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Furnace infrared imaging and on-line temperature monitoring system
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Furnace infrared imaging and on-line temperature monitoring system
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Furnace infrared imaging and on-line temperature monitoring system
Coking furnace, cracking furnace, converter, etc. are important and key energy conversion equipment in production, which require high temperature control, and the general temperature detection tools can not be used, so it is difficult to control the actual operation of the whole furnace tube, and there are great security risks. Furnace infrared imaging and online temperature monitoring system is a kind of plank (Plank) blackbody radiation law as the basis, set of infrared high temperature flame monitoring, infrared thermal radiation imaging technology, spectral analysis temperature measurement technology, image processing technology and operation state analysis as one of the furnace tube surface temperature monitoring and temperature distribution monitoring and analysis system.
The system uses infrared thermal imager, a non-contact and non-interference measurement method, to quickly obtain the temperature field of the target, and the temperature measurement is fast, comprehensive, accurate, vivid and intuitive. The system can directly display the working conditions in the furnace, quickly obtain the surface temperature distribution and temperature field of the furnace tube, furnace wall and other key parts, give the corresponding alarm when the temperature is abnormal, and establish the historical data file of the temperature data, which can comprehensively analyze the temperature data of the whole operation cycle, and give early warning to the coking of the furnace tube and other problems to avoid dangerous accidents. It has important application value for improving combustion efficiency, saving energy and reducing consumption. The real-time monitoring system of furnace temperature based on digital image processing is realized, which provides more operation guidance information for operators and is conducive to the development of automatic control of furnace temperature.
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