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Property Integration:Componentless Design Techniques and Visualization Tools

机译:属性集成:无组件设计技术和可视化工具

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Standard techniques for process design are based on tracking individual chemical species.Component material balances are at the heart of any design approach.Nonetheless,many design problems are not component dependent,but are driven by properties.Recently,the concept of clustering has been introduced to enable the conserved tracking of surrogate properties.Hence,the process design can be optimized,based on integrating properties instead of chemical species.Systematic techniques have been developed for this new paradigm of property integration to illustrate its applicability.Property integration is defined as a functionality-based,holistic approach to the allocation and manipulation of streams and processing units,which is based on tracking,adjusting,assigning,and matching functionalities throughout the process.Revised lever arm rules are devised to allow optimal allocation while maintaining intra- and interstream conservation of the property-based clusters.The property integration problem is mapped into the cluster domain.This dual problem is solved in terms of clusters and then mapped to the primal problem in the property domain.Several new rules are derived for graphical techniques.Particularly,systematic rules and visualization techniques for the identification of optimal mixing of streams and their allocation to units.Furthermore,a derivation of the correspondence between clustering arms and fractional contribution of streams is presented.This correspondence is employed to minimize the usage of fresh resources by minimizing cluster arms.The selection of optimal values of the augmented property index is also developed.Finally,graphical tools are devised for task identification of property adjustment.The new techniques are illustrated using a case study on fiber recovery in papermaking.
机译:工艺设计的标准技术基于对单个化学物质的跟踪。组件材料的平衡是任何设计方法的核心。尽管如此,许多设计问题并不取决于组件,而是由性能决定的。最近,引入了群集的概念因此,可以基于集成属性而不是化学物质来优化工艺设计。针对这种新的属性集成范式开发了系统技术,以说明其适用性。在整个过程中基于跟踪,调整,分配和匹配功能的,基于功能的整体方法来分配和处理流和处理单元。设计了经过修订的杠杆规则,以在保持内部和内部流的同时实现最佳分配财产集群的保护。财产整合问题lem被映射到聚类域中。这个双重问题在聚类方面被解决,然后被映射到属性域中的原始问题。为图形技术派生了几条新规则。特别是,系统规则和可视化技术用于确定最优此外,提出了分枝臂与分流的贡献之间的对应关系的推导。这种对应关系通过最小化丛枝臂来最小化新鲜资源的使用。最后,设计了图形工具来进行性能调整的任务识别。以造纸中纤维回收的案例研究为例说明了新技术。

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