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Optimal energy management and economic analysis of a grid-connected hybrid solar water heating system: A case of Bloemfontein, South Africa

机译:并网混合太阳能热水系统的最佳能源管理和经济分析:以南非布隆方丹为例

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In this paper, the optimal energy management of a hybrid solar electric water heater is presented. A typical medium density household is considered. Actual historic exogenous data, obtained from a weather station in the considered area is used as input for the established model.The aim is to evaluate the energy and cost saving potential of the system, that may be achieved under time-based pricing, while maintaining a comfortable thermal level of the hot water user.Comparisons between the operation of a thermostatically controlled traditional electric storage tank water heater and the hybrid solar electric water heater, offered an energy saving of 75.8% in the winter and 51.5% during the summer period.A life cycle cost (LCC) analysis is presented, where the project lifetime is taken over 20 years. The LCC analysis of the hybrid system demonstrates a 44% saving in overall cost, as compared to a traditional water heating system. Simulation results conclude that the break-even point for the evaluated system was at R10 870 in 3.3 years, under the evaluated time-based pricing structure.
机译:本文提出了一种混合太阳能热水器的最佳能量管理方法。考虑一个典型的中等密度家庭。从所考虑区域的气象站获得的实际历史外来数据用作已建立模型的输入,目的是评估系统的节能潜力和成本潜力,这可以在基于时间的定价下实现,同时保持恒温控制的传统储水箱热水器与混合太阳能热水器的运行进行比较,冬季可节能75.8%,夏季可节能51.5%。提出了生命周期成本(LCC)分析,其中项目寿命长达20年。与传统的水加热系统相比,混合系统的LCC分析表明,总体成本节省了44%。仿真结果表明,在基于时间的定价结构下,被评估系统的收支平衡点在3.3年内为R10 870。

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