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Optimal design of cogeneration system based on exergoenvironmental analysis

机译:基于运行环境分析的热电联产系统优化设计

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摘要

In this article, a new procedure was introduced for the optimal design of utility system in process industries. This method was based on the development of the R-curve concept and a new cogeneration targeting through estimating costs, environmental impacts, exergoeconomic, and exergoenvironmental analyses. In the exergoenvironmental analysis, the environmental impacts obtained by life cycle assessment are apportioned to the exergy streams pointing out the main system components with the highest environmental impact and possible improvements associated with these components. Moreover, exergoenvironmental variables are calculated, and an exergoenvironmental evaluation is carried out. In this regard, correlations for estimating the environmental impacts of cogeneration system have been introduced. In addition, the powerful and accurate cogeneration targeting method was applied. Also, the new graphic representations have been proposed. These curves are based on cost estimation, environmental impacts, and exergoenvironmental analysis. In addition, the optimal design of site utility was carried out in Iran LNG cogeneration plant, in which the usefulness of this method was clearly demonstrated.
机译:本文介绍了一种新的过程,用于过程工业中公用事业系统的优化设计。该方法基于R曲线概念的发展以及通过估算成本,环境影响,能效经济和能效环境分析而确定的新的热电联产。在能环境分析中,通过生命周期评估获得的环境影响被分摊到火用能流中,指出了对环境影响最大的主要系统组件以及与这些组件相关的可能的改进。此外,计算出环境环境变量,并进行了环境环境评价。在这方面,已经引入了用于估计热电联产系统的环境影响的相关性。此外,还应用了功能强大且准确的热电联产靶向方法。而且,已经提出了新的图形表示。这些曲线基于成本估算,环境影响和环境评估。此外,在伊朗LNG热电联产厂中进行了场地实用性的优化设计,清楚地证明了该方法的有效性。

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