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An integrated approach based on Life Cycle Assessment and Thermoeconomics: Application to a water-cooled chiller for an air conditioning plant

机译:基于生命周期评估和热经济学的综合方法:在空调厂的水冷式冷却器中的应用

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A large number of methods for energy systems analysis were developed in the last decades, aimed at acquiring an in-depth understanding of plant performances and enabling analysts to identify optimal design and operating conditions. In this work an integrated approach based on Life Cycle Assessment and Thermoeconomics is proposed as a method for assessing the exergo-environmental profile of energy systems. The procedure combines the capabilities of these two techniques, to account simultaneously for aspects related to thermodynamics of energy conversion processes and to the overall impacts along the plant life cycle related to other phases, i.e. from raw material extraction to the disposal of facilities. The capabilities of the method are illustrated by applying it to a water-cooled vapor compression chiller. After developing an accurate analysis of plant design and bill of materials of the chiller, the exergo-environmental profile was obtained. Then, the method was used as a decision support tool by considering a number of scenarios concerning possible design alternatives, context conditions and levels of maintenance. Results showed that the exergo-environmental performance of the chiller is highly sensitive to the electricity generation mix, which influences the trade-offs between the energo-environmental impacts related with plant operation and construction. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在过去的几十年中,开发了许多用于能源系统分析的方法,目的是获得对电厂性能的深入了解,并使分析人员能够确定最佳的设计和运行条件。在这项工作中,提出了一种基于生命周期评估和热经济学的综合方法,作为一种评估能源系统的能效-环境特征的方法。该程序结合了这两种技术的功能,可以同时考虑与能量转换过程的热力学有关的方面,以及与其他阶段(即从原材料提取到设施处置)有关的整个工厂生命周期中的总体影响。通过将其应用于水冷式蒸气压缩冷却器来说明该方法的功能。在对冷水机的工厂设计和物料清单进行了准确的分析后,得出了其能动环境信息。然后,通过考虑有关可能的设计替代方案,环境条件和维护级别的多种方案,将该方法用作决策支持工具。结果表明,冷水机组的能效环境性能对发电结构高度敏感,这会影响与电厂运营和建设相关的能效环境影响之间的权衡。 (C)2018 Elsevier Ltd.保留所有权利。

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