期刊文献+

三维温度场可视化检测系统在裂解炉上的应用研究 被引量:3

APPLICATION OF 3D TEMPERATURE FIELD VISUALIZATION DETECTION SYSTEM TO ETHYLENE CRACKING FURNACE
下载PDF
导出
摘要 重点介绍了安装在中国石油化工股份有限公司茂名分公司乙烯装置H114号裂解炉上的三维温度场可视化检测系统。该系统主要根据布置在裂解炉四周炉墙的16支CCD火焰图像探测器拍摄到的视频信息,重建出炉膛内的三维温度场分布。系统提供全方位炉膛看火电视的功能,可减少甚至避免操作工的看火孔巡检次数;提供全炉膛空间区域及管壁三维温度场立体分布,指导在炉内空间及管壁的温度分布不均匀区域调整燃烧器,改善炉内温度分布均匀性,避免炉管、炉体过烧,为装置的长周期运行提供技术支持。 This paper introduces the 3D temperature field visualization detection system installed on the cracking furnace H114 in the ethylene plant at SINOPEC Maoming Company.The system helps to reconstruct the 3D temperature field distribution based on the flame image captured by the 16 CCD cameras around the furnace.It functions as full range furnace flame TV to reduce the inspection frequency of operators,provides 3D temperature field distribution in the full furnace space and tube walls to give instructions to the burner adjustment in areas where temperature distribution is uneven,improves the temperature distribution in furnace and avoids the over-burning of furnace tubes,thus providing technical support for the long period operation of the plant.
出处 《乙烯工业》 CAS 2016年第3期20-25,4,共6页 Ethylene Industry
关键词 裂解炉 三维温度场检测 可视化检测系统 炉管表面测温 看火电视 Ethylene cracking furnace 3D temperature field detection Visualization detection system Furnace tube surface temperature detection Flame TV
  • 相关文献

参考文献2

二级参考文献18

  • 1娄春,韩曙东,刘浩,周怀春.一种煤粉燃烧火焰辐射成像新模型[J].工程热物理学报,2002,23(S1):93-96. 被引量:23
  • 2Zhou, H. C. , Lou, C. , Cheng, Q. , et al. , Experimental Investigation on Visualization of Three-dimensional Temperature Distributions in a Largescale Pulverized-coal-fired Boiler Furnace, proceedings of the 30^th International Symposium on Combustion, Chicago, USA, July 25-30, 2004.
  • 3Zhou, H. C. , Cheng, Q. , The DRESOR Method for the Solution of the Radiative Transfer Equation in Gray Plane--Parallel Media proceedings of the 4^th International Symposium on Radiative transfer, Istanbul, Turkey, June 20-24,2004:pp. 181-190.
  • 4Zhou, H. C., Chen, D. L. and Cheng, Q., A New Way to Calculate Radiative Intensity and Solve Radiative Transfer Equation through Using the Monte Carlo Method, JQSRT, Vol. 83, pp. 459- 481, 2004.
  • 5Zhou HC, Han SD, Sheng F, et al. Visualization of three-dimensional temperature distributions in a large-scale furnace via regularized reconstruction from radiative energy images: numerical studies, Journal of Quantitative Spectroscopy and Radiative Transfer 72. 2002, 361-383.
  • 6文联奎,郑远扬.管式加热炉辐射传热的数学模型和计算方法[J].石油学报(石油加工),1986,2(1):57-69.
  • 7Niaei A, Towfighi J, Sadrameli S M, et al. The com- bined simulation of heat transfer and pyrolysis reactions in industrial cracking furnaces [J]. Applied Thermal En- gineering, 2004, 24: 2251-2265.
  • 8Masoumi M E, Sadrameli S M, Towfighi J, et al. Simulation, optimization and control of a thermal crack- ing furnace[J]. Energy, 2006, 31: 516-527.
  • 9Hu Guihua, Wang Honggang, Qian Feng. Numerical simulation on flow, combustion and heat transfer of eth- ylene cracking furnaces [J]. Chemical Engineering Sci- ence, 2011, 66: 1600-1611.
  • 10Berreni Mehdi, Wang Meihong. Modelling and dynamic optimization of thermal cracking of propane for ethylene manufacturing [J]. Computers and Chemical Engineer- ing, 2011, 35: 2876-2885.

共引文献5

同被引文献37

引证文献3

二级引证文献12

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部