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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Simultaneous synthesis of flexible heat exchanger networks for unequal multi-period operations
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Simultaneous synthesis of flexible heat exchanger networks for unequal multi-period operations

机译:同时进行柔性热交换器网络的综合,以实现不相等的多周期运行

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The synthesis of heat exchanger networks has received significant attention in the last four decades due to the rising cost of fossil based energy sources and their attendant greenhouse gas emissions potential. However, most of the methods presented in the literature for heat exchanger network synthesis (HENS) have assumed that plants' process stream parameters, such as supply/target temperatures and stream flowrates, are fixed, hence having a single period of operation. In reality, process parameters vary within certain ranges due to changes in environmental conditions, changes in product quality demand, plant start-ups/shut-downs, and other disturbances which may upset the system. This implies that plants need to be designed to accommodate the aforementioned potential variations in operating parameters. This paper presents a new 3-step approach for the synthesis of flexible heat exchanger networks for multi-period operations with unequal period durations. The first step entails optimising a representative single period network of the multi-period problem. The solution to the representative network is then used to initialise the multi period network in the second step. In the third step, the resulting network from the second step is redesigned/evaluated to handle unforeseen changes in lengths of periods. The solutions obtained from the newly presented method compare favourably with those in the literature. (C) 2016 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在过去的四十年中,由于基于化石的能源成本不断上升以及随之而来的温室气体排放潜力,热交换器网络的合成受到了广泛关注。但是,文献中提出的用于换热器网络综合(HENS)的大多数方法都假定工厂的过程物流参数(例如供应/目标温度和物流流量)是固定的,因此只有一个运行周期。实际上,由于环境条件的变化,产品质量要求的变化,工厂的启动/关闭以及其他可能使系统崩溃的干扰,过程参数会在一定范围内变化。这意味着需要将设备设计为适应上述运行参数的潜在变化。本文提出了一种新的三步法,用于合成不等周期持续时间的多周期操作的柔性热交换器网络。第一步需要优化多周期问题的代表性单周期网络。然后在第二步中使用代表网络的解决方案来初始化多周期网络。在第三步中,将从第二步中得到的网络进行重新设计/评估,以处理不可预见的周期长度变化。从新提出的方法获得的解决方案与文献中的解决方案相比具有优势。 (C)2016年化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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