Distributed optical fiber and flow pressure value-based pipeline leakage joint detection method

A distributed optical fiber, flow pressure technology, applied in gas/liquid distribution and storage, pipeline systems, mechanical equipment, etc., can solve the problems of unstable pipeline flow, complicated cabin background noise, and short ship pipeline distance. Achieving the effect of solving the problem of reciprocity, significant economy and strong complementarity

Inactive Publication Date: 2011-04-13
NO 719 RES INST CHINA SHIPBUILDING IND
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Problems solved by technology

[0004] The purpose of the present invention is to propose a method based on distributed Joint detection method of pipeline leakage based on optical fiber and flow pressure value

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  • Distributed optical fiber and flow pressure value-based pipeline leakage joint detection method
  • Distributed optical fiber and flow pressure value-based pipeline leakage joint detection method
  • Distributed optical fiber and flow pressure value-based pipeline leakage joint detection method

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Embodiment Construction

[0021] The specific implementation manner of the present invention will be described below in conjunction with the technical scheme and accompanying drawings. The embodiment of the improved distributed optical fiber pipeline leak detection method based on Sagnac interferometer principle used in the present invention, as attached figure 1 shown.

[0022] Principle of the present invention is:

[0023] The distributed optical fiber sensing method is a distributed optical fiber pipeline leak detection method based on the Sagnac interferometer principle. The pipeline leakage detection principle of this method is: the optical fiber sensor is arranged along the pipeline. When a leakage occurs somewhere in the pipeline, the leakage fluid will rub against the wall of the leakage hole, and a stress wave (that is, the leakage acoustic emission signal) will be excited on the pipeline wall. ), when the optical fiber is attached to the tube wall, the stress wave acts on the optical fiber...

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Abstract

The invention discloses a distributed optical fiber and flow pressure value-based pipeline leakage joint detection method, which belongs to the field of pipeline leakage monitoring. A Sagnac interferometer principle-based distributed optical fiber pipeline leakage detection method is adopted in a ship pipeline and an optical switch is used at a light source outlet in place of an optical fiber coupler; complete light returning equipment is adopted at the tail end of the pipeline to replace an optical fiber ring structure; a flow sensor and a pressure sensor are arranged at the inlet of each section of pipeline respectively, and a pressure sensor is arranged at the outlet of each section of pipeline; an inlet flow threshold value and an inlet-outlet pressure difference threshold value are set for each section of pipeline; a phase difference characteristic signal and a flow and pressure variation signal generated by an optical fiber sensor are acquired to a computer and analyzed; when the two signals indicate that leakage occurs, the section of pipeline leaks; and when one signal indicates that the leakage occurs, the working condition of a system is continuously investigated on sitemanually so as to judge whether the leakage occurs. The method is suitable to be applied to the ship pipeline.

Description

field of invention [0001] The invention relates to a joint detection method for pipeline leakage based on distributed optical fiber and flow pressure value, belonging to the field of pipeline leakage monitoring. Background technique [0002] The pipeline is an important part of the ship system, and the oil, water, steam, high-pressure air and other media in the ship are transmitted through different pipeline systems. Due to the sudden change of pressure in the pipeline caused by the abnormal operation of the system, long-term seawater erosion and corrosion, the system pipeline or connecting accessories (such as flanges, joints, etc.) will leak, which will cause great harm to the safety of the ship. In particular, the large-diameter pipelines leading to the sea are mostly arranged on the bottom floor of the cabin, and the upper part of the pipeline is generally covered with sliding iron plates, and some pipe sections are also arranged inside the watertight liquid tank, which ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F17D5/02
Inventor 谢江辉王晓东蔡标华马士虎
Owner NO 719 RES INST CHINA SHIPBUILDING IND
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