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A two-stage approach for the synthesis of inter-plant water networks involving continuous and batch units

机译:包含连续单元和间歇单元的工厂间水网的两阶段综合方法

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This paper presents a mathematical optimization model for inter-plant water network (IPWN) synthesis, where process units operate in mixed continuous and batch modes. The current developed model consists of a two-stage approach, and is dedicated to the special case where there are more continuous than batch units. In the first stage, all batch units are treated as continuous units by using auxiliary water storage tanks, and a continuously operated IPWN is synthesized to minimize the fresh water consumption. Subject to the determined IPWN flow rates, the water storage policy for the batch units is determined in the second stage to minimize the total storage capacity. Alternatively, the formulations of both stages can be combined and solved simultaneously to minimize the IPWN cost. Two modified literature examples are used to illustrate the proposed approach.
机译:本文提出了一种用于工厂间水网(IPWN)综合的数学优化模型,其中工艺单元以连续和间歇混合模式运行。当前开发的模型包括两个阶段的方法,专用于特殊情况,即连续性比批处理单元更多。在第一阶段,使用辅助储水罐将所有批处理单元视为连续单元,并合成连续运行的IPWN以最大程度地减少淡水消耗。根据确定的IPWN流量,在第二阶段确定批次单位的储水策略,以最大程度地减少总储水量。或者,可以合并和同时解决两个阶段的配方,以最大程度地降低IPWN成本。使用两个修改后的文献示例来说明所提出的方法。

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