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Modeling Heat-and-Mass Exchange Processes in the Vanyukov Furnace in Specific Operational Conditions

机译:在特定运行条件下对Vanyukov炉中的热与质量交换过程进行建模

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A mathematical model of the Vanyukov furnace is developed. This model ensures the prediction of the behavior of the object during emergency operation, namely, if oxygen is turned off, and the construction of an effective system of additional heating, which dampens the consequences of the emergency mode and reduces the costs for furnace reactivation. The efficiency of the dynamic zone-node computation technique (the DZN or two-grid method) is shown, and the mathematical model is adapted to the existing production conditions, which are characterized by weak definiteness. A simulation made it possible to acquire a detailed pattern of complex gas-dynamic and temperature processes in all points of the furnace space. A system of the criteria of the quality of the emergency heating process is developed. Using our model, a variant of the structure and the parameters of the heating system making it possible to hold the surface of the quiet bath in the molten state for more than four days while being sufficiently effective is selected.
机译:建立了Vanyukov炉的数学模型。该模型可确保在紧急操作期间(即,如果氧气已关闭)预测对象的行为,并确保构建有效的附加加热系统,从而减轻了紧急模式的后果并降低了重新启动炉子的成本。展示了动态区域节点计算技术(DZN或两网格方法)的效率,并且该数学模型适用于以确定性较弱为特征的现有生产条件。通过模拟,可以获得在炉腔所有点上复杂的气体动力学和温度过程的详细模式。建立了紧急加热过程质量标准系统。使用我们的模型,选择了加热系统的结构和参数的一种变体,该变体可以使静浴的表面在熔融状态下保持四天以上,同时又足够有效。

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