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Assessment of wind energy resources for electricity generation using WECS in North-Central region, Nigeria

机译:尼日利亚中北部地区使用WECS进行风能资源发电的评估

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摘要

This paper presents a statistical analysis of wind characteristics of five locations covering the North-Central (NC) geo-political zone, Nigeria, namely Bida, Minna, Makurdi, Ilorin and Lokoja using Weibull distribution functions on a 36-year (1971-2007) wind speed data at 10m height collected by the meteorological stations of N1MET in the region. The monthly, seasonal and annual variations were examined while wind speeds at different hub heights were got by extrapolating the 10 m data using the power law. The results from this investigation showed that all the five sites will only be adequate for non-connected electrical and mechanical applications with consideration to their respective annual mean wind speeds of 2.747,4.289,4.570,4.386 and 3.158 m/s and annual average power densities of 16.569,94.113,76.399, 71.823 and 26.089 W/m2 for Bida, Minna, Makurdi, Ilorin and Lokoja in that order. Weibull parameters k and c together with the energies for the respective locations were computed while further observation revealed that Bida, Minna, Makurdi and Ilorin are windier in the morning than afternoon periods for many months in a year whereas Lokoja had a windy afternoon. Additionally, four wind turbines De wind 48-600 kW, De wind D6-1250 kW, De wind D7-1500 kW and De wind D8-2000 kW were technically assessed for electricity generation by calculating their respective yearly energy output and capacity factor in all the locations.
机译:本文使用36年(1971-2007年)的Weibull分布函数,对涵盖尼日利亚中北部(NC)地缘政治区的五个地点的风特征进行了统计分析,即比达,明纳,马库尔迪,伊洛林和洛科贾)由该地区N1MET的气象站收集的10m高度的风速数据。通过使用幂定律外推10 m数据,研究了月度,季节和年度变化,同时获得了不同轮毂高度的风速。该调查的结果表明,考虑到它们各自的年平均风速分别为2.747、4.289、4.570、4.386和3.158 m / s以及年平均功率密度,这五个站点都仅适合于非连接的电气和机械应用Bida,Minna,Makurdi,Ilorin和Lokoja的顺序分别为16.569,94.113,76.399、71.823和26.089 W / m2。计算了威布尔参数k和c以及相应位置的能量,同时进一步观察发现,一年中的多个月,比达,明纳,马库尔迪和伊洛林的早晨比下午时段多风,而洛科贾的下午则多风。此外,通过计算各自的年度能量输出和容量因子,对四台风力发电机Dewind 48-600 kW,De wind D6-1250 kW,De wind D7-1500 kW和De wind D8-2000 kW的发电进行了技术评估。位置。

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