石油化工设备技术 ›› 2026, Vol. 47 ›› Issue (3): 23-30.doi: 10.3969/j.issn.1006-8805.2026.03.005

• 状态监测与分析 • 上一篇    

加氢空冷器泄漏声学成像在线监测系统研制

王金光1,刘祥春2,马志刚3,刘红磊4,刘永健3,李黎1   

  1. 1. 中国石化工程建设有限公司,北京 100101;
    2. 上海石油化工股份有限公司,上海 200540;
    3. 慧感(上海)物联网科技有限公司,上海 201800;
    4. 中国石化集团北京燕山石油化工有限公司,北京 102500
  • 收稿日期:2026-02-09 修回日期:2026-04-27 接受日期:2026-04-30 出版日期:2026-05-15 发布日期:2026-05-19
  • 通讯作者: 刘永健 E-mail:wangjinguang.sei@sinopec.com
  • 作者简介:王金光,男, 1997年毕业于石油大学(华东)焊接工艺及设备专业,工学硕士,主要从事材料工程、腐蚀控制设计和研究工作,中国石化工程建设有限公司(SEI)技术总监,正高级工程师。
  • 基金资助:
    中国石油化工股份有限公司(批准号:CLY24070)资助的课题

Development of Online Acoustic Imaging Monitoring System for Hydrocracking Air Cooler Leakage

Wang Jinguang1, Liu Xiangchun2, Ma Zhigang3, Liu Honglei4, Liu Yongjian3, Li Li1   

  1. 1. SINOPEC Engineering Incorporation, Beijing, 100101;
    2. SINOPEC Shanghai Petrochemical Co., LTD., Shanghai, 200540;
    3. Huigan (Shanghai) Internet of Things Technology Co., Ltd., Shanghai, 201800;
    4. SINOPEC Yanshan Petrochemical Company, Beijing, 102500
  • Received:2026-02-09 Revised:2026-04-27 Accepted:2026-04-30 Online:2026-05-15 Published:2026-05-19
  • Contact: Liu Yongjian E-mail:wangjinguang.sei@sinopec.com

摘要: 加氢处理对解决原油重质化、劣质化与油品结构轻质化的突出矛盾起到至关重要的作用。加氢高压空冷器泄漏是加氢装置长周期运行和提质增效的难题之一,是制约“五年一修”长周期运行的五大问题之一。传统泄漏检测手段响应慢,难以及时探测小微初始泄漏,无法可视化定位漏点位置,也无法提供早期预警。文章介绍了一种基于声学成像技术的高压空冷器泄漏声学成像在线监测系统的研制过程。该系统利用麦克风阵列采集异常声源信号,通过对角载荷波束成形算法、声光融合技术和泄漏风险分级算法实现漏点声学成像定位和可视化分级报警。经实验台架与现场测试验证,该系统可在复杂噪声环境下实现漏点定位、可视化展示和分级报警,报警和定位准确率≥90%,具有良好的实时性、健壮性与工程应用价值。

关键词: 加氢装置, 高压空冷器, 泄漏检测, 声学成像, 漏点定位, 在线监测, 视频监控

Abstract: Hydrocracking plays a pivotal role in resolving the acute contradiction between the increasingly heavier and inferior quality of crude oil and the lighter product slate. Leakage in hydrocracking high-pressure air coolers is one of the major challenges to the long-cycle operation, quality improvement and efficiency enhancement of hydrocracking units, and ranks among the top five issues constraining the "five-year turnaround" long-cycle operation. Traditional leak detection methods are slow to respond, making it difficult to promptly detect minor initial leaks. They cannot visually locate leakage points and fail to provide early warning. This paper presents the development of an online monitoring system for acoustic imaging of high-pressure air cooler leakage based on acoustic imaging technology. The system employs a microphone array to capture abnormal sound source signals, and achieves acoustic imaging localization of leakage points and visualized tiered alarming through diagonal loading beamforming algorithm, acousto-optic fusion technology and leakage risk classification algorithm. Experimental bench tests and field tests have validated that the system is capable of leak localization, visual display and tiered alarming in complex noise environments, achieving an alarm and location accuracy of no less than 90% and exhibiting favorable real-time responsiveness, robustness, and engineering applicability.

Key words: hydrocracking unitlhigh-pressure air coolerlleak detectionlacoustic imaginglleak localizationlonline monitoringlvideo surveillance