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EBenchmark - a Pioneering Method for Process Planning and Sustainable Manufacturing Strategies

机译:E 基准 - 一种过程规划和可持续制造策略的开拓方法

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This paper introduces a method for the assessment and evaluation of energy efficiency of the manufacturing processes in the production. A directive for energy efficiency benchmarking has already been published, however, due to its lack of defined energy indicators, it does not allow for a significant comparison. In a preliminary step, 120 currently used energy indicators were examined to assess their suitability as an energy benchmark. Based thereon, three approaches for the assessment of energy efficiency of the manufacturing processes in the production as well as a method for transferring the system by means of relevant indicators at the sectorial and corporate levels were developed. In the following, the approach of "minimal value calculation," which was identified as being the most advantageous, is presented in detail. The basic idea is the comparison and evaluation of energy efficiency based on the ratio of the theoretically required energy consumption to the actual energy consumption. Depending on the analysis of influencing factors, a model highlighting their dependencies could be established. The developed system hinges on a successive calculation of the minimum value. Each of these minimum types can be put in relation to the measured energy consumption, however, depending on the chosen basis, the conclusion and focus of the calculated key figure may vary. By using the material minimum as a basis, the actually existing energy savings become visible. The method will be put to test through an exemplary application for processes in the fields of electronics production, electrical engineering, and production machining. This course of action allows the validation of the developed approach and reveals the potential of this method.
机译:本文介绍了一种评估和评估生产过程中的能源效率的方法。然而,由于其缺乏明确的能量指标,已经发布了能效基准的指令,因此它不允许进行显着的比较。在初步步骤中,预先检查120个目前使用的能源指标,以评估其作为能量基准的适用性。基于其在其上,制定了三种方法,用于评估生产过程中的制造过程的能源效率以及通过在森科特和企业水平的相关指标转移系统的方法。在下文中,详细介绍了被识别为最有利的“最小值计算”的方法。基本思想是基于理论所需的能耗与实际能耗的比率进行比较和评估能量效率。根据影响因素的分析,可以建立一个突出其依赖性的模型。开发系统铰接在连续计算最小值。这些最小类型中的每一个可以与测量的能量消耗相关,然而,根据所选择的基础,计算的关键图的结论和焦点可能会有所不同。通过使用最小值作为基础,实际存在的节能变得可见。该方法将通过用于电子生产,电气工程和生产加工领域的方法的示例性应用来进行测试。本课程允许验证开发方法并揭示这种方法的潜力。

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