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Analysis of an Off-Grid Photovoltaic-Wind Hybrid Power System for Disi Water Pumping Project

机译:迪斯水泵项目离网光伏-风电混合动力系统分析

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摘要

A standalone hybrid PV/ wind energy system is proposed to be used to continuously power a submersible water pump from a selected well out of 55 production wells located at the Disi aquifer, South of Jordan. Each of these wells has a continuously-operating water flow rate of 288 m~3/h. Excess energy, if any, is to be stored in the form of a pumped water storage at the ground level near the well. Solar radiation and wind speed data for Al-Mudawara border meteorologicalstation, which was taken as a representative of the Disi water aquifer were collected and analyzed. Energy analysis was monthly made on the basis of average daily available energy. The performance of three PV/wind power plant scenarios was analyzed through the study of the underground water pumping wells using Life Cycle Cost (LCC) method. It was found that, for one scenario, the hybridization of a 16.5 MW is produced by PV power plant and 27.5 MW by wind power plant at Al-Mudawara site is the optimal scenario which is economically and technically feasible. It was found that the storage energy covered the load after implementation of the proposed project, the cost of 1 kWh of energy produced was estimated to be 0.16 $/kWh., and the system payback period was 4.5 years.
机译:提出了一种独立的混合式光伏/风能系统,用于为约旦南部Disi蓄水层中的55口生产井中的选定井连续提供潜水泵的动力。这些井中的每个井都具有288 m〜3 / h的连续运行水流量。多余的能量(如果有)应以抽水蓄能的形式存储在井附近的地面上。收集并分析了以Al-Mudawara边界气象站为代表的迪西水层的太阳辐射和风速数据。每月根据平均每日可用能量进行能量分析。通过使用生命周期成本(LCC)方法对地下水抽水井进行研究,分析了三种光伏/风力发电厂方案的性能。已发现,在一种情况下,Al-Mudawara站点的光伏电站产生的混合功率为16.5 MW,风力发电场的混合发电为27.5 MW,这是经济和技术上可行的最佳方案。结果发现,在实施拟议项目后,存储能量可以负担负荷,每生产1千瓦时的能源成本估计为0.16美元/千瓦时,系统的投资回收期为4.5年。

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