Year 2024,
Volume: 1 Issue: 2, 59 - 66, 17.01.2025
Fırat Tuna
,
Ahmet Numan Özakın
,
Abdüssamed Kabakuş
,
Gökhan Ömeroğlu
References
- Abuşka, M. (2018). Energy and exergy analysis of solar air heater having new design absorber plate with conical surface. Applied Thermal Engineering, 131, 115-124.
- Bazri, S., Badruddin, I. A., Naghavi, M. S., Seng, O. K., & Wongwises, S. (2019). An analytical and comparative study of the charging and discharging processes in a latent heat thermal storage tank for solar water heater system. Solar Energy, 185, 424-438.
- Boyaghchi, F. A., & Montazerinejad, H. (2016). Multi-objective optimisation of a novel combined cooling, heating and power system integrated with flat plate solar collectors using water/CuO nanofluid. International Journal of Exergy, 21(2), 202-238.
- Da Silva, F. A., Dezan, D. J., Pantaleao, A. V., & Salviano, L. O. (2019). Longitudinal vortex generator applied to heat transfer enhancement of a flat plate solar water heater. Applied Thermal Engineering, 158, 113790.
- Diego-Ayala, U., & Carrillo, J. G. (2016). Evaluation of temperature and efficiency in relation to mass flow on a solar flat plate collector in Mexico. Renewable Energy, 96, 756-764.
- García, A., Martin, R. H., & Pérez-García, J. (2013). Experimental study of heat transfer enhancement in a flat-plate solar water collector with wire-coil inserts. Applied Thermal Engineering, 61(2), 461-468.
- Jamar, A. M. Z. A. A., Majid, Z. A. A., Azmi, W. H., Norhafana, M., & Razak, A. A. (2016). A review of water heating system for solar energy applications. International Communications in Heat and Mass Transfer, 76, 178-187.
- Li, Q., Moya, W., Esfahani, I. J., Rashidi, J., & Yoo, C. (2017). Integration of reverse osmosis desalination with hybrid renewable energy sources and battery storage using electricity supply and demand-driven power pinch analysis. Process Safety and Environmental Protection, 111, 795-809.
- Michael, J. J., & Selvarasan, I. (2017). Economic analysis and environmental impact of flat plate roof mounted solar energy systems. Solar energy, 142, 159-170.
- Özakın, A. N., & Kaya, F. (2020). Experimental thermodynamic analysis of air-based PVT system using fins in different materials: Optimization of control parameters by Taguchi method and ANOVA. Solar Energy, 197, 199-211.
- Öztürk, A., Sönmez, F., & Kabakuş, A. (2024). Determination of optimum parameters using different nano fluids in heat pipe heat exchangers with response surface method. Chemical Engineering Communications, 211(5), 725-735.
- Pandey, K. M., & Chaurasiya, R. (2017). A review on analysis and development of solar flat plate collector. Renewable and Sustainable Energy Reviews, 67, 641-650.
- Said, Z., Saidur, R., & Rahim, N. A. (2016). Energy and exergy analysis of a flat plate solar collector using different sizes of aluminium oxide based nanofluid. Journal of cleaner production, 133, 518-530.
- Sandhu, G., Siddiqui, K., & Garcia, A. (2014). Experimental study on the combined effects of inclination angle and insert devices on the performance of a flat-plate solar collector. International Journal of Heat and Mass Transfer, 71, 251-263.
- Shojaeizadeh, E., & Veysi, F. (2016). Development of a correlation for parameter controlling using exergy efficiency optimization of an Al2O3/water nanofluid based flat-plate solar collector. Applied Thermal Engineering, 98, 1116-1129.
- Vengadesan, E., & Senthil, R. (2020). A review on recent development of thermal performance enhancement methods of flat plate solar water heater. Solar Energy, 206, 935-961.
- Wang, Y., Liu, P., Shan, F., Liu, Z., & Liu, W. (2019). Effect of longitudinal vortex generator on the heat transfer enhancement of a circular tube. Applied Thermal Engineering, 148, 1018-1028.
