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Combined Approach to Analysis and Regulation of Thermodynamic Processes in the Energy Technology Complex
Processes ( IF 2.8 ) Pub Date : 2021-01-21 , DOI: 10.3390/pr9020204
Anatoliy Alabugin , Sergei Aliukov , Konstantin Osintsev

The purpose of this work is to increase the theoretical and methodological approaches to value and regulate the dynamics of management processes. Application of these dynamics is implemented via methods of improving the quality of management of complex energy technology systems in the organization of recycling processes. As a result of the research, a technological model of a rotary kiln with a division into separate sections corresponding to the combustion zones for the production of cement clinker in recycling technology was developed. Mathematical modeling, analytical calculations of thermodynamic and gas-dynamic processes in the drums of rotating furnaces, and experimental studies were carried out. As a scientific novelty, an approximation of piecewise linear functions is obtained for modeling the processes of improving the quality of control by the criterion of reducing the error of data transmission for monitoring and regulating the thermodynamic parameters of the furnace via analog-to-digital methods. An algorithmic scheme of the method of in-depth analysis of management quality using data science tools in the concept of combining organizational, economic, technical, technological, and mathematical methods and methods of data collection, processing, and storage of big data is developed. This made it possible to apply the models in the formed energy technology complex using learning neural network algorithms. The possibilities of applying the methodology of combining methods for in-depth analysis and modeling of thermodynamic processes in an energy technological complex with any composition of equipment for the production of cement clinker are substantiated.

中文翻译:

能源技术园区热力过程分析与调节的组合方法

这项工作的目的是增加理论和方法上的方法来评估价值并规范管理过程的动态。这些动态的应用是通过在回收过程的组织中提高复杂能源技术系统的管理质量的方法来实现的。作为研究的结果,开发了一种回转窑的工艺模型,该工艺模型分为与燃烧区相对应的不同区域,以循环技术生产水泥熟料。进行了数学建模,旋转炉鼓中热力学和气体动力学过程的解析计算以及实验研究。作为一种科学新颖性,得到一个近似的分段线性函数,用于通过减少数据传输的误差的准则来模拟提高控制质量的过程,从而通过模数方法监控和调节熔炉的热力学参数。在结合组织,经济,技术,工艺和数学方法以及大数据的收集,处理和存储方法的概念中,开发了一种使用数据科学工具对管理质量进行深入分析的方法的算法方案。这样就可以通过学习神经网络算法将模型应用到已形成的能源技术综合体中。
更新日期:2021-01-21
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