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Modeling energy flows in industry: General methodology to develop process step models

机译:模拟工业中的能量流:开发过程步骤模型的通用方法

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The manufacturing sector has been one of the most significant energy consuming and CO2 emitting sectors over the past three decades. Therefore, it is important to have energy flow models of manufacturing processes to identify efficiency improvement and waste heat recovery opportunities with very specific targets. One of the best methods to pinpoint such locations is by referring to manufacturing process step models. Such models can be created on a large scale per industry and on small scale per process within an industry branch. Industry level modeling provides energy saving contingency by large magnitude where the impact on the economy and environment can be observed more visibly especially when sequential trends are identified. The methodology, reviewed in this paper, describes how to model energy flows on an industry scale by deriving the connection between key energy conversion activities on the one hand - including energy purchased/sold and onsite electricity generated, and the key end uses on the other hand. Industry-level energy flow model, referred to in this work, does not assume any specific system. That feature makes it scalable and allows analysis of manufacturing at various levels starting with single processes and finishing at sector and national economy levels. A combined analysis of the procedure is described in detail for creating process step models of manufacturing processes. The availability of U.S. national databases to calibrate these models is discussed and the challenges that arise in finding and using such databases are identified and analysed. In addition to addressing generic data issues associated with energy flow models, the paper also focuses on energy and material models and presents several examples of energy-intensive manufacturing processes, producing industrial gases, textiles, pulp and paper. Finally, importance of water use in onsite energy conversion and process end uses in various industries is addressed along with the sources of where this important data can be found to complete the energy flow modeling.
机译:在过去的三十年中,制造业一直是最重要的能源消耗和二氧化碳排放部门之一。因此,重要的是要具有制造过程的能量流模型,以识别效率提高和具有特定目标的废热回收机会。查明此类位置的最佳方法之一是参考制造过程步骤模型。可以在一个行业分支中按每个行业大规模创建该模型,并在每个过程按较小规模创建这些模型。行业级别的建模提供了巨大的节能应急能力,在这种情况下,可以更明显地观察到对经济和环境的影响,尤其是当确定了连续趋势时。本文概述了该方法,它描述了如何通过推导关键的能源转换活动(包括购买/出售的能源和现场发电以及另一方面的关键最终用途)之间的联系来建立行业规模的能源流模型。手。本工作中提到的工业级能流模型不采用任何特定系统。该功能使其具有可扩展性,并允许从单个过程开始在各个级别进行分析,并在部门和国民经济水平完成。详细描述了该过程的组合分析,以创建制造过程的过程步骤模型。讨论了用于校准这些模型的美国国家数据库的可用性,并确定和分析了在查找和使用此类数据库时出现的挑战。除了解决与能量流模型相关的通用数据问题外,本文还重点介绍了能量和材料模型,并提供了一些能源密集型制造过程的示例,这些过程涉及生产工业气体,纺织品,纸浆和造纸。最后,讨论了用水在各个行业中现场能源转换和过程最终用途中的重要性,以及在哪里可以找到这些重要数据以完成能量流模型的来源。

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