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Fiber bragg grating osmometer

A technology of optical fiber grating and piezometer, which is applied in the application of optical methods for fluid pressure measurement, optical device transmission of sensing components, and elastic deformation gauge fluid pressure measurement, etc., which can solve the problem of complex design principles and manufacturing processes Small size, poor repeatability of elastic materials, etc., to achieve the effect of improving measurement accuracy and reliability, good waterproof performance, and good waterproof performance

Inactive Publication Date: 2011-09-14
SHANDONG UNIV
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] Many research institutions have started research on optical fiber osmotic pressure sensors. Wu Yonghong et al. designed a dual-fiber reflective hydraulic osmotic pressure sensor with high measurement accuracy, but the design principle and manufacturing process are very complicated; Tong Guoguo et al. invented the double diaphragm box reflective sensor. The pressure sensor has a simple structure but a small range; Xia Yuanyou et al. designed a fiber grating osmotic pressure sensor based on polyurethane elastic material, which is used in civil engineering such as highway soft foundations, but the repeatability of the elastic material is poor

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Embodiment Construction

[0021] Below in conjunction with accompanying drawing and embodiment the present invention will be further described:

[0022] A fiber grating piezometer, such as figure 1 As shown, it includes a casing 1, a pressure rod 3, a grating 4, and a transmission fiber 8, wherein the casing 1 is provided with a pressure inlet 5 and an optical fiber lead hole 6, and a filter 7 is provided at the pressure inlet 5, which can effectively prevent mud The sand enters the piezometer; the shell 1 is composed of left, middle and right parts, the left and right parts are connected with the middle part by threads, and the diaphragm 2 is welded on both sides of the middle part, and the diaphragm 2 can directly feel the pressure inlet The pressure at 5 places; both ends of the pressure rod 3 are bonded to the center of the diaphragm 2 with high-strength adhesive, the grating 4 is embedded in the pressure rod 3, and the grating 4 is distributed along the axis of the pressure rod 3. By detecting the...

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Abstract

The invention discloses a fiber bragg grating osmometer which comprises a shell, a pressure bar, grating and a transmission optical fiber, wherein the shell is provided with a pressure inlet hole and an optical fiber lead hole, and the pressure inlet hole is provided with a filter screen; the shell is provided with a membrane which can directly sense the pressure at the pressure inlet hole; the two ends of the pressure bar are connected with the membrane, the grating is buried inside the pressure bar, and the transmission optical fiber is led out through the optical fiber lead hole. When in use, pore water enters into the osmometer through the pressure inlet hole and acts on the membrane to lead the membrane have deflection deformation; meanwhile, the pore water is transformed into concentrated force and acts on the pressure bar, and external force is applied on the pressure bar to lead the pressure bar to stretch; when the grating is under the pressure, the central wavelength is changed. At this time, a fiber bragg grating demodulation device is used for detecting the central wavelength of the grating, and software can be used for acquiring and storing data, so that osmotic pressure detection can be realized. The fiber bragg grating osmometer has the advantages of high measuring accuracy, small volume, electromagnetic interference resistance, good waterproof performance, capability of long-term monitoring, etc.

Description

technical field [0001] The invention relates to a fiber grating osmometer and belongs to the field of fiber grating sensing. Background technique [0002] As we all know, one of the most difficult issues in the safety monitoring of dams, tunnels and coal mines is to reliably determine the location of the seepage area. Only by quickly and accurately ascertaining the location and flow of seepage (leakage) can effective prevention and repair be taken Therefore, seepage location and quantitative monitoring of seepage volume are of great significance. [0003] Since the 1980s, a lot of manpower and material resources have been invested at home and abroad to carry out research on monitoring (detection) technology for leak location. The basic principle is to detect whether there are obvious differences in physical properties (that is, electrical properties, elasticity, temperature, etc.) between the hidden danger and the surrounding rock soil, concrete and other media, or the vari...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01L7/08G01D5/353G01L11/02
Inventor 王静隋青美李术才李树忱李利平冯现大
Owner SHANDONG UNIV
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