Research Article

THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM

Volume: 7 Number: 4 May 1, 2021
  • Sajjad Keykhah
  • Ehsanolah Assareh
  • Rahim Moltames *
  • Abbas Taghipour
  • Hasan Barati
EN

THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM

Abstract

This study aims to investigate the hydrogen production process using an integrated system based on solar energy. This system includes an evacuated tube collector to absorb solar energy as input energy of the system. A parametric analysis was conducted to determine the most important design parameters and evaluate these parameters' impact on the system's objective functions. For identifying the optimum system conditions, multi-objective optimization was performed using particle swarm optimization (PSO) algorithm. The results obtained from the parametric analysis show that an increment in the collector mass flow rate and the turbine inlet temperature, as well as a decrement in the collector area and the evaporator inlet temperature, results in improving the system exergy efficiency. Furthermore, the optimization results demonstrate that the exergy efficiency of the system can be improved from 1% to 3.5%; however, this enhancement in exergy efficiency of the system leads to increase the system costs from 20$/h to 26$/h, both at optimum states. At the optimum point, the average values for other performance parameters affecting the objective function including total output power production, cooling capacity, and hydrogen production rate are obtained as 24.24 kW, 47.07 kW, and 218.56 g/s, respectively.

Keywords

References

  1. [1] Luminosu, I., and Fara, L. (2005). Determination of the optimal operation mode of a flat solar collector by exergetic analysis and numerical simulation. Energy, 30, 731–747
  2. [2] Syed, A., Izquierdo, M., Rodrígueze, P., Maidment, G., Missenden, J., Lecuona, A., Tozer, R. (2005). A novel experimental investigation of a solar cooling system in Madrid. International Journal of Refrigeration, 28, 859–871
  3. [3] Sahoo, P. K. (2008). Exergoeconomic analysis and optimization of a cogeneration system using evolutionary programming. Applied Thermal Engineering, 28, 1580–1588
  4. [4] Yamada, N., Hoshi, A., and Ikegami, Y. (2009). Performance simulation of solar-boosted ocean thermal energy conversion plant. Energy, 34, 1752–1758, Jul. 2009.
  5. [5] Mateus, T. and Oliveira, A. C. (2009). Energy and economic analysis of an integrated solar absorption cooling and heating system in different building types and climates. Applied Energy, 86, 949–957
  6. [6] Molero-Villar, N., Cejudo-López, J. M., Domínguez-Muñoz, F., and Carrillo-Andrés, A. (2012). A comparison of solar absorption system configurations. Solar Energy, 86, 242–252
  7. [7] Wang, J., Zhao, P., Niu, X., and Dai, Y. (2012). Parametric analysis of a new combined cooling, heating and power system with transcritical CO2 driven by solar energy. Applied Energy, 94, 58–64
  8. [8] Ahmadi, P., Dincer, I., and Rosen, M. A. (2013). Energy and exergy analyses of hydrogen production via solar-boosted ocean thermal energy conversion and PEM electrolysis. International Journal of Hydrogen Energy, 38,1795–1805

Details

Primary Language

English

Subjects

Engineering

Journal Section

Research Article

Publication Date

May 1, 2021

Submission Date

March 28, 2019

Acceptance Date

June 24, 2019

Published in Issue

Year 2021 Volume: 7 Number: 4

APA
Keykhah, S., Assareh, E., Moltames, R., Taghipour, A., & Barati, H. (2021). THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM. Journal of Thermal Engineering, 7(4), 746-760. https://doi.org/10.18186/thermal.915413
AMA
1.Keykhah S, Assareh E, Moltames R, Taghipour A, Barati H. THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM. Journal of Thermal Engineering. 2021;7(4):746-760. doi:10.18186/thermal.915413
Chicago
Keykhah, Sajjad, Ehsanolah Assareh, Rahim Moltames, Abbas Taghipour, and Hasan Barati. 2021. “THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM”. Journal of Thermal Engineering 7 (4): 746-60. https://doi.org/10.18186/thermal.915413.
EndNote
Keykhah S, Assareh E, Moltames R, Taghipour A, Barati H (May 1, 2021) THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM. Journal of Thermal Engineering 7 4 746–760.
IEEE
[1]S. Keykhah, E. Assareh, R. Moltames, A. Taghipour, and H. Barati, “THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM”, Journal of Thermal Engineering, vol. 7, no. 4, pp. 746–760, May 2021, doi: 10.18186/thermal.915413.
ISNAD
Keykhah, Sajjad - Assareh, Ehsanolah - Moltames, Rahim - Taghipour, Abbas - Barati, Hasan. “THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM”. Journal of Thermal Engineering 7/4 (May 1, 2021): 746-760. https://doi.org/10.18186/thermal.915413.
JAMA
1.Keykhah S, Assareh E, Moltames R, Taghipour A, Barati H. THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM. Journal of Thermal Engineering. 2021;7:746–760.
MLA
Keykhah, Sajjad, et al. “THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM”. Journal of Thermal Engineering, vol. 7, no. 4, May 2021, pp. 746-60, doi:10.18186/thermal.915413.
Vancouver
1.Sajjad Keykhah, Ehsanolah Assareh, Rahim Moltames, Abbas Taghipour, Hasan Barati. THERMOECONOMIC ANALYSIS AND MULTI-OBJECTIVE OPTIMIZATION OF AN INTEGRATED SOLAR SYSTEM FOR HYDROGEN PRODUCTION USING PARTICLE SWARM OPTIMIZATION ALGORITHM. Journal of Thermal Engineering. 2021 May 1;7(4):746-60. doi:10.18186/thermal.915413

Cited By

IMPORTANT NOTE: JOURNAL SUBMISSION LINK http://eds.yildiz.edu.tr/journal-of-thermal-engineering