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Bottleneck of slab thermal efficiency in reheating furnace based on energy apportionment model

机译:基于能量分配模型的加热炉板坯热效率瓶颈

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摘要

To reveal distribution of slab thermal efficiency (STE) and its bottlenecks, a slab region thermal efficiency (SRTE) model and an STE model were established based on the energy apportionment model of a reheating furnace in this paper. The bottleneck index of the slab thermal efficiency (BISTE), which could be used to assess the influence of SRTE on STE in a particular region, was proposed. First, the regional energy balance equation was listed based on reheating furnace region division. Next, the SRTE and STE models were established. Second, the bottleneck of slab thermal efficiency (BSTE) was achieved through a partial correlation analysis (PCA) of billet samples, which were obtained according to the difference between billet loading temperature and its residence time in the reheating furnace. Next, the BISTE was advanced to accurately determine the BSTE. Finally, several suggestions or measures, that could improve SRTE, were proposed. The case study has demonstrated the validation of these models, and the BISTE was 42% (Preheating), 19% (Heating II), 18% (Soaking), 11% (Heating I) and 10% (Preheating & Heating), respectively. Therefore, the preheating zone is the key region used to improve STE. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了揭示板坯热效率(STE)的分布及其瓶颈,基于再热炉的能量分配模型,建立了板坯区域热效率(SRTE)模型和STE模型。提出了板坯热效率的瓶颈指数(BISTE),该指数可以用来评估SRTE对特定区域中STE的影响。首先,基于再热炉区域划分列出了区域能量平衡方程。接下来,建立了SRTE和STE模型。其次,通过根据坯料加载温度与其在加热炉中的停留时间之间的差异获得的坯料样品的偏相关分析(PCA),实现了板坯热效率(BSTE)的瓶颈。接下来,对BISTE进行了改进以准确确定BSTE。最后,提出了一些可以改善SRTE的建议或措施。案例研究证明了这些模型的有效性,BISTE分别为42%(预热),19%(加热II),18%(均热),11%(加热I)和10%(预热和加热)。 。因此,预热区是用来提高STE的关键区域。 (C)2018 Elsevier Ltd.保留所有权利。

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