The concept of a complex digital twin of a furnace for metal heat processing

A. Biryukov
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Abstract

A number of mathematical models, digital twins and diagnostic systems are considered, which are used for individual processes and elements of flame furnaces. An idea was put forward about the expediency of creating a complex digital twin, which simultaneously takes into account the main processes in metal heat processing (heating for rolling or heat treatment) in a flame furnace. A conceptual definition of the structure and interconnection of the elements of a complex digital twin of a furnace for metal heat processing is carried out. It is substantiated that the data to ensure the operation of the digital twin are divided into two groups: constantly or periodically measured values and data that are unchanged. The minimum set of quantities, the measurement of which is necessary for the operation of the proposed complex digital twin of the furnace, is determined. A list of objective data about the unit and the technological process, which are unchanged over a long period of operation, is also compiled. At the same time, a scheme for organization the interaction of special computing units has been developed, which allows to achieve high accuracy in solving the traditional problem of mathematical modeling of metal heat processing ‒ determining the metal temperature field. To achieve this result, computing units are used to identify the parameters of all processes that affect the solution of the problem: the value of air suction into the furnace chamber and along the smoke path, the value of the recovery coeffi-cient, the oxygen consumption for the oxidation of the metal surface, the average heat flux density absorbed by the metal surface. Special blocks are also provided for diagnosing the state of the heat exchanger, fan, smoke path, chimney and elements of the mechanical equipment of the furnace. Ultimately, top-level blocks are provided that allow, based on the processing of information from all the basic blocks of the complex digital twin, to analyze the energy efficiency of the furnace unit, obtain the technical and economic characteristics of its operation, as well as to issue recommendations to clarify the current parameters of technological processes and maintenance of equipment elements.
金属热处理炉的复杂数字孪生概念
考虑了许多数学模型、数字孪生和诊断系统,它们用于火焰炉的各个工序和元件。提出了创建复杂数字孪生系统的可行性,该系统同时考虑了火焰炉中金属热加工(轧制加热或热处理)的主要过程。对金属热处理炉复杂数字孪生系统的结构和各元素之间的相互联系进行了概念定义。经证实,确保数字孪生系统运行的数据分为两组:持续或定期测量值和不变数据。在此基础上,确定了所建议的复杂数字孪生炉运行所需的最小测量量集合。此外,还编制了一份有关设备和技术过程的客观数据清单,这些数据在长期运行过程中保持不变。与此同时,还开发了一种组织特殊计算单元互动的方案,该方案可以高精度地解决金属热加工数学建模的传统问题--确定金属温度场。为实现这一结果,计算单元用于确定影响问题解决的所有过程的参数:吸入炉膛和烟道的空气值、回收系数、金属表面氧化的耗氧量、金属表面吸收的平均热流密度。此外,还提供了用于诊断热交换器、风机、烟道、烟囱和熔炉机械设备元件状态的特殊块。最后,在处理来自复杂数字孪生系统所有基本模块的信息的基础上,还提供了顶层模块,用于分析熔炉装置的能效,获得其运行的技术和经济特性,以及提出建议,以明确当前的技术工艺参数和设备元件的维护。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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