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Utilisation of a compressed air test bed to assess the effects of pneumatic parameters on energy consumption

机译:用压缩空气试验床的利用来评估气动参数对能量消耗的影响

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In the manufacturing industry, pneumatic powered components provide a safe and reliable opportunity to automate a production line. However, compressed air systems are notoriously expensive to operate as a result of system losses and inefficiencies. Typical systems have an output efficiency of 10-12%. This offers a significant improvement opportunity to meet sustainable targets concerning energy consumption in industry and lower life cycle energy impacts. Amongst various inefficiencies, leakages and excessive pressures are identified as some of the most common sources of waste. The scope of this study was to make use of a compressed air system which was designed in the form an experimental test bed in order to assess the sustainability impact of various compressed air shortcomings. Simulations were carried out under experimental conditions to measure the additional energy consumption and air volume required for different pneumatic scenarios. Some of the results showed that a noise level of 70 dB is attributable to a leakage of 1.5 mm at the industry standard of 6 bar. Such a single leak could incur more than {EUR}470 of additional electrical costs and would result in 1.8 tonnes of additional carbon dioxide emissions within one year of operation, highlighting a significant effect on the life cycle impacts of industrial production.
机译:在制造业中,气动动力部件提供了一种安全可靠的自动化生产线的机会。然而,由于系统损失和效率低下,压缩空气系统难以操作昂贵。典型系统的输出效率为10-12%。这提供了一个重要的改进机会,以满足行业能源消耗的可持续目标和降低生命周期能源影响。在各种效率低下,泄漏和过度压力被确定为一些最常见的废物来源。本研究的范围是利用压缩空气系统,该压缩空气系统由实验试验床设计,以评估各种压缩空气缺点的可持续性影响。在实验条件下进行模拟,以测量不同气动场景所需的额外能耗和空气量。一些结果表明,70 dB的噪声水平可归因于6巴的行业标准的1.5毫米的泄漏。这样的单一泄漏可能会产生超过额外电力成本的超过(EUR} 470,并将导致运营一年内的1.8吨额外的二氧化碳排放量,突出了对工业生产生命周期影响的显着影响。

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