Techno-economic analysis of an off-grid photovoltaic natural gas power system for a university

P. Sunderan, B. Singh, N. M. Mohamed, N. Husain
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引用次数: 9

Abstract

The objective of this study is to determine the technical and economical feasibility of a PV-natural gas hybrid power system to supply electricity and energy for a university in Malaysia. The yearly average daily solar radiation received at the university campus area is about 4.77 kWh/m2 and this provides for the implementation of a hybrid PV power system. Hybrid Optimization Model for Electric Renewables (HOMER) software was used to size, simulate and evaluate the hybrid power system in this analysis. The simulations provide some insights into the monthly electricity generated by the photovoltaic-natural gas system, net present cost (NPC) and cost of energy (COE) of the system, renewable fraction (RF) and greenhouse gas emissions of the system. The simulation in HOMER was performed for a 2MW PV generator together with 8.4 MW gas generator. From the simulation results, it is found that for a hybrid system with RF of 9%, the NPC of the hybrid system is US$ 123,231,728 and the COE is $0.272 which is much lower than what it would cost for a gas only system (RF is 0%). With the inclusion of PV, the amount of natural gas burned in the hybrid system was reduced and this in turn reduced the amount of environmentally polluting gases emitted into the atmosphere by 7.2% as compared to a gas only system. This analysis suggests that a PV hybrid power system should be implemented as it a cleaner and more economical method of power generation.
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某高校离网光伏天然气发电系统技术经济分析
本研究的目的是确定为马来西亚一所大学提供电力和能源的光伏-天然气混合动力系统的技术和经济可行性。大学校园地区每年平均每天接收的太阳辐射约为4.77千瓦时/平方米,这为实现混合光伏发电系统提供了条件。本分析采用可再生电力混合优化模型(HOMER)软件对混合电力系统进行规模、仿真和评价。模拟提供了一些关于光伏-天然气系统的月发电量、系统的净当前成本(NPC)和能源成本(COE)、可再生部分(RF)和系统的温室气体排放的见解。在HOMER中对一台2MW光伏发电机组和8.4 MW燃气发电机组进行了仿真。仿真结果表明,对于RF为9%的混合动力系统,混合动力系统的NPC为123,231,728美元,COE为0.272美元,远低于纯燃气系统(RF为0%)的成本。由于采用了光伏发电,混合动力系统中燃烧的天然气量减少了,与纯气体系统相比,排放到大气中的污染气体量减少了7.2%。这一分析表明,光伏混合动力系统应该被实施,因为它是一种更清洁、更经济的发电方式。
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