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Multiperiod and Multiproduct Model for the Optimal Production Planning in the Gases Sector: Application to an Industrial Case Study

机译:气体部门最优生产规划的多层次和多程序模型:应用于工业案例研究的应用

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Cryogenic air separation technology is used to produce large amounts of technical gases with high purity levels. It is an industrial energy-intensive technology consuming high volumes of electricity. The complexity in operating air separation processes increases since the volatile conditions (i.e., electricity prices and product demand) can hourly change. Thus, the use of computer-aided tools to obtain energy and economic savings becomes crucial. In this paper, we state a multiperiod and multiproduct mixed-integer linear programming (MILP) model to determine the optimal production schedule of an industrial cryogenic air separation process. The MILP model contributes to minimize the energy consumption in the network whereas the net profit is maximized. The model capabilities are developed and validated using an existing air separation plant.
机译:低温空气分离技术用于生产具有高纯度水平的大量技术气体。它是一种工业能源密集型技术,消耗大量电力。运行空气分离过程中的复杂性增加,自挥发性条件(即电价和产品需求)可以每小时变化。因此,使用计算机辅助工具以获得能量和经济储蓄变得至关重要。在本文中,我们说明了多层次和多程序混合整数线性编程(MILP)模型,以确定工业低温空气分离过程的最佳生产计划。 MILP模型有助于最小化网络中的能耗,而净利润最大化。使用现有的空气分离厂开发和验证模型能力。

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