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Energy gap method (EGM) to increase energy efficiency in industrial processes: Successful cases in polymer processing

机译:能隙方法(EGM)提高工业流程的能源效率:聚合物加工的成功案例

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摘要

A novel strategic decision methodology to increase energy efficiency in industrial processes, the Energy Gap Method (EGM), is presented. For this methodology, six different specific energy consumption levels are proposed; four of them are based on historical plant data and measurements in production processes, and the other two levels are based on benchmark references and thermodynamic minimum estimations. Five gaps or differences between specific energy consumptions can be calculated: production, quality, process, technological, and R&D gaps. Actions aiming at the reduction of the largest gaps are prioritized, taking into account the required resources and payback analyses. Four successful industrial case studies applying EGM in polymer processing are presented. In the first study, a blow molding process was diagnosed and the interventions obtained a specific energy consumption (SEC) reduction of 14%. For the second study, the same process used in the first study was employed to intervene in a second machine, obtaining an SEC reduction of 65%. For the third and fourth studies, an automotive part injection molding process was diagnosed and improved, obtaining SEC savings of 16% for the part production and around 7% for the whole production plant. EGM is not limited to polymer processing plants, and it could be adapted to other mass production processes. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种提高工业过程能源效率的新颖战略决策方法,即能源差距法(EGM)。对于这种方法,提出了六种不同的特定能耗水平。其中四个基于工厂的历史数据和生产过程中的测量值,另外两个级别则基于基准参考和热力学最小估计。可以计算出特定能耗之间的五个差距或差异:生产,质量,工艺,技术和研发差距。优先考虑旨在减少最大差距的行动,同时考虑了所需的资源和投资回收期分析。提出了将EGM应用于聚合物加工的四个成功的工业案例研究。在第一项研究中,诊断出吹塑过程,并且干预措施使单位能耗(SEC)降低了14%。对于第二项研究,采用与第一项研究相同的过程干预第二台计算机,使SEC降低了65%。对于第三项和第四项研究,诊断并改进了汽车零件注射成型工艺,零件生产节省了SEC的16%,整个生产厂节省了7%的SEC。 EGM不限于聚合物加工厂,它可以适用于其他批量生产过程。 (C)2017 Elsevier Ltd.保留所有权利。

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