作者单位
摘要
1 中国石油化工集团公司胜利油田分公司,山东 东营 257000
2 齐鲁工业大学(山东省科学院)激光研究所,山东 济南 250014
研制了一种基于光纤布拉格光栅(FBG)和非本征法布里-珀罗干涉仪(EFPI)的高精度井下长期在线温度压力监测系统。该系统通过EFPI的腔长变化监测压力,通过FBG的波长变化监测温度,同时实现对压力的温度补偿。标定结果表明,该系统的压力测量范围为0.1~42 MPa,压力灵敏度为203.8 nm/MPa,精度为±0.05%F.S(F.S表示满量程),压力分辨率达到0.0007 MPa。将该系统在胜利油田桩西某生产井进行了工程示范,实时监测井下温度和压力5个月。结果表明,该系统能反映油井生产状态,实现重要参数的在线监测,对提高油气采收率具有重要指导意义。
光纤光学 光纤布拉格光栅 非本征法布里-珀罗干涉仪 压力 温度 在线监测 
激光与光电子学进展
2022, 59(17): 1706006
作者单位
摘要
齐鲁工业大学(山东省科学院) 山东省科学院激光研究所, 济南 250000
针对油气井下油气水三相流的持气率测量, 设计开发了一种高可靠性的光纤探针。探针敏感探头采用锥形蓝宝石结构, 蓝宝石敏感探头与过渡管, 以及过渡管与保护套管间均采用金基焊料焊接密封。对研制的光纤探针进行了可靠性实验和油气水三相流持气率测试, 结果表明, 该光纤探针可以承受高温(150℃)、高压(100MPa)环境, 具有较高可靠性。管柱内的油气水三相流呈段塞流型, 持气率为46%。该研究验证了光纤探针应用于油气井持气率测量的可行性, 为后续的工程应用推广提供了理论依据和实际指导。
光纤探针 持气率 三相流 油气井 optical fiber probe void fraction three-phase flow oil and gas wells 
半导体光电
2020, 41(5): 673
Author Affiliations
Abstract
Laser Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250103, China
A fiber Bragg grating (FBG) and Fabry–Perot (FP) cavity cascaded fiber sensing system was manufactured for temperature and pressure sensing. Temperature sensing as high as 175°C was performed by an FBG for the linear variation of an FBG wavelength with temperature. After the temperature was sensed, the demodulation system can find the original FP cavity length and its pressure and cavity length correlation coefficient; thus, the ambient pressure would be calculated. The sensing pressure can be as high as 100 MPa with a repeatability of 1/10,000 and high stability. This kind of fiber sensor has been used in the Shengli Oil Field.
060.2370 Fiber optics sensors 060.3735 Fiber Bragg gratings 050.2230 Fabry-Perot 
Chinese Optics Letters
2019, 17(4): 040603
Author Affiliations
Abstract
1 Shandong Key Laboratory of Optical Fiber Sensing Technologies, Laser Institute, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250014, China
2 School of Electrical Engineering and Telecommunications, The University of New South Wales, NSW 2052, Australia
3 College of Precision Instrument and Opto-Electronics Engineering and Key Laboratory of Opto-Electronics Information and Technical Science, Ministry of Education, Tianjin University, Tianjin 300072, China
We present a high-sensitivity fiber Bragg grating (FBG)-based microphone with a flat response and static pressure equalization. A very high dynamic sensitivity of the microphone is achieved by a pressure sensing structure based on a carbon fiber diaphragm. Static pressure equalization is realized by a balance structure with a capillary glass tube. The resonances of the sensor are suppressed by air damping structures, and a broadened flat response is achieved. An acoustic-solid interaction model was used to analyze the response characteristics of the microphone. An experimental prototype was produced and tested, and the results are well consistent with the design. The tested sensitivity was 10 dB re 1 pm/Pa from 10 Hz to 2.5 kHz with a fluctuation of less than ±1.5 dB. Combined with the phase-generated-carrier-based coherent detection scheme, the microphone can achieve a sound resolution of the milli-pascal level. The static pressure sensitivity is measured to be 0.27 pm/atm, which is 100 dB lower than the dynamic sensitivity.
060.2370 Fiber optics sensors 
Chinese Optics Letters
2019, 17(1): 010601
Author Affiliations
Abstract
Shandong Key Laboratory of Optical Fiber Sensing & Techonology, Laser Institute of Shandong Academy of Science,China, Jinan, 250014, China
A short cavity distributed feedback (DFB) fiber laser is used for low frequency acoustic signal detection. Three DFB fiber lasers with different central wavelengths are chained together to make three-element vector hydrophone with proper sensitivity enhancement design, which has extensive and significant applications to underwater acoustic monitoring for the national defense, oil, gas exploration, and so on. By wavelength-phase demodulation, the lasing wavelength changes under different frequency signals can be interpreted, and the sensitivity is tested about 33 dB re pm/g. The frequency response range is rather flat from 5 Hz to 300 Hz.sensitivity
Short cavity distributed feedback fiber laser vector hydrophone frequency response phase noise 
Photonic Sensors
2017, 7(4): 325
作者单位
摘要
山东省科学院激光研究所, 济南 250100
介绍了一种光纤光栅应变传感系统在船舶结构监测中的应用。首先设计了贴片式的光纤光栅应变传感器,采用无胶化封装,具有良好的线性和重复性。然后搭建了基于非平衡MZ干涉仪的PGC解调系统,实现了船体应变信号的高精度实时解调。最后介绍了传感器的施工工艺和流程,并对传感系统采集到的结构应变数据进行了分析。研究成果对光纤光栅应变传感系统在船舶结构监测中的推广应用具有工程指导意义。
光纤光栅 应变 船舶 结构监测 FBG strain ship structure monitoring 
半导体光电
2017, 38(2): 268
作者单位
摘要
山东省科学院激光研究所 济南研究中心,山东 济南 250014
针对高灵敏度的光纤布拉格光栅(FBG)振动传感器的抗冲击可靠性,设计了一种具有限振结构的双悬臂梁型FBG振动传感器,理论分析了结构参数与灵敏度和振动位移的关系,进行了结构优化,确定了限振幅度。制作了限振幅度约为90 μm的传感器样品,对传感器的加速度灵敏、频率响应、抗冲击性能进行了测试,结果表明,传感器的加速度灵敏度达到525 pm/g,谐振频率约为66 Hz,传感器经过50 g反复冲击,频响特性具有良好重复性,表明传感器具有较高的可靠性。
光纤传感器 光纤布拉格光栅 振动传感器 高灵敏 抗冲击 fiber optic sensor fiber Bragg grating vibration sensor high sensitivity shock resistance 
红外与激光工程
2016, 45(8): 0822002

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