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Linking pinch analysis and shifted temperature driving force plot for analysis and retrofit of heat exchanger network

机译:连接夹切分析和移位温度驱动力图,进行热交换器网络的分析和改造

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摘要

The retrofit of heat exchanger network often needs topology changes to overcome the network pinch to increase heat recovery. It is difficult to maximize energy recovery and minimize topology changes. Owing to good interactive and visualized effects, graphical tools are widely applied in the retrofit. However, for a heat exchanger network with different minimum temperature differences, it becomes difficult to screen retrofit options to avoid crossing the pinch. An efficient graphical tool is needed during retrofit. The shifted temperature driving force plot is proposed to solve this problem by shifting the stream temperature. With the aid of Pinch Analysis, the ideal regions are divided to indicate where heat exchange matches should be located. The emerged stagger of ideal regions before shifting the stream temperature can be avoided. This makes the screening of retrofit strategies easy and convenient. The retrofit of an industrial case is conducted with this graphical tool. The key changes are for the heat exchange matches that cross the pinch. Obtained results show that more energy is recovered with fewer topology changes, thereby yielding improved economic benefits. Application of the shifted temperature driving force plot illustrates its effectiveness in finding better retrofit solutions.
机译:热交换器网络的改造通常需要拓扑改变以克服网络夹紧以增加热量回收。很难最大化能量恢复并最大限度地减少拓扑变化。由于良好的互动和可视化效果,图形工具广泛应用于改造。然而,对于具有不同最小温差差异的热交换器网络,难以筛选改装选择以避免穿过夹子。改装期间需要一种有效的图形工具。提出换档温度驱动力图来解决流温度来解决该问题。借助于捏切分析,划分理想区域以指示应位于热交换比赛的位置。可以避免出现的理想区域在转换流温度之前。这使得筛选改造策略简单方便。用该图形工具进行工业壳的改造。关键的变化适用于越过捏的热交换匹配。获得的结果表明,拓扑变化较少的拓扑变化恢复了更多的能量,从而产生了改善的经济效益。换档温度驱动力图的应用说明了其在找到更好的改造溶液方面的有效性。

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