Effect of Rectangular Flow Elements and Different Fluids Used on Efficiency in High Emissivity Solar Collector
Year 2024,
Volume: 1 Issue: 2, 59 - 66, 17.01.2025
Fırat Tuna
,
Ahmet Numan Özakın
,
Abdüssamed Kabakuş
,
Gökhan Ömeroğlu
Abstract
This study investigates the effects of turbulators (1, 5 and 9 per tube in a spiral arrangement) and advanced matte black coatings that providing high emissivity (Black 2.0 and Black 3.0) on the thermal performance of flat plate solar water heater (FPSWH) systems. It also evaluates the effect of different heat transfer fluid (HTFs) (ethylene glycol, ammonia and water) at varying flow rates using ANSYS-Fluent software for simulation. An experimental design approach based on Response Surface Methodology (RSM) was used to optimize the system parameters for maximum efficiency. The findings highlight the importance of optimizing absorber plate designs, improving heat transfer mechanisms and integrating advanced materials to enhance FPSWH performance. The adoption of solar water heaters not only reduces dependence on fossil fuels but also aligns with global sustainability goals by reducing environmental impacts and addressing energy security concerns. As solar energy continues to dominate renewable energy applications, hybrid technologies and developments in FPSWH systems are critical to meet the growing global energy demand in a sustainable manner.
References
- Abuşka, M. (2018). Energy and exergy analysis of solar air heater having new design absorber plate with conical surface. Applied Thermal Engineering, 131, 115-124.
- Bazri, S., Badruddin, I. A., Naghavi, M. S., Seng, O. K., & Wongwises, S. (2019). An analytical and comparative study of the charging and discharging processes in a latent heat thermal storage tank for solar water heater system. Solar Energy, 185, 424-438.
- Boyaghchi, F. A., & Montazerinejad, H. (2016). Multi-objective optimisation of a novel combined cooling, heating and power system integrated with flat plate solar collectors using water/CuO nanofluid. International Journal of Exergy, 21(2), 202-238.
- Da Silva, F. A., Dezan, D. J., Pantaleao, A. V., & Salviano, L. O. (2019). Longitudinal vortex generator applied to heat transfer enhancement of a flat plate solar water heater. Applied Thermal Engineering, 158, 113790.
- Diego-Ayala, U., & Carrillo, J. G. (2016). Evaluation of temperature and efficiency in relation to mass flow on a solar flat plate collector in Mexico. Renewable Energy, 96, 756-764.
- García, A., Martin, R. H., & Pérez-García, J. (2013). Experimental study of heat transfer enhancement in a flat-plate solar water collector with wire-coil inserts. Applied Thermal Engineering, 61(2), 461-468.
- Jamar, A. M. Z. A. A., Majid, Z. A. A., Azmi, W. H., Norhafana, M., & Razak, A. A. (2016). A review of water heating system for solar energy applications. International Communications in Heat and Mass Transfer, 76, 178-187.
- Li, Q., Moya, W., Esfahani, I. J., Rashidi, J., & Yoo, C. (2017). Integration of reverse osmosis desalination with hybrid renewable energy sources and battery storage using electricity supply and demand-driven power pinch analysis. Process Safety and Environmental Protection, 111, 795-809.
- Michael, J. J., & Selvarasan, I. (2017). Economic analysis and environmental impact of flat plate roof mounted solar energy systems. Solar energy, 142, 159-170.
- Özakın, A. N., & Kaya, F. (2020). Experimental thermodynamic analysis of air-based PVT system using fins in different materials: Optimization of control parameters by Taguchi method and ANOVA. Solar Energy, 197, 199-211.
- Öztürk, A., Sönmez, F., & Kabakuş, A. (2024). Determination of optimum parameters using different nano fluids in heat pipe heat exchangers with response surface method. Chemical Engineering Communications, 211(5), 725-735.
- Pandey, K. M., & Chaurasiya, R. (2017). A review on analysis and development of solar flat plate collector. Renewable and Sustainable Energy Reviews, 67, 641-650.
- Said, Z., Saidur, R., & Rahim, N. A. (2016). Energy and exergy analysis of a flat plate solar collector using different sizes of aluminium oxide based nanofluid. Journal of cleaner production, 133, 518-530.
- Sandhu, G., Siddiqui, K., & Garcia, A. (2014). Experimental study on the combined effects of inclination angle and insert devices on the performance of a flat-plate solar collector. International Journal of Heat and Mass Transfer, 71, 251-263.
- Shojaeizadeh, E., & Veysi, F. (2016). Development of a correlation for parameter controlling using exergy efficiency optimization of an Al2O3/water nanofluid based flat-plate solar collector. Applied Thermal Engineering, 98, 1116-1129.
- Vengadesan, E., & Senthil, R. (2020). A review on recent development of thermal performance enhancement methods of flat plate solar water heater. Solar Energy, 206, 935-961.
- Wang, Y., Liu, P., Shan, F., Liu, Z., & Liu, W. (2019). Effect of longitudinal vortex generator on the heat transfer enhancement of a circular tube. Applied Thermal Engineering, 148, 1018-1028.