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An Environmentally-Friendly Tourist Village in Egypt Based on a Hybrid Renewable Energy System––Part Two: A Net Zero Energy Tourist Village

机译:基于混合可再生能源系统的埃及环保旅游村–第二部分:净零能耗旅游村

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The main objective of this study is to discuss the economical and the environmental analysis of a net zero energy (NZE) tourist village in Alexandria, Egypt, by maximizing the renewable energy fraction and minimizing the greenhouse gases (GHG) emissions. The hybrid photovoltaics (PV)/wind/diesel/battery system is found to be the optimum hybrid renewable energy system (HRES) for the proposed tourist village under the study. The optimum HRES consists of 1600 kW of PV panels (58.09% solar energy penetration), 1000 kW of wind turbines (41.34% wind energy penetration), 1000 kW of power converters, 200 kW diesel generator (only 0.57% diesel generator penetration) in addition to 2000 batteries with the capacity of 589 Ah each. The levelized cost of energy (COE) from the optimum HRES is $0.17/kWh and the total net present cost (NPC) of this system is $15,383,360. Additionally, the maximum renewable energy fraction is 99.1% and the amount of GHG emitted from the optimum HRES is only 31,289 kg/year, which is negligible in comparison with the other system configurations, therefore the optimum HRES can be considered as a green system. In addition to this, the achieved percentage of the capacity shortage and the unmet load in the optimal HRES is only 0% for both.
机译:这项研究的主要目的是通过最大程度地提高可再生能源比例和最小化温室气体(GHG)排放量,讨论埃及亚历山大港纯净零能耗(NZE)旅游村的经济和环境分析。研究发现,混合光伏(PV)/风/柴油/电池系统是拟议旅游村的最佳混合可再生能源系统(HRES)。最佳HRES由1600 kW的光伏电池板(太阳能渗透率58.09%),1000 kW的风力涡轮机(风能渗透率41.34%),1000 kW的电力转换器,200 kW的柴油发电机(仅0.57%的柴油发电机渗透率)组成。另外还有2000个电池,每个电池的容量为589 Ah。最佳HRES的平均能源成本(COE)为$ 0.17 / kWh,该系统的总净现值(NPC)为$ 15,383,360。此外,最大可再生能源比例为99.1%,最佳HRES排放的温室气体量仅为31,289千克/年,与其他系统配置相比可忽略不计,因此最佳HRES可被视为绿色系统。除此之外,在最佳HRES中,容量短缺和未满足的负载所达到的百分比都仅为0%。

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