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Energetic and economic sensitivity analysis for photovoltaic water pumping systems

机译:光伏水泵系统的能量和经济敏感性分析

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Costly battery energy storage are used in photovoltaic water pumping systems to ensure the power supply continuity and the system autonomy. However, the question of designing an optimum, economic and reliable system has not been fully answered. This research work proposes a smart sizing approach of a photovoltaic water pumping system components destined to Tomatoes irrigation. The system elements sizes namely the photovoltaic modules' surface, the battery bank capacity and the reservoir volume, are designed to save energy generated in excess, supply the water pump and ensure the system autonomy. Fluctuations occurrence, number of successive cloudy days and energetic losses are taken into account when designing. A theoretical analysis was carried out to assess the relation between the photovoltaic modules surface, the battery bank capacity and the water volume needed for the crops irrigation during the crops' vegetative cycle (from March to July). Additionally, the sizing algorithm results have been validated using PVsyst tool, which shows the efficiency of the obtained sizing. The economic sensitivity analysis for these water pumping systems in three countries, which are Tunisia, Spain and Qatar showed that photovoltaic-batteries/pump system shows that these systems are reliable and economic for both developing and developed countries. (C) 2017 Elsevier Ltd. All rights reserved.
机译:光伏水泵系统使用昂贵的电池能量存储来确保电源的连续性和系统的自治性。但是,设计最佳,经济和可靠的系统的问题尚未得到完全解决。这项研究工作提出了用于番茄灌溉的光伏水泵系统组件的智能选型方法。系统元件的尺寸,即光伏模块的表面,电池组的容量和储存器的容量,旨在节省多余的能量,为水泵供电并确保系统的自主性。设计时要考虑波动的发生,连续阴天的数量和能量损失。进行了理论分析,以评估作物生长周期(3月至7月)中光伏组件表面,电池组容量和作物灌溉所需水量之间的关系。此外,使用PVsyst工具验证了上浆算法的结果,该结果显示了所获得上浆的效率。对突尼斯,西班牙和卡塔尔这三个国家的这些抽水系统的经济敏感性分析表明,光伏电池/泵系统表明,这些系统对于发展中国家和发达国家都是可靠且经济的。 (C)2017 Elsevier Ltd.保留所有权利。

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