首页> 外文会议>Inaugural US-EU-China Thermophysics Conference >AN ONLINE MONITORING TECHNOLOGY FOR VISUALIZATION OF 3-D HIGH TEMPERATURE FIELD IN A TUBULAR FURNACE
【24h】

AN ONLINE MONITORING TECHNOLOGY FOR VISUALIZATION OF 3-D HIGH TEMPERATURE FIELD IN A TUBULAR FURNACE

机译:三维炉中三维高温场可视化的在线监测技术

获取原文
获取外文期刊封面目录资料

摘要

This paper presents a real-time monitoring system with visualization of three-dimensional (3-D) temperature reconstruction based on image processing technology in an experimental tubular furnace in Luoyang Ruichang Petrochemical Equipment Co. Ltd. In this system, a radiative image-formation model was adopted to establish the relationship between the radiation images and the 3-D temperature distribution inside a high temperature industrial system, and a modified Tikhonov regularization method was used to reconstruct the 3-D temperature distribution from the 2-D temperature images transformed from color images The temperature measured by the present system at three locations, especially on the tube skin, agree well with those by thermocouples in the whole experiment process. The relative errors are almost less than 5%. The changing burner status experiment testifies this system can accurately and visualized on-line detect distribution of 3-D temperature and furnace tube skin temperature during different operating modes, for example different fuel component, different air-fuel ratioes and different burner heating capacity. By comprehensive analysis and diagnosis, this system can provide optimize regulating instruction information of optimally input air-fuel ratio for burners. Furthermore, the fast and real time response to the fire in the furnace can be utilized to provide a warning for fire extinguishing in the present system. And it supplies a new-style modern detection means for tubular furnace safety and economic operation.
机译:本文提出了一种实时监测系统,基于洛阳瑞昌石化设备有限公司实验管道炉的图像处理技术可视化三维(3-D)温度重建。在该系统中,辐射图像形成采用模型来建立辐射图像与高温工业系统内的3-D温度分布之间的关系,并使用改进的Tikhonov规则化方法来重建从转换的2-D温度图像的3-D温度分布彩色图像通过本系统在三个地点测量的温度,特别是在管状皮肤上,在整个实验过程中与热电偶的那些相同。相对误差几乎小于5%。变化的燃烧器状态实验证明了该系统可以在不同的操作模式下准确地和可视化在线检测3-D温度和炉管皮肤温度的在线检测分布,例如不同的燃料分量,不同的空燃比和不同的燃烧器加热容量。通过综合分析和诊断,该系统可以提供优化燃烧器最佳输入空燃比的规范指令信息。此外,可以利用对炉中火灾的快速和实时响应,以提供用于在本系统中灭火的警告。它为管状炉安全和经济运行提供了一种新型现代检测手段。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号