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An Improved Method for Predicting Heat Exchanger Network Area

机译:一种改进的换热器网络面积预测方法

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Successful application of pinch analysis to any process, be it for grassroots design or retrofit, depends upon the extent to which set targets are achieved in practice. This entails predicating the three stages of process integration namely targeting, synthesis and detailed design on the same basis. There exist gap between these three stages largely due to inaccuracies in film heat transfer coefficient and inability to replicate same at the various stages. This paper presents an improved methodology for area targeting that is consistent with detailed design of an exchanger not just because it is premised on the same basis of pressure drop constraints but, more importantly, because it allows, for necessary variation of stream properties with temperature. The validity of the methodology has been tested using two case studies from the literature. The results obtained in all studies reveal a difference of less than 2% between targeting, synthesis and detailed design with the new methodology. This is contrary to the difference of as high as 59% between targeting and detailed design obtained with the state-of-the-art methodology. There is therefore an excellent agreement between the three stages of process integration arising from the new methodology.
机译:对于基层设计或翻新而言,夹点分析在任何过程中的成功应用取决于在实践中达到既定目标的程度。这就需要在同一基础上确定过程集成的三个阶段,即目标,综合和详细设计。在这三个阶段之间存在间隙,这主要是由于薄膜传热系数的不准确以及在各个阶段都无法复制它们。本文提出了一种针对区域目标的改进方法,该方法与交换器的详细设计相一致,不仅因为它基于压降约束的相同基础,而且更重要的是因为它允许随温度变化的必要的物流特性。使用文献中的两个案例研究测试了该方法的有效性。在所有研究中获得的结果表明,采用新方法进行靶向,合成和详细设计之间的差异小于2%。这与使用最新方法获得的目标设计和详细设计之间的差异高达59%相反。因此,新方法在过程集成的三个阶段之间达成了极好的协议。

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