A HOMER-Aided Study for PV System Design and Cost Analysis for a College Campus in Baghdad

Q4 Biochemistry, Genetics and Molecular Biology Journal of Biomolecular Techniques Pub Date : 2023-06-24 DOI:10.51173/jt.v5i2.722
Luqman Q. Ibrahim, Ahmed J. Abid, Adel A. Obed, Ameer L. Saleh, Reheel J. Hassoon
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Abstract

Due to the lack of electric power generation in Iraq and as a step forward to adopting a sustainable campus of the Electrical Engineering Technical College (EETC), Middle Technical University, in Baghdad, Iraq, and the critical demand for energy in our institutions, particularly educational institutions, this pilot study was proposed. The study aims to analyze the adoption of PV solar systems on the campus in the presence and absence of grid power and how that affects our design discussion in the matter of Net Present Cost (NPC), Cost of Energy (COE), Operation Cost, initial cost, power production, fuel consumption, and the annual net consumed energy from the grid. Forty-five different scenarios were analyzed for all possible cases. The existence of backup generators on the campus was also taken into consideration; G1-350kVA and G2-500kVA. The study has two stages. In the first stage, they used a walkthrough energy audit in the (EETC) to estimate the load profile of the campus, while in the second stage, they used HOMER Pro to analyze this data. The results show that adding an on-grid PV system to the campus grid can reduce the COE by 58%, and it is the best scenario when the grid is present, with an NPC, operation cost ($/yr), and initial capital ($) equal to $77,680, $1,460, and $59,018 respectively. When the grid was absent, the winning scenario was using a PV solar system with a 100-kWh lithium battery storage and a converter. Despite that scenario being the best solution, the produced energy cost is 372% higher than the grid energy cost (0.1 $/kWh) in Iraq, with an NPC, operation cost ($/yr.), and initial capital ($) equal to $337,291, $7,855, and 236878 respectively. Finally, both winning scenarios have no generator, and this will have a high impact on the campus environment.
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巴格达某大学校园光伏系统设计与成本分析的家庭辅助研究
由于伊拉克缺乏发电能力,作为伊拉克巴格达中级技术大学电气工程技术学院(EETC)采用可持续校园的一步,以及我们的机构,特别是教育机构对能源的迫切需求,提出了这项试点研究。本研究旨在分析在有和没有电网的情况下,光伏太阳能系统在校园的采用,以及它如何影响我们在净当前成本(NPC)、能源成本(COE)、运行成本、初始成本、电力生产、燃料消耗和每年从电网净消耗的能源等方面的设计讨论。对所有可能的情况分析了45种不同的情况。还考虑了校园内备用发电机的存在;G1-350kVA和G2-500kVA。这项研究分为两个阶段。在第一阶段,他们使用EETC中的能源审计演练来估计校园的负荷概况,而在第二阶段,他们使用HOMER Pro来分析这些数据。结果表明,在校园电网中增加一个并网光伏系统可以降低58%的COE,并且当电网存在时,这是最佳方案,NPC,运营成本($/年)和初始资本($)分别等于77,680美元,1,460美元和59,018美元。在没有电网的情况下,获胜的方案是使用带有100千瓦时锂电池存储和转换器的光伏太阳能系统。尽管该方案是最佳解决方案,但在伊拉克,生产能源成本比电网能源成本(0.1美元/千瓦时)高出372%,其中NPC、运营成本($/年)和初始资本($)分别为337,291美元、7,855美元和236878美元。最后,两个获胜的场景都没有发电机,这将对校园环境产生很大的影响。
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来源期刊
Journal of Biomolecular Techniques
Journal of Biomolecular Techniques Biochemistry, Genetics and Molecular Biology-Molecular Biology
CiteScore
2.50
自引率
0.00%
发文量
9
期刊介绍: The Journal of Biomolecular Techniques is a peer-reviewed publication issued five times a year by the Association of Biomolecular Resource Facilities. The Journal was established to promote the central role biotechnology plays in contemporary research activities, to disseminate information among biomolecular resource facilities, and to communicate the biotechnology research conducted by the Association’s Research Groups and members, as well as other investigators.
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