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Linking pinch analysis and bridge analysis to save energy by heat-exchanger network retrofit

机译:链接夹点分析和桥分析以通过换热器网络改造节省能源

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摘要

Reduction of energy requirements in the process industries results in increased profitability and better environmental performance. Methods for heat exchanger network (HEN) retrofit are based on thermodynamic analysis and insights, numerical optimization, or combined approaches. Numerical optimization-based methods are highly complex and may not guarantee identification of the global optimum. Pinch analysis, which is an approach based on thermodynamic analysis and composite curves, is the most widely used in the industry. Its simplicity, the use of graphical tools, and the possibility for the user to interact at each step of the design process help identify solutions with consideration of practical feasibility. In the last few years, bridge analysis has been developed for HEN retrofit. It includes the following tools: (a) the definition of the necessary conditions to reduce energy consumption which are expressed in the bridge formulation, (b) a method for enumerating the bridges, (c) the representation of the flow rate of cascaded heat through each existing exchanger on the energy transfer diagram (ETD), and (4) the use of the Heat Exchanger Load Diagram (HELD) to identify a suitable HEN configuration corresponding to modifications. It has been shown that reducing energy consumption implies decreasing the flow rate of cascaded heat through the existing exchangers across the entire temperature range between the hot and cold utilities. The ETD shows all possibilities to reduce the flow rate of cascaded heat through a HEN. The objective of this paper is to link these tools with the composite curves and concepts from pinch analysis into a consistent method for HEN retrofit. First, the relations between the composite curves, the ETD and the HELD are described, and a method for HEN retrofit which Combines the insights from pinch analysis with the recently developed tools is proposed. Then the method is used to reduce energy consumption in three case studies. Comparison between results from pinch analysis and bridge analysis shows that the latter identifies supplementary solutions to save energy. The proposed synthesis fills a gap in pinch analysis, and its concepts can be helpful in the development of software for HEN retrofit. (C) 2016 Published by Elsevier Ltd.
机译:降低过程工业中的能源需求可以提高盈利能力并改善环境绩效。换热器网络(HEN)的改造方法基于热力学分析和见解,数值优化或组合方法。基于数值优化的方法非常复杂,可能无法保证识别全局最优值。捏合分析是基于热力学分析和复合曲线的一种方法,在行业中使用最广泛。它的简单性,图形工具的使用以及用户在设计过程的每个步骤进行交互的可能性都有助于在考虑实际可行性的情况下确定解决方案。在过去的几年中,桥梁分析已被开发用于HEN改造。它包括以下工具:(a)减少能源消耗的必要条件的定义,以桥梁的方式表示;(b)列举桥梁的方法;(c)表示通过的级联热量的流量能量传递图(ETD)上的每个现有交换器,以及(4)使用热交换器负载图(HELD)来识别与修改相对应的合适HEN配置。已经表明,减少能耗意味着在热电设备和冷电设备之间的整个温度范围内降低通过现有换热器的级联热量的流量。 ETD显示了降低通过HEN的级联热量流速的所有可能性。本文的目的是将这些工具与捏合分析中的合成曲线和概念联系起来,成为用于HEN改造的一致方法。首先,描述了复合曲线,ETD和HELD之间的关系,并提出了一种将小点分析的见识与最新开发的工具相结合的HEN改造方法。然后在三个案例研究中使用该方法降低能耗。夹点分析和桥分析的结果之间的比较表明,桥分析可以识别补充解决方案以节省能源。拟议的综合填补了捏分析的空白,其概念可能有助于HEN改造软件的开发。 (C)2016由Elsevier Ltd.出版

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