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Optimal synthesis of heat exchanger networks for multi-period operations involving single and multiple utilities

机译:涉及单个和多个公用事业的多周期操作的热交换器网络的最佳综合

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摘要

The synthesis of heat exchanger networks in chemical plants is vital for energy saving. Most papers presented on this subject have focused on processes having single periods of operation. However, in reality, chemical processes may be multi-period in nature due to changes in environmental conditions, requirements for start-ups and shut-downs, etc. In cases like this, there may be variations in operating parameters such as supply and target temperatures, and flow rates. Further, such processes may involve multiple hot/cold utilities. For processes of this nature, it is imperative to use a mathematical based approach so as to adequately handle the multidimensional nature of the problem However, solving such models may be difficult except a systematic approach is adopted. In this paper, a modified version of the stage-wise superstructure of Yee and Grussman (1990) is adapted to the synthesis of heat exchanger networks having multiple periods of operations. A new set of solution approaches, which involves solving multi-period MINLP models in a two-step approach is presented. The newly developed method is applied to three examples, out of which two were taken from the literature. In the two examples taken from the literature, the solutions obtained from this study performed better than those presented in the literature. (C) 2014 Elsevier Ltd. All rights reserved.
机译:化工厂中的热交换器网络的合成对于节能至关重要。关于此主题的大多数论文都集中于具有单个操作周期的过程。但是,实际上,由于环境条件的变化,启动和关闭的要求等原因,化学过程本质上可能是多周期的。在这种情况下,诸如供应和目标之类的操作参数可能会发生变化。温度和流速。此外,此类过程可能涉及多个热/冷实用程序。对于这种性质的过程,必须使用基于数学的方法来充分处理问题的多维性质。但是,除非采用系统方法,否则解决此类模型可能很困难。在本文中,Yee和Grussman(1990)的阶段式上部结构的修改版本适用于具有多个运行周期的换热器网络的综合。提出了一套新的解决方案方法,其中涉及以两步法解决多周期MINLP模型。新开发的方法应用于三个示例,其中两个来自文献。在从文献中获得的两个例子中,从这项研究中获得的解决方案比文献中给出的解决方案表现更好。 (C)2014 Elsevier Ltd.保留所有权利。

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