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Review of economic assessment of hybrid photovoltaic-diesel-battery power systems for residential loads for different provinces of Saudi Arabia

机译:沙特阿拉伯不同省份住宅用光伏-柴油-电池混合动力系统经济评估的综述

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Presently, the world is considering renewable solar energy as an indispensable/long-termature-friendly option for power generation. The Kingdom of Saudi Arabia (K.S.A) is blessed with considerable amount of solar radiation. Commercial/residential buildings in K.S.A. consume about 10-45% of the total electric energy. In the present paper, the economic analysis of utilization of hybrid PV-diesel-battery power systems to meet the load of a typical residential building (with annual electrical energy demand of 35,120 kWh) in different provinces/zones of K.S.A. has been studied by analyzing long-term solar radiation data. Five geographically distinct sites representing different provinces of the Kingdom have been selected. The monthly average daily solar radiation of K.S.A. varies from 3.03-7.51 kWh/m~2. NREL's (HOMER Energy's) HOMER software has been employed to perform the analysis.The simulation results indicate that for a hybrid system composed of 4 kWp PV system together with 10 kW diesel system and a battery storage of 3 h of autonomy (equivalent to three hours of average load), the PV penetration is 22%., 21%, 22%, 20%, and 20% at Abha (Southern Province), Hofuf (Eastern Province), Qurayat (Northern Province), Taif (Western Province), and Riyadh (Central Province) respectively. The cost of generating energy (COE, US$/kWh) from the above hybrid system has been found to be 0.179 $/kWh, 0.179 $/kWh, 0.178 $/kWh, 0.180 $/kWh, and 0.181 $/kWh at Abha, Hofuf, Qurayat, Taif, and Riyadh respectively. For a given hybrid system, the PV penetration is higher in Sourthern and Northern Province as compared to other provinces. Also, the study has examined the impact of PV penetration on: carbon emissions (Tons/year), diesel fuel consumption, Net Present Cost, cost of energy, etc. Furthermore, for a given hybrid configuration (for Northern Province), the study exhibits that increase in PV capacity results in decrease in the diesel-fuel-consumption/carbon-emissions and increase in COE./NPC/excess-energy.
机译:当前,世界正在将可再生太阳能视为发电的必不可少/长期/自然友好的选择。沙特阿拉伯王国(K.S.A)拥有大量的太阳辐射。 K.S.A.的商业/住宅建筑消耗总电能的约10-45%。在本文中,利用混合光伏-柴油-电池电力系统来满足K.S.A.的不同省份的典型住宅建筑(年电能需求为35120 kWh)的负荷进行经济分析。已通过分析长期太阳辐射数据进行了研究。已选择五个代表王国不同省的地理上不同的地点。 K.S.A.的月平均日太阳辐射变化范围为3.03-7.51 kWh / m〜2。仿真结果表明,对于由4 kWp光伏系统与10 kW柴油系统组成的混合动力系统以及3小时的自主电池存储时间(相当于3个小时),NREL(HOMER Energy)的HOMER软件进行了分析。的平均负载),PV渗透率分别为22%。分别是Abha(南部省),Hofuf(东部省),Qurayat(北部省),Taif(西部省),21%,22%,20%和20%,和利雅得(中部省)。在阿卜哈,发现上述混合动力系统的发电成本(COE,美元/ kWh)分别为0.179 $ / kWh,0.179 $ / kWh,0.178 $ / kWh,0.180 $ / kWh和0.181 $ / kWh ,Hofuf,Qurayat,Taif和Riyadh。对于给定的混合动力系统,南瑟尔省和北部省的光伏渗透率要高于其他省。此外,研究还研究了PV渗透对以下方面的影响:碳排放量(吨/年),柴油消耗,净现值,能源成本等。此外,对于给定的混合动力配置(针对北方省),该研究研究表明,PV容量的增加会导致柴油燃料消耗/碳排放量的减少以及COE./NPC/过剩能源的增加。

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