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首页> 外文期刊>Journal of Chemical Engineering of Japan >Systematic Optimization Using Mathematical Model of Electrical Arc Furnace Producing Liquid Steel
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Systematic Optimization Using Mathematical Model of Electrical Arc Furnace Producing Liquid Steel

机译:电弧炉生产液钢数学型号的系统优化

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A steel plant is a complex system that is composed of interacting components. Iron-making uses a large amount of energy and emits a large amount of CO_(2). A strategy to decrease the energy cost and CO_(2) emission must consider all ways that a change in technology can affect other aspects of SP operation. To do this, a mathematical model of plants can be used for optimization. Electric arc furnace (EAF) is a process to make liquid steel (LS). An EAF makes LS by reprocessing scrap metal, direct-reduced iron, and pig iron. EAF steelmaking is an energy-intensive process, so methods to decrease energy cost are being sought. Also, the EAF sometimes uses additional carbon-based fuel and emits some CO_(2). A mathematical model based on material flow and energy flow is developed to simulate the EAF steelmaking and optimize the energy usage, CO_(2) emission or total cost. This optimization is a mixed integer linear program, and is solved by a commercial optimization tool, GAMS. Sensitivity analysis that considers the costs of electricity and natural gas is added to anticipate how optimization results can change with as variables change. The effects of carbon tax are also considered. Using this mathematical model, case studies are conducted, and optimization results are evaluated. The results of this study give an optimized strategy for steelmaking, while maintaining steel grade; the strategy can increase the efficiency of the steelmaking process.
机译:钢铁厂是一种复杂的系统,由相互作用组成。铁制造使用大量能量并发出大量的CO_(2)。减少能源成本和CO_(2)排放的策略必须考虑技术变化可能影响SP运行的其他方面的所有方式。为此,可以使用植物的数学模型来优化。电弧炉(EAF)是制造液钢(LS)的过程。 EAF通过再处理废金属,直脂的铁和猪铁来制造LS。 EAF炼钢是一种能量密集型工艺,因此正在寻求降低能源成本的方法。此外,EAF有时使用额外的碳燃料并发出一些CO_(2)。开发了一种基于材料流量和能量流量的数学模型,以模拟EAF炼钢,优化能源使用,CO_(2)发射或总成本。这种优化是混合整数线性程序,并通过商业优化工具,Gams解决。考虑电力和天然气成本的敏感性分析是为了预期优化结果如何随变量变化而变化。还考虑了碳税的影响。使用该数学模型,进行案例研究,评估优化结果。本研究的结果为炼钢提供了优化的策略,同时保持钢级;该策略可以提高炼钢过程的效率。

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