Technical-economic feasibility analysis of a large-scale parabolic trough collectors solar power plant in Brazil

Q4 Energy
M. Lopes, G. Acevedo, B. Menezes, O.H.F. Rabelo, L. B. Brito, A. B. Dias, A. Filho, E. G. Domingues
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引用次数: 0

Abstract

This study aims to present the results of the application of a computational tool developed to perform a technical-economic feasibility analysis of large-scale Parabolic Trough Collectors (PTC) solar power plants in Brazil. The gross revenue from cash flow is obtained through an energy trading model for the Regulated Contracting Environment of the Brazilian Electricity Market. The economic viability analysis uses the Net Present Value, Modified Internal Rate of Return, Discounted Payback, and Levelized Cost of Energy indicators. The parametric structural optimization method is used to optimize the technical parameters of the plant. A case study was conducted to analyse the feasibility of implementing a 100 MW PTC in the five regions of Brazil. The results indicated that the best region in Brazil to receive this technology is the northeastern region. However, the project is economically unfeasible in all cities analysed. Therefore, a sensitivity analysis of the main parameters that affect the project's net present value is carried out to evaluate the impact of the economic parameters on the economic viability of an optimized PTC plant located in the city with the best technical performance. An optimistic scenario was evaluated considering the system's response to the parameters investigated in the sensitivity analysis. For this scenario, the results pointed to the project's economic viability.
巴西大型抛物面槽集热器太阳能电站技术经济可行性分析
本研究旨在展示巴西大型抛物槽集热器(PTC)太阳能发电厂的技术经济可行性分析所开发的计算工具的应用结果。现金流的总收入是通过巴西电力市场受管制承包环境的能源交易模型获得的。经济可行性分析使用净现值、修正内部收益率、贴现回收期和能源平准化成本指标。采用参数结构优化方法对装置的技术参数进行优化。进行了一个案例研究,以分析在巴西五个地区实施100兆瓦PTC的可行性。结果表明,巴西东北地区最适合采用该技术。然而,该项目在所有分析的城市中都是经济上不可行的。因此,对影响项目净现值的主要参数进行敏感性分析,以评估经济参数对优化后技术性能最佳的城市PTC工厂经济可行性的影响。考虑到系统对灵敏度分析中所研究的参数的响应,评估了一个乐观的情景。在这种情况下,结果表明了该项目的经济可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Renewable Energy and Power Quality Journal
Renewable Energy and Power Quality Journal Energy-Energy Engineering and Power Technology
CiteScore
0.70
自引率
0.00%
发文量
147
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