通过能量平衡法和资源优化提高步进炉式再加热炉的能源效率

Koushik Chakravarty , Souvik Mondal , Rajen Kundu
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引用次数: 0

摘要

大多数金属工业都使用再加热炉(RHF)进行精整作业。这种再加热炉是一种高耗能设备,使用副产品气体、天然气或石油作为燃料,加热炉膛内的材料进行轧制或整形。有必要尽可能减少或优化燃料消耗。通过分析设备运行数据、设备测量数据和能量平衡计算,这项工作旨在确定降低方坯再加热炉燃料消耗的潜力。通过模拟运行数据进行预测,以揭示隐藏的问题并发现潜在的问题。研究结果表明,生产率提高了 11%,油耗降低了 14%。这些措施大大降低了碳排放量,并节省了大量成本。
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Improving the energy efficiency in a walking hearth type reheating furnace by energy balance method and optimizing the resources

Most metal industries use reheating furnaces (RHF) for their finishing operations. This RHF is highly energy-consuming equipment that heats the material inside the chamber for rolling or shaping using the by-product gases, natural gas, or oil as fuel. It is necessary to minimize or optimize the fuel consumption to the extent possible. By analyzing the plant operating data, plant measurements, and energy balance calculation, this work aims to determine the potential for decreasing the fuel consumption of a billet reheating furnace. Predictions are made by modeling operating data to reveal the hidden problems and uncover underlying issues. The study results in increasing productivity by 11 ​% while oil consumption was reduced by 14 ​%. These actions significantly decreased carbon emissions considerably and generated significant cost savings.

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