Techno-economic assessment of concentrated solar and photovoltaic power plants in Brazil

被引:0
作者
Torres G.S. [1 ]
de Oliveira T.A.P. [1 ]
Filho A.L.F. [1 ]
Melo F.C. [1 ]
Domingues E.G. [2 ]
机构
[1] Department of Electrical Engineering, University of Brasilia
[2] Engineering College Federal, Institute of Goias
来源
Renewable Energy and Power Quality Journal | 2021年 / 19卷
关键词
Cash flow analysis; CSP; Economic Assessment; Photovoltaic Systems; Renewable Energy; Solar Energy; System Advisor Model;
D O I
10.24084/repqj19.353
中图分类号
学科分类号
摘要
—The need for a diverse energy matrix has been promoting a favorable environment for integrating new renewable energy sources, such as Concentrated Solar Power plants (CSPs). Nonetheless, as a consequence of the incipient solar generation via CSPs in Brazil, there is a unsatisfactory number of researches that handle technical and economic assessments of CSP plants performance on this country. Given this scenario, this study proposes an assessment of the techno-economic viability of the implementation of 100 MW CSP plants in Brazil, considering the Solar Tower (ST) systems, Parabolic Trough Collectors (PTC), Linear Fresnel (LFR) Reflectors and Dish Stirling (DS) Systems, and comparing the results to a photovoltaic (PV) plant. This study utilizes project data of power plants collected from the relevant literature and applies it to the city of Bom Jesus da Lapa, Brazil. The CSP techno-economic viability is evaluated through the analysis of the annual energy generated, as well as the economic viability indicators, such as the Net Present Value, the Internal Rate of Return, the Discounted Payback and the Levelized Cost of Energy, and through a single-variable sensitivity analysis. This analysis employs the discounted cash flow model, considering the energy trade in a Regulated Contracting Environment. © 2021, European Association for the Development of Renewable Energy, Environment and Power Quality (EA4EPQ). All rights reserved.
引用
收藏
页码:583 / 588
页数:5
相关论文
共 20 条
[11]  
Bishoyi D., Sudhakar K., Modeling and performance simulation of 100 mw lfr based solar thermal power plant in udaipur india, Resource-Efficient technologies, 3, pp. 365-377, (2017)
[12]  
Concentrating solar power commercial application study: reducing water consumption of concentrating solar power electricity generation, (2001)
[13]  
NREL, (2021)
[14]  
Nota técnica n89/2014-sre/aneel, (2014)
[15]  
MME, Tech. Rep, (2018)
[16]  
Resultado dos leilões de geração no ambiente regulado, (2020)
[17]  
INCRA, (2018)
[18]  
Oliveira T. P., Metodologia para análise de risco de investimento em fontes de geração heliotérmica do tipo torre solar no mercado regulado brasileiro, (2020)
[19]  
Renewable power generation costs in 2019, (2020)
[20]  
Estabelece os procedimentos vinculados à redução das tarifas de uso dos sistemas elétricos de transmissão e de distribuição, para empreendimentos hidrelétricos e aqueles com base em fonte solar, eólica, biomassa ou cogeração qualificada, REN N, 77, (2004)