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Optimization and life-cycle cost of health clinic PV system for a rural area in southern Iraq using HOMER software

机译:使用HOMER软件优化伊拉克南部农村地区医疗诊所PV系统的生命周期成本

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This paper addresses the need for electricity of rural areas in southern Iraq and proposes a photovoltaic (PV) solar system to power a health clinic in that region. The total daily health clinic load is 31.6 kW h and detailed loads are listed. The National Renewable Energy Laboratory (NREL) optimization computer model for distributed power, "HOMER," is used to estimate the system size and its life-cycle cost. The analysis shows that the optimal system's initial cost, net present cost, and electricity cost is US$ 50,700, US$ 60,375, and US$ 0.238/kW h, respectively. These values for the PV system are compared with those of a generator alone used to supply the load. We found that the initial cost, net present cost of the generator system, and electricity cost are US$ 4500, US$ 352,303, and US$ 1.332/ kW h, respectively. We conclude that using the PV system is justified on humanitarian, technical, and economic grounds.
机译:本文解决了伊拉克南部农村地区对电力的需求,并提出了一个光伏(PV)太阳能系统来为该地区的一家诊所提供电力。每日卫生诊所的总负载为31.6 kWh,并列出了详细负载。美国国家可再生能源实验室(NREL)的分布式电源优化计算机模型“ HOMER”用于估算系统规模及其生命周期成本。分析表明,最优系统的初始成本,净现值和电力成本分别为50,700美元,60,375美元和0.238 / kWh。将光伏系统的这些值与单独用于提供负载的发电机的值进行比较。我们发现,发电机系统的初始成本,净现值和电力成本分别为每千瓦时4500美元,352,303美元和1.332美元。我们得出结论,基于人道主义,技术和经济理由,使用PV系统是合理的。

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