Research of fiber optical Bragg grating flowmeter based on vortex occurred body

Q4 Physics and Astronomy 光学技术 Pub Date : 2014-01-01 DOI:10.3788/GXJS20144001.0079
仝克帅 Tong Keshuai, 薛俊华 Xue Junfei, 杨洪磊 Yang Honglei, 闫思安 Yan Si-an, 李川 Li Chuan, 李英娜 Li Yingna, 赵振刚 Zhao Zhengang, 熊新 Xiong Xin
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引用次数: 1

Abstract

By combining the fiber grating sensing technique with vortex separation principle,a model of FBG vortex flow meter is researched based on triangular columnar.A pilot pressure cavity is installed in the central of triangular prism spiral bluff body,inside the cavity.Equal strength cantilever beam is set which is pasted Bragg grating.When the fluid passes through both sides of the body,alternate vortex is separated.Pulsating fluid pressure is produced inside the pilot pressure cavity.Vibration of equal strength cantilever beam is produced which vibration frequency is proportional to the frequency of vortex separation.The fluid flow is measured by detecting the vibration frequency.Experiment results show that the linearity of the flow meter is 4.38% FS,instrument coefficient is K=3.659,and the fiber Bragg grating wavelength shift frequency respond to flow rate is 1.182Hz/(m3/h).
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基于涡发生体的光纤光栅流量计研究
将光纤光栅传感技术与涡流分离原理相结合,研究了一种基于三角柱状结构的光纤光栅涡流流量计模型。在三角棱柱螺旋钝体的中心,在腔体内部安装先导压力腔。设置了粘贴布拉格光栅的等强度悬臂梁。当流体通过机体两侧时,交替涡被分离。先导压力腔内产生脉动流体压力。等强度悬臂梁产生振动,振动频率与旋流分离频率成正比。通过检测振动频率来测量流体的流量。实验结果表明,该流量计的线性度为4.38% FS,仪表系数K=3.659,光纤布拉格光栅波长移频对流量的响应为1.182Hz/(m3/h)。
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来源期刊
光学技术
光学技术 Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
0.60
自引率
0.00%
发文量
6699
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