Operability and Flexibility of Pinch Applications on Heat Exchanger Network in Chemical Industry – A Review

Levina Mandalagiri, A. Irawan, S. Yani
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引用次数: 1

Abstract

Energy conservation has recently become one of the most important considerations in industries, especially in petrochemical industries. This is due to the limited availability of fuel which affects the price of energy sources, as well as the tightening of the regulations concerning environmental and social issues related to pollutant emissions produced by industries. The successful energy-saving efforts made by industries impact on not only lowering production costs but also indirectly preserving natural resources as well as reducing the pollution of CO2 which is one of the gases contributing to global warming. Pinch analysis has been widely known for process integration, especially in heat integration, in order to gain energy efficiency and cost efficiency in many industries for decade. The analysis allows selection of efficient heat exchanger network with minimum hot and cold energy requirement. By using pinch analysis, the number of heat exchanger units required could also be minimized which leads to the optimum cost of operational and investment. Pinch analysis is also allowing for the investigation of any pinch problems, such as pinch threshold problems, cross pinch problems, and problems related to incorrect placement of utilities which impacted to the wastefulness of energy consumption. Despite many success studies of highly potential saving of heat integration through pinch analysis, the real implementation of efficient and effective heat exchanger network (HEN) based on pinch analysis is still facing difficulties, for example in term of flexibility and controllability of operation.  This paper provides preliminary information in increasing energy efficiency or energy savings when utilizing pinch technology considering operability and flexibility of its operation for retrofitting units for chemical industrial plants.
化工换热网络夹点应用的可操作性和灵活性综述
近年来,节能已成为工业,特别是石油化工行业的重要考虑因素之一。这是由于燃料供应有限,影响到能源的价格,以及有关工业产生的污染物排放的环境和社会问题的条例收紧。成功的工业节能不仅降低了生产成本,还间接地保护了自然资源,减少了二氧化碳的污染,二氧化碳是导致全球变暖的气体之一。为了提高能源效率和成本效益,掐点分析在许多行业的过程集成,特别是热集成中得到了广泛的应用。通过分析,可以选择冷热能需求最小的高效换热器网络。通过夹点分析,还可以使所需的热交换器单元数量最小化,从而达到最优的运行成本和投资成本。夹点分析还允许调查任何夹点问题,例如夹点阈值问题、交叉夹点问题以及与影响能源消耗浪费的公用事业的不正确放置有关的问题。尽管通过捏点分析成功地研究了热集成的高潜力节约,但基于捏点分析的高效换热器网络(HEN)的真正实施仍然面临着困难,例如在运行的灵活性和可控性方面。本文就利用夹点技术在化工装置改造中考虑其操作的可操作性和灵活性,提高能效或节约能源提供了初步的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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