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Liczba wyników
2023 | z. 179 Współczesne zarządzanie = Contemporary Management | 623--636
Tytuł artykułu

Selected Aspects of a Photovoltaic Installation Analysis for a Single-family Detached Building

Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: Increased awareness of the society in the field of environmental protection and support programs addressed to prosumers encourage investment in renewable energy sources. This paper presents selected aspects of the operational, utility and economic analysis of a photovoltaic installation, based on the example of a selected single-family building located in a rural area of Mazowieckie Prowince. Design/methodology/approach: The basis of the research was an analysis carried out in two variants of technical solutions, data obtained from the Photovoltaic Geographical Information System program and data from energy meter readings. Findings: Photovoltaics covered 100% of the energy demand in the analyzed case and the actual energy production from photovoltaic panels (6,069 kWh) exceeded the theoretical yield (5,431 kWh). The analysis of energy collected from the power grid and that returned to the grid enabled making a balance, which, combined with the energy produced by the photovoltaic installation, was used to calculate the energy consumed by residents. It was therefore possible to present the relationship between the energy consumed and the energy supplied by the PV (photovoltaic) system in individual months. Research limitations/implications: As part of the technical analysis for the case study, there were limitations in the selection of both a specific model of photovoltaic panels and the number of pieces thereof. This was due to the prosumer's participation in a program that supports the development of photovoltaics in a given area (the "Clean Air" Program implemented in 2018-2030). (original abstract)
Twórcy
autor
  • Warsaw University of Life Sciences
  • Bydgoszcz University of Science and Technology
  • University of Agriculture in Krakow
Bibliografia
  • 1. Ahmad, M., Satrovic, E. (2023). How do fiscal policy, technological innovation, and economic openness expedite environmental sustainability? Gondwana Research, 124, pp. 143-164, doi.org/10.1016/j.gr.2023.07.006.
  • 2. Albatayneh, A., Tarawneh, R., Dawas, A., Alnajjar, M., Juaidi, A., Abdallah, R., Zapata-Sierra, A., Manzano-Agugliaro, F. (2022). The installation of residential photovoltaic systems: Impact of energy consumption behaviour. Sustainable Energy Technologies and Assessments, 54, pp. 102870, doi.org/10.1016/j.seta.2022.102870.
  • 3. Ariztia, T., Raglianti, F. (2020). The material politics of solar energy: Exploring diverse energy ecologies and publics in the design, installation, and use of off-grid photovoltaics in Chile. Energy Research & Social Science, 69, pp. 101540, doi.org/10.1016/ j.erss.2020.101540.
  • 4. Bahou, S. (2023). Techno-economic assessment of a hydrogen refuelling station powered by an on-grid photovoltaic solar system: A case study in Morocco. International Journal of Hydrogen Energy, 48, pp. 23363-23372, doi.org/10.1016/j.ijhydene.2023.03.220.
  • 5. Goraj, R., Kiciński, M., Ślefarski, R., Duczkowska, A. (2023). Validity of decision criteria for selecting power-to-gas projects in Poland. Utilities Policy, 83, pp. 101619, doi.org/10.1016/j.jup.2023.101619.
  • 6. Hassan, Q. (2021). Evaluation and optimization of off-grid and on-grid photovoltaic power system for typical household electrification. Renewable Energy, 164, pp. 375-390, doi.org/10.1016/j.renene.2020.09.008.
  • 7. Indeo, F. (2019). ASEAN-EU energy cooperation: sharing best practices to implement renewable energy sources in regional energy grids. Global Energy Interconnection, 2, pp. 393-401, doi.org/10.1016/j.gloei.2019.11.014.
  • 8. Jamroen, C., Vongkoon, P. (2023). The role of state-of-charge management in optimal techno-economic battery energy storage sizing for off-grid residential photovoltaic systems. Journal of Energy Storage, 72, pp. 108246, doi.org/10.1016/j.est.2023.108246.
  • 9. Javeed, S.B., Shah, A., Najib, A., Jafri, E.A., Khan, S.A. (2023). Techno-economic analysis of incorporating up to 20% of wetland for the installation of a photovoltaic powerplant. Sustainable Energy Technologies and Assessments, 57, pp. 103212, doi.org/10.1016/ j.seta.2023.103212.
  • 10. JBG Product catalog. Available online: https://jbgpv.pl/plik-do-pobrania,katalog-jbgpv,304.pdf, 28 August 2023.
  • 11. Keiner, D., Thoma, C., Bogdanov, D., Breyer, C. (2023). Seasonal hydrogen storage for residential on- and off-grid solar photovoltaics prosumer applications: Revolutionary solution or niche market for the energy transition until 2050? Applied Energy, 340, pp. 121009, doi.org/10.1016/j.apenergy.2023.121009.
  • 12. Kijo-Kleczkowska, A., Bruś, P., Więciorkowski, G. (2022). Profitability analysis of a photovoltaic installation - A case study. Energy, 261, p. 125310, doi.org/10.1016/ j.energy.2022.125310.
  • 13. Li, Q., Hua, Q., Wang, C., Khosravi, A., Sun, L. (2023). Thermodynamic and economic analysis of an off-grid photovoltaic hydrogen production system hybrid with organic Rankine cycle. Applied Thermal Engineering, 230, pp. 120843, doi.org/10.1016/ j.applthermaleng.2023.120843.
  • 14. Mackay, R.M., Probert, S.D. (2023). National policies for achieving energy thrift, environmental protection, improved quality of life, and sustainability. Applied Energy, 51, pp. 293-367, doi.org/10.1016/0306-2619(95)00010-P.
  • 15. Navarro-Gonzalez, F.J., Villacampa, Y., Picazo, M.A.P., Cortés-Molina, M. (2021). Optimal load scheduling for off-grid photovoltaic installations with fixed energy requirements and intrinsic constraints. Process Safety and Environmental Protection, 149, pp. 476-484, doi.org/10.1016/j.psep.2020.11.011.
  • 16. Photovoltaic Geographical Information System (PVGIS). Available online: https://joint-research-centre.ec.europa.eu/photovoltaic-geographical-information-system-pvgis_en, 28 August 2023.
  • 17. Sabadini, F., Madlener, R. (2021). The economic potential of grid defection of energy prosumer households in Germany. Advances in Applied Energy, 4, pp. 100075, doi.org/10.1016/j.adapen.2021.100075.
  • 18. Wielewska, I. (2020). Supporting investments in the production and distribution of energy from renewable sources in the kujawsko-pomorskie province - a case study of the borough of Kęsowo. Annals of the Polish Association of Agricultural and Agribusiness Economists, 12(1), pp. 345-350. DOI: 10.22004/ag.econ.308186.
  • 19. Xiong, Y., Dai, L. (2023). Does green finance investment impact on sustainable development: Role of technological innovation and renewable energy. Renewable Energy, 214, pp. 342-349, doi.org/10.1016/j.renene.2023.06.002.
  • 20. Ye, Y., Zhu, R., Yan, J., Lu, L., Wong, M.S., Luo, W., Chen, M., Zhang, F., You, L., Wang, Y., Qin, Z. (2023). Planning the installation of building-integrated photovoltaic shading devices: A GIS-based spatiotemporal analysis and optimization approach. Renewable Energy, 216, pp. 119084, doi.org/10.1016/j.renene.2023.119084.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
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