Macroeconomic Electric Energy Production Efficiency of Photovoltaic Panels in Single-Family Homes in Poland

被引:24
作者
Bukowski, Marcin [1 ]
Majewski, Janusz [2 ]
Sobolewska, Agnieszka [2 ]
机构
[1] State Univ Appl Sci Elblag, Inst Econ, Wojska Polskiego 1, PL-82300 Elblag, Poland
[2] Warsaw Univ Life Sci SGGW, Inst Econ & Finance, Nowoursynowska 166, PL-02787 Warsaw, Poland
关键词
solar energy; renewable energy; social cost; economic efficiency; economic assessment; Net Present Value (NPV); Discounted Payback Period; ECONOMIC-ANALYSIS; POWER-PLANTS; PV; POLICIES; SYSTEMS; SNOW; GENERATION; ADOPTION; IMPACT;
D O I
10.3390/en14010126
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
An increase in energy demand that is caused by fast economic development, a limited and constantly decreasing supply of traditional energy sources, as well as excessive environmental pollution that is caused by an increasing concentration of dust and gases in the atmosphere constitute the main factors that contribute to the ever-increasing interest in renewable sources of energy. The most important and promising renewable source of energy is thought to be solar energy. The aim of the paper is to assess the macroeconomic investment efficiency of photovoltaic installations in order to meet the demand for electric energy in single-family homes in Polish conditions. The conducted analysis comprises market characteristics and legal regulations concerning the sale of electric energy in Poland. Calculations were made for 320 variants that differed with regard to investment location, building orientation, and roof inclination. The results indicate that the most beneficial region for photovoltaic micro-installations, from a social perspective, is the south-east of and central Poland. The highest values of economic efficiency were achieved in the case of a southern roof inclination as well as a south-eastern and south-western building orientation. No big differences were observed in the economic investment efficiency for the panel inclinations. The calculated Discounted Payback Period, depending on the calculation method, equals 5.4 to 10 years. The results of the study confirm that the implemented support instruments for investments in photovoltaic installations producing energy for single-family house demand is economically viable.
引用
收藏
页数:21
相关论文
共 68 条
[61]  
Smil V., 2006, OECD Observer, V258, P22
[62]   Employing genetic programming to find the best correlation to predict temperature of solar photovoltaic panels [J].
Sohani, Ali ;
Sayyaadi, Hoseyn .
ENERGY CONVERSION AND MANAGEMENT, 2020, 224
[63]  
Solorzano V., 2013, ECORFAN J, V4, P1077
[64]  
SRoeCo Solar, 2011, COMP SOL EFF LOSS TI
[65]   Investigation of transparent pyramidal covers effect to PV power output using detected wireless sensors incident radiation [J].
Talaat, M. ;
Alsayyari, Abdulaziz S. ;
Essa, Mohamed A. ;
Yousef, M. A. .
MEASUREMENT, 2019, 136 :775-785
[66]   Assessment of energy policies to promote photovoltaic generation in the European Union [J].
Teresa Garcia-Alvarez, Maria ;
Cabeza-Garcia, Laura ;
Soares, Isabel .
ENERGY, 2018, 151 :864-874
[67]   Performance Assessment of Four Different Photovoltaic Technologies in Poland [J].
Zdyb, Agata ;
Gulkowski, Slawomir .
ENERGIES, 2020, 13 (01)
[68]   Comparative Study of Battery Storage and Hydrogen Storage to Increase Photovoltaic Self-sufficiency in a Residential Building of Sweden [J].
Zhang, Yang ;
Lundblad, Anders ;
Campana, Pietro Elia ;
Yan, Jinyue .
PROCEEDINGS OF RENEWABLE ENERGY INTEGRATION WITH MINI/MICROGRID (REM2016), 2016, 103 :268-273