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Optimal Refrigerant by Integrated Operational and Environmental Criteria in Air Conditioner

机译:综合运行和环境标准的空调最佳制冷剂

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The study provides a developed methodology by aiding Analytical Hierarchy Process (AHP) to select a robust decision process for integration of environment, operation and maintenance. The developed methodology is a new process of selecting refrigerant with high efficiency performance and lowest impact on environment in AC system under high condensing temperatures (up to 55°C) for R22, R290, R404A and R410A. This will improve its operational performance through increasing the level of application of the international standards for performance and environment together. The methodological model provides three phases; decision of design phase, decision of management phase and decision phase. The goal of the study is to integrate of those decisions to reach for robust design by optimal design of products by focusing on three main sets of tools: simulation, optimization and multi-objective analysis. The model is based on two main criteria of air-condition system, quantitative criteria (operation) and qualitative (environment and maintenance) criteria. The results obtained from the AHP are that the best rank of the refrigerants was R404A (0.3763) followed by R22 (0.3657) for the other refrigerants and so on. Therefore, the developed model can help the decision maker selecting the best refrigerants for both criteria (qualitative and quantitative) in complex selecting process.
机译:这项研究通过辅助层次分析法(AHP)来为环境,操作和维护的集成选择一个可靠的决策过程,从而提供了一种发达的方法论。所开发的方法是在R22,R290,R404A和R410A的高冷凝温度(最高55°C)下选择具有高效能且对交流系统的环境影响最小的制冷剂的新工艺。通过共同提高绩效和环境国际标准的应用水平,这将改善其运营绩效。该方法模型提供了三个阶段。设计阶段的决策,管理阶段的决策和决策阶段的决策。该研究的目标是通过专注于三大工具集:仿真,优化和多目标分析,整合这些决策,从而通过产品的最佳设计来实现稳健的设计。该模型基于空调系统的两个主要标准,即定量标准(运行)和定性(环境和维护)标准。从AHP获得的结果是,最好的制冷剂等级是R404A(0.3763),其次是其他制冷剂的R22(0.3657),依此类推。因此,开发的模型可以帮助决策者在复杂的选择过程中为标准(定性和定量)选择最佳制冷剂。

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