Comparative analyses of solar photovoltaic, wind turbine, and solar photovoltaic and wind turbine hybrid systems: Case study of Thailand

被引:5
作者
Komrit, Sirajitr [1 ]
Zabihian, Farshid [1 ]
机构
[1] Calif State Univ, Sacramento, CA 95819 USA
关键词
RENEWABLE ENERGY; PERFORMANCE; GENERATION; CHALLENGES; RADIATION;
D O I
10.1016/j.enconman.2023.117479
中图分类号
O414.1 [热力学];
学科分类号
摘要
Thailand is rapidly moving toward sustainable electricity generation by employing renewable energy systems, particularly solar photovoltaic systems and wind turbines. While various aspects of renewable energy resources in Thailand have been represented in the literature, the modeling of renewable energy systems, particularly hybrid solar photovoltaic and wind energy systems, have rarely been studied. To cover this gap, four renewable energy modeling tools, SAM, PVsyst, HOMER, and RETScreen, were used to model solar photovoltaic systems (PVS), wind turbine systems (WTS), and solar photovoltaic-wind turbine hybrid systems (PVWHS) for residential applications in Thailand. The developed models were validated to ensure their accuracy by comparing the estimated annual electricity generation to the actual energy yield from the real systems. The PVS modeling results from SAM, PVsyst, HOMER, and RETScreen contained errors of 3.6, 6.9, 5.5, and-3.9%, respectively. The WTS modeling results from HOMER and RETScreen had 15.7% and 18.1% deviations from the real system, respectively. The simulation results show that a 6.6 kW PVS is the most economical system in Chaiyaphum with high solar irradiance whereas a PVWHS (6.05 PVS and 1 kW WTS) is the best system in Sa Kaeo with a high wind speed and average solar irradiance. The PVS, WTS, and PVWHS simulations were also performed in seven different regions across Thailand; Chanthaburi, Nakhon Si Thammarat, Kanchanaburi, Ubon Ratchathani, Samutprakan, Chiang Rai, and Maha Sarakham. It was found that only Chanthaburi with a 7.7 m/s average wind speed is suitable to install PVWHS while PVS is the most economical system for the rest of the locations. A sensitivity analysis was conducted to create a diagram that can help to identify the most economically suitable system with respect to solar irradiance and wind speed. The results indicate that PVWHS is a viable option for some regions in Thailand.
引用
收藏
页数:9
相关论文
共 50 条
[41]   Optimizing limited solar roof access by exergy analysis of solar thermal, photovoltaic, and hybrid photovoltaic thermal systems [J].
Pathak, M. J. M. ;
Sanders, P. G. ;
Pearce, J. M. .
APPLIED ENERGY, 2014, 120 :115-124
[42]   Aero-structural design, manufacturing and testing of a 1 kW roof-top wind turbine blade for a hybrid wind-solar system [J].
Dhanarasu, Muniraj ;
Sivanantham, Vignesh ;
Madhavan, Sreehari Veloorillom ;
Athmanatha, Pranatharthiharan ;
Sengodan, Govindaraj .
WIND AND STRUCTURES, 2025, 40 (04) :237-249
[43]   Renewable Energy Potential by the Application of a Building Integrated Photovoltaic and Wind Turbine System in Global Urban Areas [J].
Lee, Jaewook ;
Park, Jeongsu ;
Jung, Hyung-Jo ;
Park, Jiyoung .
ENERGIES, 2017, 10 (12)
[44]   A Technoeconomic Analysis of Solar Photovoltaic Power Systems: Kutahya Case Study [J].
Ozgur, M. A. ;
Kose, G. .
ENERGY SOURCES PART A-RECOVERY UTILIZATION AND ENVIRONMENTAL EFFECTS, 2013, 35 (01) :42-57
[45]   Analysis and optimizes of hybrid wind and solar photovoltaic generation system for off-grid small village [J].
Rasool N.M. ;
Abbasoğlu S. ;
Hashemipour M. .
Journal of Energy Systems, 2022, 6 (02) :176-187
[46]   Technical, economic and environmental analysis of a hybrid system containing CHP, solar panel, wind turbine with electrolyser and battery as energy storage: case study [J].
Effatnejad, Reza ;
Rezapour, Kambiz ;
Vazinram, Farzad .
INTERNATIONAL JOURNAL OF GLOBAL WARMING, 2018, 14 (02) :170-187
[47]   Prospects of solar photovoltaic-micro-wind based hybrid power systems in western Himalayan state of Himachal Pradesh in India [J].
Sinha, Sunanda ;
Chandel, S. S. .
ENERGY CONVERSION AND MANAGEMENT, 2015, 105 :1340-1351
[48]   New grid connected hybrid generation system using wind turbine and solar Dish/Stirling engine [J].
Kadri, Yosra ;
Abdallah, Hsan Hadj .
2017 INTERNATIONAL CONFERENCE ON GREEN ENERGY & CONVERSION SYSTEMS (GECS), 2017,
[49]   Design of Hybrid Solar Photovoltaics/Shrouded Wind Turbine Power System for Thermal Pyrolysis of Plastic Waste [J].
Ghenai, Chaouki ;
Rasheed, Meera A. ;
Alshamsi, Maitha J. ;
Alkamali, Maryam A. ;
Ahmad, Fahad F. ;
Inayat, Abrar .
CASE STUDIES IN THERMAL ENGINEERING, 2020, 22
[50]   Comparative Analysis Between Solar And Wind Turbine Energy Sources In IoT Based On Economical And Efficiency Considerations [J].
Mohammed, Nada Qasim ;
Ahmed, Mohammed Swish ;
Mohammed, Mostafa Abdulghafoor ;
Hammood, Omar A. ;
Alshara, Hayder Ali Nema ;
Kamil, Aya Ahkam .
2019 22ND INTERNATIONAL CONFERENCE ON CONTROL SYSTEMS AND COMPUTER SCIENCE (CSCS), 2019, :448-452