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首页> 外文期刊>Renewable & Sustainable Energy Reviews >Multi-objective optimization of parameters affecting Organic Rankine Cycle performance characteristics with Taguchi-Grey Relational Analysis
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Multi-objective optimization of parameters affecting Organic Rankine Cycle performance characteristics with Taguchi-Grey Relational Analysis

机译:Taguchi-Grey关联分析法对影响有机朗肯循环性能特征的参数进行多目标优化

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In the literature, energetic and exergetic performance of Organic Rankine Cycle (ORC) were investigated by various researchers. The working parameters affecting the cycle's performance were determined but the impact weights and the order of importance of these parameters were not discussed with a statistical approach. In this context, nine fundamental process parameters such as working fluid type, pinch point temperature differences in the evaporator and condenser, superheating temperature, evaporation and condensation temperatures, heat exchanger effectiveness, turbine and pump efficiencies have been selected for the statistical evaluation. A comprehensive statistical analysis has been carried out to observe the effect of the parameters on the first and second law efficiencies of the ORC. The impact ratios and order of importance of these parameters on the system's performance indicators have been determined. While Taguchi method is performed to determine the optimum levels of each parameter, ANOVA method is used to obtain the impact weights of the parameters on objective functions. In addition to these methods, Grey Relational Analysis (GRA) method is used to optimize the multi-objective function. Evaporator temperature, turbine efficiency, effectiveness of heat exchanger, condenser temperature are obtained as main process parameters on the multiple performance characteristics of ORC and the impact ratios of these parameters are calculated as 31.37%, 19.53%, 16.64%, and 16.61%, respectively. The best condition for the multiple performance characteristics is determined as A(1)B(1)C(3)D(3)E(3)F(3)G(1)H(3)I(3) and under these operating conditions, the first and second law efficiencies of the system are found as 18.1% and 65.52%, respectively.
机译:在文献中,有机朗肯循环(ORC)的能量和能量表现已由许多研究人员进行了研究。确定了影响循环性能的工作参数,但未使用统计方法讨论影响权重和这些参数的重要性顺序。在此背景下,已选择了九种基本过程参数,例如工作流体类型,蒸发器和冷凝器中的夹点温度差,过热温度,蒸发和冷凝温度,热交换器效率,涡轮机和泵效率,以进行统计评估。进行了全面的统计分析,以观察参数对ORC第一定律和第二定律效率的影响。确定了这些参数对系统性能指标的影响比率和重要性顺序。在使用Taguchi方法确定每个参数的最佳水平时,使用ANOVA方法获得参数对目标函数的影响权重。除了这些方法之外,还使用灰色关联分析(GRA)方法来优化多目标函数。获得了蒸发器温度,涡轮效率,换热器效率,冷凝器温度作为ORC多重性能特征的主要工艺参数,这些参数的影响率分别计算为31.37%,19.53%,16.64%和16.61%。 。确定多种性能特征的最佳条件为A(1)B(1)C(3)D(3)E(3)F(3)G(1)H(3)I(3)在运行条件下,系统的第一定律效率和第二定律效率分别为18.1%和65.52%。

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