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Graphical Design and Analysis of Mass Exchange Networks Using Composition Driving Forces

机译:用构图驱动力的大规模交换网络的图形设计与分析

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Pinch analysis?is a methodology for minimizing energy and mass consumption in different industries. It has been widely applied for more efficient processes. This study presents a new graphical-approach to analyze and design Mass Integration (MI) and exchange networks that follows Pinch principles to guarantee maximum mass recovery with minimum losses. This technique uses the composition driving forces in network representation as it rules the mass transfer between streams. The proposed approach can be applied on both existing mass networks as well as new ones. This graphical representation a visual descriptive design tool to describe and explain the details of operations with minimum calculations. Besides, it is found to be valuable for conceptual applications on linear dilute systems. The performance of mass-exchange networks is evaluated and suggested improvements can be recommended in terms of composition driving forces inside mass exchangers. In this approach, the x-axis represents the equivalent lean stream compositions, whilst the y-axis represents the difference in compositions for each stream in the exchanger. Pinch Analysis principles are embedded within the graphical representation. A scrap-tires-to-fuel plant case study was considered for the application of the new approach. The plant was designed with Mass Integration targets in consideration. Optimum matches were selected based on maximum driving force, minimum flow and minimum cost. In general, this approach can help synthesize mass networks, whilst maintaining maximum driving force - and thus minimum equipment size and minimum flow.
机译:捏分析?是一种最大限度地减少不同行业的能量和大量消费的方法。它已被广泛应用于更有效的过程。本研究提出了一种新的图形 - 方法来分析和设计质量集成(MI)和交换网络,其遵循夹紧原则,以保证最大损耗的最大质量恢复。该技术使用网络表示中的构图驱动力,因为它规定了流之间的质量传递。所提出的方法可以应用于现有的大众网络以及新的方法。此图形表示可视描述和解释具有最小计算的操作细节的视觉描述性设计工具。此外,它发现对线性稀释系统的概念应用是有价值的。评估批量交换网络的性能,并建议在批量交换器内的组成驱动力方面推荐改进。在这种方法中,X轴代表等效的稀料流组合物,而Y轴表示交换器中每条流的组合物的差异。夹切分析原则嵌入图形表示内。考虑了一种废料到燃料厂案例研究以应用新方法。该植物考虑了大规模集成目标。基于最大驱动力,最小流量和最小成本选择最佳匹配。通常,该方法可以帮助合成大规模网络,同时保持最大驱动力 - 因此最小的设备尺寸和最小流量。

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