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Long term scheduling technique for wastewater minimisation in multipurpose batch processes

机译:多用途间歇过程中废水最少化的长期调度技术

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Most of the methodologies published in literature on wastewater minimisation for batch processes are based on short term scheduling techniques. When these methods are applied to longer time horizons, the computational time becomes intractable, hence the focus of this paper. This paper presents a methodology for simultaneous optimisation of production schedule and wastewater minimisation in a multipurpose batch facility. The key feature of the presented methodology is the adaption of cyclic scheduling concepts to wastewater minimisation. The methodology is developed based on continuous-time formulation and the state sequence network (SSN) representation. The methodology is successfully applied to two common literature examples and an industrial case study to demonstrate its effectiveness. None of the currently published wastewater minimisation techniques could solve the case study for a time horizon of 168 h. However, through the application of the presented methodology, a time horizon of 168 h for the case study was reduced to eight cycles with the cycle length of 23 h, for which the CPU time for the optimum cycle is 64.53 s.
机译:有关批量处理中的废水最少化的文献中发表的大多数方法都是基于短期调度技术。当将这些方法应用于更长的时间范围时,计算时间变得很棘手,因此成为本文的重点。本文提出了一种在多用途批处理设施中同时优化生产计划和废水最小化的方法。所提出的方法的关键特征是循环调度概念对废水最小化的适应。该方法是根据连续时间公式和状态序列网络(SSN)表示开发的。该方法已成功应用于两个常见的文献示例和一个工业案例研究,以证明其有效性。当前发布的废水最小化技术都无法解决168小时的案例研究。但是,通过应用所提出的方法,案例研究的168小时时间范围减少为八个周期,周期长度为23小时,其中最佳周期的CPU时间为64.53 s。

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