Investigation of energy efficiency strategies in production processes based on operational management

IF 1 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES
M. Ziya Sogut, T. Hikmet Karakoc
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引用次数: 1

Abstract

This study, investigates the energy efficiency potential of a cement production process based on the operational control approach, which has been developed. In this context, indicators that concern consumption of specific energy users were defined and limit values were determined. Accordingly, energy efficiency potential was found to be 3.5% depending on the control of 122 operational parameters. When the consumption loads of the enterprise are taken into account, the annual savings potential was found to be 4.5 GWh/year of heat energy and 39 GWh/year of electricity. These processes indicated a total of 10,334.99 tons of CO2 per year. At the end of the study, the contribution of the developed approach to the energy management processes was evaluated. In this respect, in cement production, mill inlet temperatures, secondary temperature, and main drive power emerge as the main operational indicators for energy efficiency for raw mills, rotary kiln, and cement mills, respectively.
基于运营管理的生产过程能效策略研究
本研究探讨了基于已开发的操作控制方法的水泥生产过程的能源效率潜力。在这方面,确定了与特定能源使用者的消费有关的指标,并确定了极限值。因此,根据对122个操作参数的控制,发现能源效率潜力为3.5%。当考虑到企业的消费负荷时,发现年节约潜力为4.5 GWh/年的热能和39 GWh/年的电力。这些过程表明,每年总共产生10 334.99吨二氧化碳。在研究结束时,对开发的方法对能源管理过程的贡献进行了评估。因此,在水泥生产中,磨机入口温度、二次温度和主驱动功率分别成为生料磨、回转窑和水泥磨能效的主要运行指标。
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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来源期刊
International Journal of Global Warming
International Journal of Global Warming ENVIRONMENTAL SCIENCES-
CiteScore
1.80
自引率
11.10%
发文量
86
审稿时长
6 months
期刊介绍: IJGW aims to bring all disciplines together for local/global solutions to combat global warming and its consequences. It focuses around nine main pillars: better remediation, avoidance, efficiency, cost effectiveness, design, resource utilisation, environmental quality, energy security, and sustainable development. It also address issues related to global changes as a direct/indirect result of climate modification and strategies for adaptation to such changes. IJGW covers disciplines as diverse as engineering, climate science, ecology, economics, education, management, information sciences, politics, strategy development, etc.
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