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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >A superstructure model for the synthesis of single-contaminant water networks with partitioning regenerators
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A superstructure model for the synthesis of single-contaminant water networks with partitioning regenerators

机译:用分隔蓄热器合成单污染物水网络的上层建筑模型

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This paper presents a novel superstructure-based optimization model for the synthesis of industrial water networks with partitioning regenerators. Such regenerators function by splitting a contaminated water stream into a regenerated lean stream and a low-quality reject stream. Membrane separation-based processes are examples of these types of regenerators. The optimization model presented in this work integrates a single, centralized partitioning regenerator with a source-sink superstructure under the assumption that the processes within the plant are of the fixed flow rate type. The formulation is non-linear as a result of the presence of bilinear terms in the regenerator balance equations, but global optimal solutions can be found using commercial software. The features of the model are illustrated by solving case studies from the literature. It is notable from these examples that considerable design flexibility exists in networks of this type, since potentially both the lean and reject streams from the partitioning regenerator can be reused/recycled within the plant.
机译:本文提出了一种新的基于上层建筑的优化模型,用于带有分区再生器的工业用水网络综合。这样的蓄热器通过将被污染的水流分成再生的贫流和低质量的废料流而起作用。基于膜分离的过程是这些类型的再生器的示例。在工厂内的过程属于固定流量类型的假设下,这项工作中提出的优化模型将单个集中式分区再生器与源汇上部结构集成在一起。由于再生器平衡方程中存在双线性项,因此该公式是非线性的,但是可以使用商业软件找到全局最优解。通过解决文献中的案例研究来说明模型的特征。从这些示例中可以明显看出,这种类型的网络中存在相当大的设计灵活性,因为来自分区再生器的稀流和剔除流都可能在工厂内重新使用/回收。

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