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On-line monitoring device for real-time stress of welding seam on buried pipeline based on optical fiber grating

A monitoring device and fiber grating technology are applied in the field of real-time stress online monitoring devices for buried pipeline welds, which can solve the problem that time and location judgment trend prediction cannot meet actual needs, stress concentration is not targeted means, and pipeline failure risks are increased. problem, to achieve the effect of reliable trend prediction, simple structure and low manufacturing cost

Active Publication Date: 2012-08-22
江苏上建舜杰预制构件有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

In practical application, due to the complex environmental factors of field pipelines, various conditions such as terrain, surface structures, and crops along the line restrict the adoption of the above-mentioned technical means, so there is always a certain blind spot, which increases the risk of pipeline failure; traditional detection methods are mainly for outdoor Corrosion integrity, almost no targeted means for stress concentration
In summary, since the traditional technology cannot meet the actual needs in terms of time, position judgment, trend prediction and other aspects, the invention of a new real-time online monitoring technology that can judge the stress change state of the pipeline is particularly necessary

Method used

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  • On-line monitoring device for real-time stress of welding seam on buried pipeline based on optical fiber grating
  • On-line monitoring device for real-time stress of welding seam on buried pipeline based on optical fiber grating
  • On-line monitoring device for real-time stress of welding seam on buried pipeline based on optical fiber grating

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Embodiment 1

[0025] A fiber grating-based real-time stress on-line monitoring device for buried pipeline welds, comprising a computer 10, a spectral demodulator 9 and a blazed fiber grating sensor 8, the computer 10 is connected to the spectral demodulator; the spectral demodulator is connected to the blazed fiber grating sensor 8. The blazed fiber grating sensor 8 is composed of a blazed fiber grating 1, a hosting 6 and a prestressed drawstring 7, the blazed fiber grating is assembled in the hosting, and the hosting is equipped with a prestressed drawstring.

[0026] The host for assembling the blazed fiber grating is a semicircular barrel structure. The blazed fiber grating has a single-mode fiber connected to the spectrum demodulator, and the connection between the single-mode fiber and the blazed fiber grating has a casing 3 and a protective sleeve 4 . The single-mode optical fiber 2 can be connected by an optical fiber connector 5 .

[0027] The specific structure of the present embo...

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Abstract

The invention relates to an on-line monitoring device for real-time stress of a welding seam on a buried pipeline based on an optical fiber grating, and belongs to the monitoring technology field of buried pipelines. The on-line monitoring device for the real-time stress of the welding seam on the buried pipeline based on the optical fiber grating is characterized in that the on-line monitoring device comprises a microprocessor, a light spectrum demodulation instrument and a blazed optical fiber grating sensor, wherein the microprocessor is connected with the light spectrum demodulation instrument; the light spectrum demodulation instrument is connected with the blazed optical fiber grating sensor; the blazed optical fiber grating sensor consists of a blazed optical fiber grating, a supporting tube and a prestressed draw tape; the blazed optical fiber grating is assembled in the supporting tube; and the supporting tube is provided with the prestressed draw tape. The on-line monitoringdevice has the advantages of simple structure, low manufacturing cost, stable and reliable performance, long service life, accurate position judgment, reliable trend forecast, real-time detection, high data accuracy and the like, is compact to assembly and convenient to operate, and saves the time and the labor.

Description

technical field [0001] The invention belongs to the technical field of buried pipeline monitoring, in particular to an on-line monitoring device for real-time stress of buried pipeline welds based on optical fiber gratings. Background technique [0002] At present, sacrificial anode protection is usually used for the daily maintenance of buried pipelines. The detection methods are mostly based on the NACE ECDA (External Corrosion Direct Assessment) recommended method, and multiple detection methods such as PCM, DCVG / ACVG, and CIPS are used simultaneously for external anti-corrosion layer detection. In practical application, due to the complex environmental factors of field pipelines, various conditions such as terrain, surface structures, and crops along the line restrict the adoption of the above-mentioned technical means, so there is always a certain blind spot, which increases the risk of pipeline failure; traditional detection methods are mainly for outdoor In terms of c...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G01L1/24
Inventor 胡欣袁树忠刘波
Owner 江苏上建舜杰预制构件有限公司