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  • Mühendislik Bilimleri ve Tasarım Dergisi
  • Volume:11 Issue:1
  • DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCT...

DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE

Authors : Sadık ATA, Ali KAHRAMAN, Remzi ŞAHİN
Pages : 310-323
Doi:10.21923/jesd.1011171
View : 19 | Download : 11
Publication Date : 2023-03-27
Article Type : Research Paper
Abstract :In this study, the optimum fluid was determined by using Non-dominated Sorting Genetic Algorithm-II insert ignore into journalissuearticles values(NSGA-II); within the scope of Organic Rankine Cycles insert ignore into journalissuearticles values(ORC); low temperature applications. Heat source temperatures are taken as 90, 100 and 110 °C. Fluid optimization was performed by comparing the performance of 8 fluids from 4 different categories under different criteria insert ignore into journalissuearticles values(dry-R601 and R601a, isentropic-R141b and R123, wet-R152a and R134a, new generations-R1234yf and R1234ze);. Objective functions have been established under the parameters of Energy, Exergy, Economy and Environment insert ignore into journalissuearticles values(4E);. In ORC systems, every organic fluid has certain advantages and disadvantages. It is seen that the studies on organic fluid selection meet a single goal from the system performance parameters. However, it has been observed that the turbine power performance is not at the desired level due to the required evaporator capacity of the fluid, which performs well in terms of thermal efficiency in ORC systems. Therefore, it is necessary to determine the percentage of organic fluid that can be used by optimizing it under different objective functions. In this study, the optimum fluid was determined for ORCs operating under 90, 100 and 110 °C heat source temperatures by evaluating different objective functions together.
Keywords : Genetik Algoritma, Çok Amaçlı, Organik Rankine Çevrimi, Optimum Akışkan, Termodinamik Optimizasyon

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