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Temperature Measurement Method for Blast Furnace Molten Iron Based on Infrared Thermography and Temperature Reduction Model

机译:基于红外热成像和降温模型的高炉铁水温度测量方法

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摘要

The temperature measurement of blast furnace (BF) molten iron is a mandatory requirement in the ironmaking process, and the molten iron temperature is significant in estimating the molten iron quality and control blast furnace condition. However, it is not easy to realize real-time measurement of molten iron temperature because of the harsh environment in the blast furnace casthouse and the high-temperature characteristics of molten iron. To achieve continuous detection of the molten iron temperature of the blast furnace, this paper proposes a temperature measurement method based on infrared thermography and a temperature reduction model. Firstly, an infrared thermal imager is applied to capture the infrared thermal image of the molten iron flow after the skimmer. Then, based on the temperature distribution of the molten iron flow region, a temperature mapping model is established to measure the molten iron temperature after the skimmer. Finally, a temperature reduction model is developed to describe the relationship between the molten iron temperature at the taphole and skimmer, and the molten iron temperature at the taphole is calculated according to the temperature reduction model and the molten iron temperature after the skimmer. Industrial experiment results illustrate that the proposed method can achieve simultaneous measurement of molten iron temperature at the skimmer and taphole and provide reliable temperature data for regulating the blast furnace.
机译:高炉铁水的温度测量是炼铁过程中的强制性要求,并且铁水温度对于估算铁水质量和控制高炉条件至关重要。但是,由于高炉铸造车间的恶劣环境和铁水的高温特性,难以实时测量铁水温度。为了实现高炉铁水温度的连续检测,提出了一种基于红外热成像和降温模型的测温方法。首先,使用红外热像仪捕获撇渣器后铁水流的红外热像。然后,基于铁水流动区域的温度分布,建立温度映射模型以测量撇渣器后的铁水温度。最后,建立了降温模型来描述出铁口和撇渣器之间的铁水温度之间的关系,并根据降温模型和撇渣器后的铁水温度计算出出铁口处的铁水温度。工业实验结果表明,该方法可以同时测量撇渣器和出铁口的铁水温度,并为调节高炉提供可靠的温度数据。

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