload transport rates as measured by the moving baskets are among the highest measured in natural streams, with values of the order of several kilograms per meter per second. Copyright © 2012 John Wiley & Sons, Ltd.  相似文献   

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