masterThesis
Análise do potencial da geração de energia fotovoltaica para redução dos picos de demanda e contribuição energética nas edificações da UTFPR em Curitiba
Date
2017-03-06Registration in:
MARIANO, Juliana D’Angela. Análise do potencial da geração de energia fotovoltaica para redução dos picos de demanda e contribuição energética nas edificações da UTFPR em Curitiba. 2017. 193 f. Dissertação (Mestrado em Engenharia Civil) - Universidade Tecnológica Federal do Paraná, Curitiba, 2017.
Author
Mariano, Juliana D’Angela
Institutions
Abstract
The concern of achieving sustainable development is increasingly present in civil construction, which is the sector that shows the highest levels of greenhouse gas emissions due to its high consumption of energy and natural resources. Buildings use a large amount of energy in their day-to-day use, and in many countries this energy comes from non-renewable sources, causing dependence on fossil fuels and consequently increasing CO2 emissions."Sustainable transitions" make change possible through the application of new renewable energy systems, which present reduced emissions, e.g. solar photovoltaic energy. This energy source is increasingly present in the global energy matrix, both in large-scale photovoltaic plants and smalland micro-generation incorporated into buildings, acting as distributed generation in urban environments. The objective of this thesis is to contribute to a reduction in demand, with energy efficiency and to the quantification of equivalent CO2 emissions that could be avoided with energy generated through the use of photovoltaic energy at UTFPR’s Curitiba campus. The methodology consists of the analysis of horizontal and inclined local irradiation parameters collected through the INMET portal, the Brazilian Solar Energy Atlas and the piranometer at UTFPR, and in the application of the software Radiasol. The study of the load profile of the institution was carried out in order to identify periods of greater consumption and demand for electric energy, through the selection of typical days during the year. The analysis of the coverages allowed the survey of available areas and a shading analysis. Through the data generated by the existing grid-connected photovoltaic system, scenarios were elaborated to model the energy contribution of the three campus. Finally, the energy penetration levels and the effectiveness factor of the load capacity were calculated quantifying the increase of the available capacity of the electricity grid, attributed to the photovoltaic generation, as well as the respective emissions avoided. The results show that the Curitiba campus of UTFPR have a vast potential for the generation of photovoltaic energy, and the institution could allocate a system with a total installed power of 3.25 MW, generating an annual total of 4.37 GWh of energy. The calculated total energy penetration level of 489.97% was obtained, which implies the injection of a surplus of photo-generated energy into the electric system. It can be concluded that besides the possibility of reducing electricity costs, there would be a significant reduction in GHG emissions calculated at 284.43 tCO2 per year.