Araştırma Makalesi

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

Cilt: 11 Sayı: 1 27 Mart 2023
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DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE

Öz

In this study, the optimum fluid was determined by using Non-dominated Sorting Genetic Algorithm-II (NSGA-II) within the scope of Organic Rankine Cycles (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 (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 (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.

Anahtar Kelimeler

Kaynakça

  1. Agromayor, R., Lars O. N. 2017. “Fluid Selection and Thermodynamic Optimization of Organic Rankine Cycles for Waste Heat Recovery Applications.” Energy Procedia 129. Elsevier B.V.: 527–34.
  2. Andreasen, J. G., U. Larsen, T. Knudsen, and F. Haglind. 2015. “Design and Optimization of a Novel Organic Rankine Cycle with Improved Boiling Process.” Energy 91. Elsevier Ltd: 48–59.
  3. Andreasen, J. G., Larsen U., Knudsen T., Pierobon L., and Haglind F. 2014. “Selection and Optimization of Pure and Mixed Working Fluids for Low Grade Heat Utilization Using Organic Rankine Cycles.” Energy 73. Elsevier Ltd: 204–13.
  4. Behzadi, A., Ehsan G., Ehsan H., and Ali H. 2018. “Multi-Objective Optimization and Exergoeconomic Analysis of Waste Heat Recovery from Tehran’s Waste-to-Energy Plant Integrated with an ORC Unit.” Energy 160. Elsevier B.V.: 1055–68.
  5. Bian, S., Teng W., Jin F. Y. 2014. “Parametric Optimization of Organic Rankine Cycle by Genetic Algorithm.” Applied Mechanics and Materials 672–674: 741–45.
  6. Boyaghchi, F. A., Mansoure C., Vajiheh S. 2015. “Optimization of a Novel Combined Cooling, Heating and Power Cycle Driven by Geothermal and Solar Energies Using the Water/CuO (Copper Oxide) Nanofluid.” Energy 91. Elsevier Ltd: 685–99.
  7. Calm, James M., and Glenn C. Hourahan. 2007. “Refrigerant Data Update.” HPAC Heating, Piping, AirConditioning Engineering 79 (1): 50–64.
  8. Donateo, T., Fazio A. 2014. “A Numerical Procedure for the Preliminary Design of a ORC Power Plants with Positive Displacement Expanders.” WSEAS Transactions on Environment and Development 10 (January 2014): 186–96.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Makine Mühendisliği

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

27 Mart 2023

Gönderilme Tarihi

17 Ekim 2021

Kabul Tarihi

2 Aralık 2022

Yayımlandığı Sayı

Yıl 2023 Cilt: 11 Sayı: 1

Kaynak Göster

APA
Ata, S., Kahraman, A., & Şahin, R. (2023). DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE. Mühendislik Bilimleri ve Tasarım Dergisi, 11(1), 310-323. https://doi.org/10.21923/jesd.1011171
AMA
1.Ata S, Kahraman A, Şahin R. DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE. MBTD. 2023;11(1):310-323. doi:10.21923/jesd.1011171
Chicago
Ata, Sadık, Ali Kahraman, ve Remzi Şahin. 2023. “DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE”. Mühendislik Bilimleri ve Tasarım Dergisi 11 (1): 310-23. https://doi.org/10.21923/jesd.1011171.
EndNote
Ata S, Kahraman A, Şahin R (01 Mart 2023) DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE. Mühendislik Bilimleri ve Tasarım Dergisi 11 1 310–323.
IEEE
[1]S. Ata, A. Kahraman, ve R. Şahin, “DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE”, MBTD, c. 11, sy 1, ss. 310–323, Mar. 2023, doi: 10.21923/jesd.1011171.
ISNAD
Ata, Sadık - Kahraman, Ali - Şahin, Remzi. “DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE”. Mühendislik Bilimleri ve Tasarım Dergisi 11/1 (01 Mart 2023): 310-323. https://doi.org/10.21923/jesd.1011171.
JAMA
1.Ata S, Kahraman A, Şahin R. DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE. MBTD. 2023;11:310–323.
MLA
Ata, Sadık, vd. “DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE”. Mühendislik Bilimleri ve Tasarım Dergisi, c. 11, sy 1, Mart 2023, ss. 310-23, doi:10.21923/jesd.1011171.
Vancouver
1.Sadık Ata, Ali Kahraman, Remzi Şahin. DETERMINATION OF OPTIMUM FLUID FOR DIFFERENT HEAT SOURCE TEMPERATURES BASED ON MULTI-OBJECTIVE FUNCTIONS IN THE ORGANIC RANKİNE CYCLE. MBTD. 01 Mart 2023;11(1):310-23. doi:10.21923/jesd.1011171