Potential of Grid-Connected Photovoltaic Systems in Brazilian Dairy Farms
Abstract
:1. Introduction
2. Materials and Methods
2.1. Electrical Energy Demand in Dairy Farms and Meteorological Data
2.2. Estimation of the Diffuse and Beam Solar Radiation on Horizontal Panels
2.3. Estimation of the Global Solar Radiation on Tilted Panels
2.4. Grid-Connected Photovoltaic System
3. Results and Discussion
4. Directions for Further Research
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
Abbreviations
Apv | Modular area of the photovoltaic panel (m2) |
dn | Day number of the year (dimensionless) |
E0 | Eccentricity correction factor of the earth’s orbit (dimensionless) |
Ec | Consumed energy by the equipment (kWh day−1) |
Epv | Electrical energy generated by the photovoltaic system (kWh day−1) |
F | Operating frequency of the equipment (h day−1) |
H | Global solar radiation on horizontal panels (MJ m−2 day−1) |
H0 | Extraterrestrial solar radiation on horizontal panels (MJ m−2 day−1) |
Hb | Beam solar radiation on horizontal panels (MJ m−2 day−1) |
Hbβ | Beam solar radiation on tilted panels (MJ m−2 day−1) |
Hd | Diffuse solar radiation on horizontal panels (MJ m−2 day−1) |
Hdβ | Diffuse solar radiation on tilted panels (MJ m−2 day−1) |
Hr | Ground-reflected solar radiation on tilted panels (MJ m−2 day−1) |
Hβ | Global solar radiation on tilted panels (MJ m−2 day−1) |
KT | Clearness index (dimensionless) |
Npv | Number of photovoltaic panels or modules (dimensionless) |
Pc | Power consumption of the equipment (kW) |
Rb | Conversion factor (dimensionless) |
β | Optimal tilt angle (degrees) |
δ | Declination solar angle (degrees) |
ηcab | Efficiency from cable electricity losses (%) |
ηinv | Inverter DC to AC efficiency (%) |
ηpv | Photovoltaic panel efficiency (%) |
ρ | Ground albedo (dimensionless) |
φ | Geographic latitude (degrees) |
ωs′ | Minimum value of sunrise/sunset hour angle (degrees) |
ωs | Sunrise/sunset hour angle (degrees) |
Γ | Day angle (radians) |
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Region | Municipality | Latitude (°S) | Longitude (°W) | Altitude (m) |
---|---|---|---|---|
Jequitinhonha | Águas Vermelhas | 15.75 | 41.46 | 754.07 |
North | Montes Claros | 16.69 | 43.84 | 645.87 |
Rio Doce | Caratinga | 19.74 | 42.14 | 609.25 |
Center | Sete Lagoas | 19.46 | 44.17 | 719.00 |
South | Varginha | 21.57 | 45.40 | 949.78 |
Mata | Juiz de Fora | 21.77 | 43.36 | 936.88 |
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Steidle Neto, A.J.; Lopes, D.d.C.; Nascimento, S.T. Potential of Grid-Connected Photovoltaic Systems in Brazilian Dairy Farms. AgriEngineering 2022, 4, 122-133. https://doi.org/10.3390/agriengineering4010008
Steidle Neto AJ, Lopes DdC, Nascimento ST. Potential of Grid-Connected Photovoltaic Systems in Brazilian Dairy Farms. AgriEngineering. 2022; 4(1):122-133. https://doi.org/10.3390/agriengineering4010008
Chicago/Turabian StyleSteidle Neto, Antonio José, Daniela de Carvalho Lopes, and Sheila Tavares Nascimento. 2022. "Potential of Grid-Connected Photovoltaic Systems in Brazilian Dairy Farms" AgriEngineering 4, no. 1: 122-133. https://doi.org/10.3390/agriengineering4010008
APA StyleSteidle Neto, A. J., Lopes, D. d. C., & Nascimento, S. T. (2022). Potential of Grid-Connected Photovoltaic Systems in Brazilian Dairy Farms. AgriEngineering, 4(1), 122-133. https://doi.org/10.3390/agriengineering4010008