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Optimization for the structure of BF hearth bottom and the arrangement of thermal couples

机译:高炉炉底结构和热电偶布置的优化

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摘要

The hearth of "heat transfer method" and the ceramic cup synthetic hearth bottom of "heart isolation method" are two most popular designs for blast furnace (BF). Although there are successful real examples, some disadvantages, for instance large heat loss and high cost, still exist for these designs. According to the theory of heat transfer, based on the calculation of temperature distribution of the hearth bottom, it is elucidated that all brick layers at the hearth bottom may not be considered as the only reason why different structures exhibited different temperature distributions although total heat resistance is the same, and then based on the effect of hot metal and cold water on different temperature distribution ranges, the concepts of "heat resistance" and "cooling enhancement" are put forth. Based on this, the disadvantages and the factors affecting temperature distribution, of the two types of hearth bottoms were illustrated. On the basis of these analyses, a novel structure for BF hearth bottom designing that can easily form "self-protecting" slag layer stably, called "the method of gradient brick layout that has an optimum combination of cooling enhancement and heat resistance" was proposed; it can not only prolong the hearth bottom longevity but also reduce the cost and heat loss. Also, the optimum arrangement of thermal couples in hearth bottom was suggested based on the previous studies on erosion prediction carried out by the author.
机译:“传热方法”的炉床和“心脏隔离方法”的陶瓷杯合成炉床底是高炉(BF)的两种最受欢迎​​的设计。尽管有成功的实际示例,但这些设计仍然存在一些缺点,例如热量损失大和成本高。根据传热理论,基于炉床底部温度分布的计算,阐明了尽管总耐热性不同,但炉床底部的所有砖层都不能被认为是不同结构呈现出不同温度分布的唯一原因相同,然后根据铁水和冷水对不同温度分布范围的影响,提出了“耐热性”和“冷却增强”的概念。在此基础上,阐述了两种炉底的缺点和影响温度分布的因素。在这些分析的基础上,提出了一种易于稳定地形成“自保护”炉渣层的高炉炉底设计新结构,即“兼顾冷却和耐热性的最佳组合的梯度砖布局方法”。 ;它不仅可以延长炉底寿命,而且可以降低成本和热量损失。此外,根据作者先前对侵蚀预测的研究,提出了炉底底部热电偶的最佳布置。

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