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Linking energy efficiency measures in industrial compressed air systems with non-energy benefits - A review

机译:将工业压缩空气系统中的节能措施与非能源效益联系起来-评论

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Compressed air is widely used in supporting industrial manufacturing processes due to its cleanness, practicality and ease of use. However, the efficiency of compressed air systems is often very low. Typically, for compressed air-driven tools only 10-15% of the energy input is utilised as useful work. Despite these recognised inefficiencies, and even though energy efficiency measures for compressed air systems normally offer several opportunities for energy savings and energy cost savings, generally, less attention has been given to the energy use and energy costs incurred in compressed air systems. Industrial energy efficiency measures might also yield additional effects, beyond the energy savings, which are denoted as non-energy benefits. This study reviews the existing base of scientific knowledge on energy efficiency in compressed air systems combined with the perspective of non-energy benefits. Even though some measures were mentioned more frequent than others, the results revealed significant variation in which measures could be undertaken to improve energy efficiency in compressed air systems. However, few publications employ a comprehensive approach by examining the entire compressed air system. Furthermore, few publications have addressed the possible additional benefits to be gained from energy efficiency measures in compressed air systems. This study provides a compilation of the various energy efficiency measures reported in the reviewed scientific literature that can be undertaken in order to improve energy efficiency in compressed air systems. It also provides a comprehensive take on the measures, including a systems perspective, by categorising them in respect to where in the compressed air system they can be undertaken. This paper suggests that energy efficiency measures in compressed air systems, and related non-energy benefits, should be studied on a specific measure level to fully understand and acknowledge their effects on the energy use of a compressed air system and possible additional effects, i.e. non-energy benefits.
机译:压缩空气由于其清洁,实用和易于使用而广泛用于支持工业制造过程。但是,压缩空气系统的效率通常非常低。通常,对于压缩空气驱动的工具,只有10-15%的能量输入被用作有用功。尽管存在这些公认的低效率,尽管压缩空气系统的节能措施通常为节能和节约能源成本提供了一些机会,但总体上,人们对压缩空气系统的能源使用和能源成本的关注较少。工业节能措施可能还会产生除节能以外的其他影响,这被称为非能源效益。这项研究结合了非能源效益的观点,回顾了有关压缩空气系统能源效率的现有科学知识基础。尽管提到的某些措施比其他措施更频繁,但结果表明,可以采取哪些措施来提高压缩空气系统的能效的方法存在很大差异。但是,很少有出版物通过检查整个压缩空气系统来采用综合方法。此外,很少有出版物谈到从压缩空气系统的节能措施中可能获得的额外好处。这项研究汇总了已审查的科学文献中报告的各种能效措施,可以采取这些措施来提高压缩空气系统的能效。它还根据可在压缩空气系统中的位置对这些措施进行分类,从而对这些措施(包括系统角度)进行了全面的评估。本文建议应在特定的措施水平上研究压缩空气系统的能效措施以及相关的非能源效益,以充分了解和认识到其对压缩空气系统能源使用的影响以及可能的附加影响,即非能源效益。

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