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首页> 外文期刊>Journal of Cleaner Production >Techno-economic design and evaluation of hybrid energy systems for residential communities: Case study of Jubail industrial city
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Techno-economic design and evaluation of hybrid energy systems for residential communities: Case study of Jubail industrial city

机译:居住社区混合能源系统的技术经济设计与评估:朱拜勒工业城市案例研究

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A total of around 300 TWh of electricity was consumed in Saudi Arabia in the year 2018, a per capita consumption of 9100 kWh. Almost all of this electricity is generated by non-renewable sources of energy. This study explores the prospective application of hybrid energy systems PV/Wind/Diesel and PV/Wind with battery storage for three residential compounds in Jubail Industrial City, an eastern coastal city in Saudi Arabia. Technical and economic viability of various hybrid energy system designs is weighed and an optimum system is adopted using HOMER software. This hybrid system is optimized to meet the electrical load demand of three residential compounds with one, two, and three-bedroom apartments with a load demand of 11,160; 4865; and 3288 kWh/day and a peak load of 685, 463 and 270 kW. The minimum COE was found to be 0.183, 0.224 and 0.244 US$/kWh, for PV/Wind/Diesel/Battery option for compound 1, 2 and 3 respectively. The average total NPC was around 9.9, 5.6, and 3.9 million US$, respectively. For options with 100% RE penetration, minimum COE was found to be 0.25 US$/kWh, for PV/Wind/Battery option for all three compounds. This optimum system will also save 2800 tons of carbon-dioxide emissions every year. This proposed hybrid energy system can be applied to other regions of the world with similar weather conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:2018年,沙特阿拉伯总共消耗了约300 TWh的电力,人均消耗9100 kWh。几乎所有这些电力都是由不可再生的能源产生的。这项研究探索了沙特阿拉伯东部沿海城市朱拜勒工业城的三个住宅区的混合能源系统PV /风/柴油和光伏/风与电池存储的未来应用。权衡各种混合能源系统设计的技术和经济可行性,并使用HOMER软件采用最佳系统。该混合系统经过优化,可以满足三个居住区的电力负荷需求,其中一居室,二居室和三居室公寓的负荷需求为11,160; 4865;每天3288千瓦时,峰值负载685、463和270千瓦。对于化合物1、2和3的PV /风/柴油/电池选项,最低COE分别为0.183、0.224和0.244美元/千瓦时。人均NPC分别约为9.9、5.6和390万美元。对于具有100%稀土渗透率的选件,发现所有三种化合物的PV /风能/电池选件的最低COE为0.25美元/千瓦时。这个优化的系统每年还将节省2800吨二氧化碳排放量。提出的混合能源系统可以应用于天气条件相似的世界其他地区。 (C)2019 Elsevier Ltd.保留所有权利。

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