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A novel multi-period mixed-integer linear optimization model for optimal distribution of byproduct gases, steam and power in an iron and steel plant

机译:一种新型多时段混合整数线性优化模型,用于钢铁厂副产物气体,蒸汽和动力的最佳分布

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摘要

Byproduct gases, steam and electricity play an important role in providing energy for production units in the iron and steel industry. Optimal distribution of byproduct gases, steam and electricity in an iron and steel plant can significantly decrease energy cost and reduce CO emissions. However, such optimal distribution is not trivial because it involves many production units, steam turbines, combined heat and power units, and waste heat and energy recovery units, and several realistic operational features such as byproduct gas mixing, byproduct gas level control in dedicated gasholders, different levels of steam requirement, minimum heating and energy requirement, and maximum allowable burner switches, resulting in a large complex combinatorial problem. In this paper, we develop a novel multi-period mixed-integer linear programming model for optimal distribution of byproduct gases, steam, and power in an iron and steel plant. The consuming rates of byproduct gases are variable. Different byproduct gases are allowed to be mixed to satisfy minimum heating and energy requirement of production units. The steam is specifically classified as high, medium and low pressure. New binary variables are introduced to determine electricity purchase or sale decision with each having different price. The burner switching operation is correctly modeled with fewer binary variables allowing turning on and off at any time. Several important practical features such as fuel selection, gasholder level control, ramp rate variation, piecewise constant generation rates of byproduct gases, and piecewise constant demand profiles of byproduct gases, steam and electricity are also incorporated. The computational results demonstrate that the optimal operating cost is obtained within 2 CPU seconds for an industrial example using the proposed model, which is reduced by 6% compared to that from actual operation.
机译:副产品气体,蒸汽和电力在为钢铁工业生产单位提供能源方面发挥着重要作用。副产品气体的最佳分布,钢铁厂的蒸汽和电力可以显着降低能源成本,减少共同排放。然而,这种最佳分布并不是微不足道的,因为它涉及许多生产单元,汽轮机,组合的热量和动力单元,以及废热和能量回收单元,以及诸如副产品气体混合,副产品气体水平控制的诸如副产物气体水平控制的诸如副产品气体水平控制,蒸汽需求的不同水平,最小加热和能量要求,以及最大允许燃烧器开关,导致大型组合问题。在本文中,我们开发了一种新型多时段混合整数线性规划模型,用于钢铁厂的副产品气体,蒸汽和电力的最佳分布。副产品气体的消耗率是可变的。将不同的副产物气体混合以满足生产单元的最小加热和能量要求。蒸汽专门被分类为高,中等和低压。引入了新的二进制变量,以确定每个具有不同价格的电力购买或销售决策。燃烧器切换操作与较少的二进制变量正确建模,允许随时打开和关闭。还掺入了燃料选择,Gasholder水平控制,斜坡速率变化,副产品,副产品,蒸汽和电力的分段恒定率的分段恒定率的几个重要实用特征。计算结果表明,使用所提出的模型的工业例子在2 CPU秒内获得最佳运行成本,其与实际操作相比减少了6%。

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