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Quantitative Analysis of Carbon Emissions in Precision Turning Processes and Industrial Case Study

机译:精密转型过程中碳排放量分析及工业案例研究

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摘要

With growing concerns regarding the global environment, the industrial sector has played a significant role; that is, it is responsible for consuming large amount of energy and resources, while simultaneously producing wastes and carbon dioxide. A quantitative calculation of carbon emission in the turning process is presented in this paper. A generic carbon emission system boundary based on exergy balance is proposed first to avoid blurred system boundaries or the omission of elements. Then, a carbon emission model (iERWC) is formed by converting energy consumption (E), resource depletion (R) and waste generation (W) to equivalent carbon emissions (C) based on information flow (i), which effectively solves the problem of quantifying the impact of the machining process on the environment. Finally, the model is verified by experiments, and a simulation analysis is carried out. Additionally, the influence rule of processing parameters on carbon emissions is analyzed, and the cutting parameter that produces the lowest carbon emission is given.
机译:随着对全球环境的担忧,工业部门发挥了重要作用;也就是说,它负责消耗大量的能量和资源,同时产生废物和二氧化碳。本文介绍了转动过程中碳排放的定量计算。首先提出了一种基于Deergy余额的通用碳排放系统边界,以避免模糊的系统边界或遗漏元素。然后,通过将能量消耗(e),资源耗尽(r)和废物产生(c)转换为基于信息流(i)来形成碳发射模型(IerWC),从而有效解决问题量化加工过程对环境的影响。最后,通过实验验证模型,进行了模拟分析。另外,分析了处理参数的影响规律,并给出了产生最低碳排放的切割参数。

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