尼日利亚Jebba大坝发电的气候参数和河流流量特征

Hadiza Muhammad Liman, Peace Nwaerema, Jacob Yisa, Jibrin Matane AbdulAzeez, Adama Christiana Kolo
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引用次数: 0

摘要

本研究考察了尼日利亚Jebba大坝发电的气候参数和河流流量的特征。众所周知,降雨、温度和蒸发等气候参数对水库的入库和出库以及水力发电都有影响。该研究收集了2018年主流能源解决方案有限公司的气候参数、水库流入和流出以及水力发电的二次数据。数据用平均值进行分析,并用图形和图表表示。结果表明:7 - 12月发电量呈上升趋势,其中11月发电量最高,达到432.5MWH。7 - 12月水库入流量和流出量均呈上升趋势,其中9月流量最大,入流量为4860m3 /s,流出量为4858 m3 /s。5 - 11月降水量明显增加,其中9月降水量最大,达330.4mm。而杰巴河流域2月和11月的最高气温均为360℃。蒸发量最高的月份为3月,为25立方米/秒。最后,研究揭示了这些气候参数对杰巴大坝水库流量和水力发电的影响。因此,政府应该严格考虑气候变化现象,因为它影响到尼日利亚的水力发电,刻不容缓。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization of Climatic Parameters and River Flow Capacity on Electricity Generation in Jebba Dam, Nigeria
This study examined the characterization of climatic parameters and river flow capacity on electricity generation in Jebba Dam, Nigeria. It is a known fact that climatic parameters of rainfall, temperature and evaporation have the capacity to influence reservoir inflow and outflow as well as hydropower generation. The study collected secondary data of climatic parameters, reservoir inflow and outflow as well as hydropower generation from Mainstream Energy Solution Limited in 2018. The data were analyzed using averages and represented in graphs and charts. The results showed that there was rise in power generation from July to December with November having the highest power generation of 432.5MWH. Reservoir inflow and outflow rose from July to December with September having the highest discharge of 4860m3 /sec inflow and 4858 m3 /sec outflow. There was noticeable rise in rainfall pattern from May to November with September having the highest rainfall regime of 330.4mm in the Jebba river basin. However, February and November had the highest temperature regime of 360C each in the Jebba river basin. The highest evaporation rate was recorded in March having 25m3 /sec during the period. Finally, the study has revealed the effects of these climatic parameters on the reservoir flow and hydropower generation in the Jebba dam. Therefore, the government should strictly consider the phenomenon of climate change as it affects hydroelectric power generation in Nigeria without further delay.
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