Research Article

OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS

Volume: 6 Number: 3 April 1, 2020
  • M. Lotfihejrandoost
  • A. Behbahanı
  • Mehdi Ehyaei *
EN

OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS

Abstract

The current study aimed at investigation of the Variable Refrigerant Flow (VRF). Energy, exergy, and economic model for R11, R22, and R134a refrigerants. The genetic algorithm was used for optimization of the cycle. The objective functions in the current study were the second law efficiency and cooling cost. The cooling cost was a new economic function that was defined in this paper for the first time. Results showed that the highest Coefficient of Performance (COP) and second law’s efficiency as well as the lowest cooling cost and exergy loss belonged to the refrigerant R134a, and second and third to it were R11 and R22. The optimum values of condenser pressure and evaporators 1, 2, and 3 for the refrigerant R134a were 799.7, 706.2, 925.2, and 23122 (kPa), and the mass discharge of the evaporators 1 and 2, was 0.1 and 0.072 (kg/s).

Keywords

References

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Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Authors

M. Lotfihejrandoost This is me
Iran

A. Behbahanı This is me
Iran

Publication Date

April 1, 2020

Submission Date

April 8, 2018

Acceptance Date

May 25, 2018

Published in Issue

Year 2020 Volume: 6 Number: 3

APA
Lotfihejrandoost, M., Behbahanı, A., & Ehyaei, M. (2020). OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS. Journal of Thermal Engineering, 6(3), 381-404. https://doi.org/10.18186/thermal.712617
AMA
1.Lotfihejrandoost M, Behbahanı A, Ehyaei M. OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS. Journal of Thermal Engineering. 2020;6(3):381-404. doi:10.18186/thermal.712617
Chicago
Lotfihejrandoost, M., A. Behbahanı, and Mehdi Ehyaei. 2020. “OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS”. Journal of Thermal Engineering 6 (3): 381-404. https://doi.org/10.18186/thermal.712617.
EndNote
Lotfihejrandoost M, Behbahanı A, Ehyaei M (April 1, 2020) OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS. Journal of Thermal Engineering 6 3 381–404.
IEEE
[1]M. Lotfihejrandoost, A. Behbahanı, and M. Ehyaei, “OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS”, Journal of Thermal Engineering, vol. 6, no. 3, pp. 381–404, Apr. 2020, doi: 10.18186/thermal.712617.
ISNAD
Lotfihejrandoost, M. - Behbahanı, A. - Ehyaei, Mehdi. “OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS”. Journal of Thermal Engineering 6/3 (April 1, 2020): 381-404. https://doi.org/10.18186/thermal.712617.
JAMA
1.Lotfihejrandoost M, Behbahanı A, Ehyaei M. OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS. Journal of Thermal Engineering. 2020;6:381–404.
MLA
Lotfihejrandoost, M., et al. “OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS”. Journal of Thermal Engineering, vol. 6, no. 3, Apr. 2020, pp. 381-04, doi:10.18186/thermal.712617.
Vancouver
1.M. Lotfihejrandoost, A. Behbahanı, Mehdi Ehyaei. OPTIMIZATION OF THE VARIABLE REFRIGERANT FLOW SYSTEMS BY USE OF GENETIC ALGORITHM AND ENERGY, EXERGY, AND ECONOMIC ANALYSIS FOR THREE COOLANT FLUIDS. Journal of Thermal Engineering. 2020 Apr. 1;6(3):381-404. doi:10.18186/thermal.712617

Cited By

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