APPLICATION OF MARKOV CHAINS TO THE ANALYSIS OF BLAST FURNACE OPERATION EFFICIENCY

S. K. Sibagatullin, A. S. Kharchenko, L. D. Devyatchenko
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Abstract

The article presents the results of modeling in a dynamic format of one of the most important parameters of any research object – the efficiency of its work. As the object of investigation, a blast furnace with a volume of 2014 m3 was chosen. The main parameters of the efficiency of this object are traditionally used daily productivity and specific consumption of coke; these two parameters were generalized in this paper. In this case, various algebraic signs of the influence of these parameters were taken into account in the generalized efficiency index. Taking into account the variation of each of these parameters at 3 levels, the number of levels of the generalized efficiency index was determined as 32 = 9, therefore it was rational to take a 9-point scale with the measuring scale of profitability from the efficient operation of the blast furnace. The two-dimensional array of primary data of the volume N = 177 was transformed into a 9×9 transitional matrix for processing of random transitions of the efficiency index from one state to another by the Markov chain method with discrete states and time. The set of parameters of the random process is calculated: for the long-term forecast – the stationary vector of state probabilities, the average time of recurrence (reversal) for each efficiency state, the evaluation of the blast furnace efficiency in points; for a short-term forecast – the first time of transition from each state to any other state, the step number for a “burst” of probability for each reliable state at the initial moment of time, and the components of the efficiency index are obtained. It was established that the average level of the analyzed efficiency of the blast furnace (daily output 3702 tons and specific coke consumption 470 kg/ton) is achieved mainly due to short-term transitions of low-efficiency states to high-efficiency states and vice versa. The transfer of the system to more efficient and prolonged conditions is possible, and as practice has shown on the same blast furnace after repair works to eliminate the distortion of the furnace profile, the daily productivity has increased to 5048 tons with a specific coke consumption of 445 kg/t, but the structure of the transition matrix and the calculated indicators of the Markov chain have fundamentally changed in the direction of increasing the probabilities of stay and transitions of the system in more efficient states. The use of the Markov chain method with discrete states and time makes it possible to estimate the probable value of the change in the parameters of the operation of a blast furnace in a given time interval with constant levels of parameters characterizing the conditions of its operation.
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马尔可夫链在高炉运行效率分析中的应用
本文介绍了对任何研究对象最重要的参数之一——其工作效率——进行动态建模的结果。选取容积为2014 m3的高炉作为研究对象。该对象效率的主要参数是传统上使用的日生产率和焦炭的比消耗量;本文对这两个参数进行了推广。在这种情况下,在广义效率指标中考虑了这些参数影响的各种代数符号。考虑到每一个参数在3个层次上的变化,确定广义效率指数的层次数为32 = 9,因此采用9分制作为高炉高效运行盈利能力的衡量尺度是合理的。将体积N = 177的二维原始数据阵列转化为9×9过渡矩阵,采用状态离散、时间离散的马尔可夫链方法处理效率指标从一种状态到另一种状态的随机过渡。对随机过程的参数集进行了计算:对于长期预测——状态概率的平稳向量,每个效率状态的平均递归(反转)时间,以点为单位对高炉效率进行评价;对于短期预报,即从某一状态第一次过渡到另一状态,得到了在初始时刻每一可靠状态的概率“爆发”的步数,以及效率指数的分量。分析结果表明,该高炉的平均效率水平(日产量3702吨,焦炭比耗470 kg/吨)主要是由于短期内从低效状态过渡到高效状态,反之亦然。将系统转移到更有效和更持久的条件是可能的,并且实践表明,在同一高炉上进行修复工作以消除炉形变形后,日产量增加到5048吨,焦炭消耗为445公斤/吨。但转移矩阵的结构和马尔可夫链的计算指标发生了根本性的变化,其方向是增加系统在更有效状态下停留和转移的概率。使用离散状态和离散时间的马尔可夫链方法,可以估计高炉运行参数在给定时间间隔内变化的可能值,这些参数具有表征高炉运行条件的恒定水平。
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来源期刊
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya
Izvestiya Vysshikh Uchebnykh Zavedenij. Chernaya Metallurgiya Materials Science-Materials Science (miscellaneous)
CiteScore
0.90
自引率
0.00%
发文量
81
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