小型住宅离网风电系统的数值设计

Umar Muhammad Kangiwa, Gwani Mohammed, Zayyanu, Hussaini, S. Umar
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摘要

所有国家的社会经济发展都依赖于电力供应。由于尼日利亚电力控股公司(PHCN)的挑战,尼日利亚作为一个国家面临着电力供应不足的挑战,这使得许多家庭和偏远地区无法获得电力。鉴于化石燃料发电机会导致气候变化,风能等可再生能源可能是最好的替代品。本文提出了一种满足两居室公寓电力负荷需求的离网风能系统的数值设计。对两居室公寓的负荷需求进行了估算,并对典型负荷需求下的风力发电机、蓄电池和逆变器的尺寸进行了数值估算。三个相同容量但不同制造商的1kw水平轴风力机的性能,即;利用尼日利亚Aliero Kebbi州的月平均风速数据,对Bergey (BWC XL.1)、Wind energy (WE.7)和Hummer Wind energy (H3.1)进行了数值测试。结果表明,将1 kW风力机与6节200 Ah蓄电池集成在24 V系统和1 kVA逆变器上,可以满足505 W (4.37 kWh/day)的负载需求,具有2天的自主性。BWC XL.1、WE.7和H3.1在年均风速5.03 m/s条件下的年平均发电量分别为1782、1451和1909 kWh/yr,效率分别为44.45%、33.22%和33.22%。基于这些结果,BWC XL.1可能是该地区最佳的替代风力涡轮机,因为它的最佳效率。此外,其发电量为1782 kWh/年,比典型居民家庭负荷需求1595 kWh/年增加11.72%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Design of an Off-Grid Wind Energy Systems for Small Scale Residential Power Supply
The socio-economic developments of all nations depend duly on electrical energy supply. Nigeria as a country is faced with challenges of poor electric power supply due to the challenges from the power holding company of Nigeria (PHCN) which have left many households and isolated areas with no access to electricity. The fact that fossil fuel generators contributes to climate changes, renewable energy such as wind could be the best alternative. This paper presents the numerical design of an off-grid wind energy systems for powering load demand of two bedrooms apartment. The load demand of two bedroom flats were estimated and sizes of wind turbine, storage batteries and inverter with respect to typical load demand were numerically estimated. The performance of three 1 KW horizontal axis wind turbines of the same capacity but from different manufacturers namely; Bergey’s (BWC XL.1), Wind energy (WE.7) and Hummer wind energy (H3.1) were numerically tested  using the average monthly wind speed data of Aliero Kebbi state, Nigeria. The result shows that integrating 1 kW wind turbine with 6 pieces of 200 Ah batteries on 24 V system and 1 kVA inverter would be feasible for 505 W (4.37 kWh/day) load demand with two days autonomy. The  annual mean energy generated by the  BWC XL.1, WE.7 and H3.1 using annual mean wind speed 5.03 m/s were 1782 kWh/yr, 1451kWh/yr and 1909 kWh/yr, attaining  efficiencies of 44.45 % 33.22 % and 33.22 % respectively. Based on these results, BWC XL.1 could be best alternative wind turbine for the location because of its optimum efficiency. In addition, its energy generation of 1782 kWh/yr is 11.72% greater than 1595 kWh/year, the typical residential household load demand.
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