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分散型光ファイバー漏洩監視に最適な温度センサー製造工場

pipeline leakage monitoring system can adopt a 分散型光ファイバー温度測定 方法,

Pipeline transportation has the advantages of safety, 効率, 経済, と環境保護. It can greatly reduce the transportation and replacement process, achieve continuous transportation, and has a large transportation volume, 高効率, and is easy to achieve automated management. The transportation of strategic resources such as oil and natural gas, the transmission of cooling water for various power enterprises, and the heat transfer required for winter heating in the north are all of great significance. しかし, leakage accidents still occur from time to time due to pipeline aging, changes in geographical and climatic environments, そして人的被害. Establishing a monitoring system for pipelines and achieving real-time detection of pipeline leaks will minimize economic losses and resource waste, and minimize the occurrence of environmental pollution and safety accidents, which has extremely important practical significance.

しかし, due to the diversity and complexity of pipeline leak detection, there is currently no simple, 速い, 正確な, 頼もしい, and universal pipeline leak detection method at home and abroad. 目下, there are many methods for pipeline safety monitoring, including manual inspection, air sampling, tracer monitoring, magnetic flux leakage monitoring, ultrasonic monitoring, in pipe detection ball method, negative pressure wave monitoring, pressure gradient method, and fiber optic sensing monitoring. しかし, air sampling and manual observation methods cannot be used for continuous monitoring; The tracer monitoring method and magnetic flux leakage monitoring method are difficult to achieve online real-time monitoring of pipelines; The ultrasonic monitoring method has high accuracy, but is sensitive to the conveying medium and cannot monitor in real-time; The cost of the in pipe detection ball method is high, and the detection ball is easy to block the pipeline; The negative pressure wave monitoring method has small computational complexity and fast response time, but it requires that the leakage be sudden. If the leakage speed is slow and there is no obvious negative pressure wave, the method will fail.

Fiber optic sensing technology has many advantages such as high measurement sensitivity, 電磁干渉に対する耐性, 放射, 高圧耐性, 耐食性, 小さいサイズ, そして軽量. It is expected to solve the problems of low accuracy, inability to monitor online in real time, and susceptibility to interference. At the information processing end, based on the DTS sent
Decode the temperature distance curve to achieve precise positioning of temperature anomalies. 同時に, extract the signal intensity distribution information caused by the temperature field on each section of the optical fiber, and perform trend analysis on the gradient distribution and changes of the temperature field to improve the positioning accuracy of abnormal points. Accurately calculate the diffusion mode, diffusion direction, and diffusion speed of the leaked material, and improve the accuracy of predicting the leakage amount. The present invention achieves efficient detection, 正確な位置決め, and leakage trend judgment of pipeline leaks through online temperature monitoring of long-distance gas-liquid transportation pipelines.

(1) Based on the simulation model of temperature field distribution at different leakage points in gas-liquid transportation pipelines, combined with the temperature gradient field near the leakage point, comprehensively and systematically analyze the spatial and temporal information of the temperature field formed by the leakage in gas-liquid transportation pipelines.
(2) Breaking through the difficulty of long-distance 分散型光ファイバー 検温, providing a new method for accurate identification technology of gas-liquid pipeline leakage under different interference conditions and related processes of sensor on-site deployment. Develop a real-time online monitoring system for long-distance distributed fiber optic gas-liquid transportation pipeline leaks, filling the gap in specialized equipment in this field in China.
(3) In response to the complex noise interference in the actual monitoring environment of gas-liquid transportation pipelines, as well as the high false alarm and false alarm rates of traditional signal processing techniques, combined with temperature statistical feature extraction technology, the pipeline temperature information is optimized and processed, and gradient field fitting is performed to improve the accuracy of gas-liquid transportation pipeline leakage monitoring, leak point positioning, and precise analysis of leakage trends.

の応用 Distributed Fiber Optic Leakage Monitoring System

1. 石油パイプラインの漏洩検知: 光ケーブル周囲の温度監視を実施することで, 石油パイプラインの漏洩検知の目的は達成される;

2. 異常警報: 検出温度が設定範囲を超えた場合, アラームメッセージが表示され、操作の提案が表示されます;

3. 温度差警報: アラームパラメータは手動設定をサポートします, リレーアラーム信号とアラーム位置情報を出力します, 温度差警報を実現します;

4. アラームゾーンの設定: システムはアラーム領域の長さとアラームポイントを全体としてプログラムできる, 現場の状況に応じて柔軟に調整できる;

5. データ分析: 保存, 照会, 履歴データの分析;

6. リモートアクセス: システムは産業用イーサネットに接続でき、さまざまな管理部門にデータを送信してリモートアクセスを実現できる.

照会

光ファイバー温度センサ, インテリジェント監視システム, 中国の分散型光ファイバーメーカー

蛍光光ファイバー温度測定 蛍光光ファイバー温度測定装置 分布蛍光光ファイバ温度測定システム

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