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Prospect of wind-PV-battery hybrid power system as an alternative to grid extension in Bangladesh

机译:风电-光伏-电池混合动力系统有望替代孟加拉国的电网扩展

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A pre-feasibility of wind-PV-battery hybrid system has been performed for a small community in the east-southern part of Bangladesh. Solar radiation resources have been assessed from other meteorological parameters like sunshine duration and cloud cover as measured radiation data were not available at the site. The predicted monthly averaged daily global radiation over Chittagong is 4.36 kWh/m~2/day. Measured wind speed at the site varies from 3 m/s to 5 m/s. For few months and hours the speed is below the cut in speeds of the available turbines in market. The hybrid system analysis has showed that for a small community consuming 53,317 kWh/year the cost energy is 0.47USD/kWh with 10% annual capacity of shortage and produces 89,151 kWh/year in which 53% electricity comes from wind and the remaining from solar energy. The sensitivity analysis showed that the hybrid system for the community is compatible with the 8 km-12 km grid extension depending on small variation of solar radiation and wind speed over the district whereas the proposed site is more away from the upper limit. Such a hybrid system will reduce about 25 tCO_2/yr green house gases (GHG) emission in the local atmosphere.
机译:在孟加拉国东部南部的一个小社区,已经进行了风能-光伏-电池混合系统的预可行性研究。已经从其他气象参数(如日照时长和云量)评估了太阳辐射资源,因为该地点尚无测得的辐射数据。吉大港上每月的预计平均日平均全球辐射为4.36 kWh / m〜2 / day。现场测得的风速从3 m / s到5 m / s不等。几个月和几个小时的速度都低于市场上现有涡轮机的极限转速。混合动力系统分析表明,对于一个年消耗量为53,317 kWh的小社区,成本能源为0.47USD / kWh,年发电量为10%,每年产生89,151 kWh,其中53%的电力来自风能,其余的来自太阳能能源。敏感性分析表明,该社区的混合系统与8 km-12 km的网格扩展兼容,这取决于该地区太阳辐射和风速的微小变化,而拟议的站点距离上限更远。这种混合系统将减少当地大气中约25 tCO_2 /年的温室气体(GHG)排放。

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