A Hydro PV Hybrid System as a New Concept for an Abandoned Dam in Southern Brazil*

G. Vasco, Jones S. Silva, A. Beluco, E. G. Rossini, José Deivison de Souza
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引用次数: 6

Abstract

The search for alternatives to traditional sources of electric energy opens the way for a new market in the world, and for Brazil in particular. Still in its first steps, but with immense potential, the generation of energy from solar irradiation and hydroelectric plants in hybrid systems is an important alternative. On the other hand, single source power systems, when designed to meet a particular demand without fail, lead to low market acceptance due to the availability of resources and low efficiency in performance that rewards high initial investment costs. One solution to balance and optimize energy supply is the use of more than one energy resource when sources can be complementary. Among several possible combinations reported in several studies, the hybrid photovoltaic hydroelectric system is considered to be an optimal and interesting combination. In this context, the present article makes a technical and economic pre-feasibility analysis of a hydroelectric photovoltaic hybrid system, operating photovoltaic panels on floating structures on the water surface to allow the use of the Laranjeiras dam. The study was conducted based on simulations with HOMER. The solution indicated as optimal was the installation of a hybrid energy system, implementing a hydroelectric power plant at the base of the dam, with 1497 kW of installed capacity, operating simultaneously with a set of photovoltaic modules, on the water surface of the dam, with 180 kW of installed capacity, and a power limit for the purchase and sale to the grid equal to 400 kW, to supply the demand of consumer loads up to 40 MWh per day. This combination would result in an initial cost of US$3984.885 per kW and an energy cost of US$0.026 per kWh.
巴西南部废弃大坝的水电光伏混合系统新概念*
寻找替代传统电力能源的方法为世界开辟了一个新的市场,特别是对巴西来说。太阳能和水力发电厂的混合发电系统仍处于起步阶段,但潜力巨大,是一种重要的替代方案。另一方面,当单源电力系统被设计为无故障地满足特定需求时,由于资源的可用性和低效率的性能,导致市场接受度低,从而回报高的初始投资成本。平衡和优化能源供应的一个解决方案是,当能源可以互补时,使用多种能源。在一些研究报告的几种可能的组合中,混合光伏水电系统被认为是最优的和有趣的组合。在此背景下,本文对水电光伏混合系统进行了技术和经济预可行性分析,该系统在水面浮动结构上运行光伏板,以允许使用Laranjeiras大坝。该研究是基于HOMER的模拟进行的。表示作为最佳的解决方案是混合能源系统的安装,实现水电站大坝的底部,装机容量1497千瓦,与一组光伏模块同时操作,水面上的大坝,180千瓦的装机容量,和权力限制购买和销售网格等于400千瓦,提供消费者的需求负载每天40兆瓦时。这一组合将导致初始成本为每千瓦3984.885美元,能源成本为每千瓦时0.026美元。
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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