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The effectiveness of small scale Photovoltaic (PV) systems design and cost analysis simulation on Saudi Arabian Economy.

机译:小型光伏(PV)系统设计和成本分析模拟对沙特阿拉伯经济的有效性。

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摘要

The advantages of Renewable Energy Sources (RES) are much more than the disadvantages, RES such as solar, wind energy, biomass, and geothermal, which can be used for generating distributed power but cannot directly replace the existing electric energy grid technologies. The latter are far too well established to abandon, while the new RES technologies are not sufficiently developed to meet the total energy demand. Therefore, it is sensible to gradually infuse RES into existing grids and transform the system over time.;Saudi Arabia (SA) is a semi-developed nation with a population of over twenty nine million people. It is the largest country in western Asia with an area of 2.225MKm2. SA's largest export is oil, owning 1/5 of the world's supply, and producing twelve million barrels a day. However, SA is far behind in developing a smart grid and RES. A lot of this is to do with lack of participation by both the government and the private business sector. Currently SA spends over ;SA is the largest consumer of petroleum in the Middle East, due to the high demand for transportation and electricity generation. According to the Saudi electrical company, the total amount of generated power in 2011 was 190.280GW. In addition, SA's electricity consumption is currently growing 8% a year. SA aims to generate 55GW of renewable energy by 2020, in order to free up fossil fuels for export. 41GW of the 55GW will be generated from solar energy. Smart grid technologies are also under consideration in SA; this will allow an efficient and reliable way to control the energy in the future. In addition, the potential for wind and geothermal energy is very high. In this thesis, there is a full exploration of RES components which are critical to manage carbon emission and the limitations of the current grid to the new RES technologies, which face barriers to full-scale deployment.;A study in Dhahran, SA has been simulated on a installing a Dual-Tariff PV system using HOMER. The result of the simulation has been discussed, analyzed, and plotted. We also give evidence in the thesis how useful the small PV systems can be as oppose to the larger scale system that must deal with location issues.
机译:可再生能源(RES)的优势远远超过可用于产生分布式电源但不能直接替代现有电网技术的劣势,如太阳能,风能,生物质能和地热能。后者已经建立的太完善了,不能放弃,而新的RES技术还不足以满足总能源需求。因此,逐渐将RES注入现有的网格并随着时间的推移来转换系统是明智的。沙特阿拉伯(SA)是一个半发达的国家,人口超过2千9百万。它是西亚最大的国家,面积为2.225MKm2。 SA的最大出口是石油,占世界供应量的1/5,日产量为1200万桶。但是,SA在开发智能电网和RES方面远远落后。这在很大程度上与政府和私营企业都缺乏参与有关。目前,SA的支出超过; SA是中东最大的石油消费国,原因是对运输和发电的需求很高。根据沙特电力公司的数据,2011年的总发电量为190.280GW。此外,南非的电力消耗目前每年增长8%。 SA的目标是到2020年生产55GW的可再生能源,以释放化石燃料用于出口。 55GW中的41GW将来自太阳能。南非也正在考虑智能电网技术。这将为将来控制能源提供有效而可靠的方法。此外,风能和地热能的潜力很大。本文对RES组件进行了全面的探索,这些组件对于管理碳排放至关重要,并且当前电网对新RES技术的局限性也面临着大规模部署的障碍。在使用HOMER安装双关税光伏系统上进行了模拟。仿真的结果已经过讨论,分析和绘制。我们还在论文中提供了证据,证明小型光伏发电系统与必须处理位置问题的大型光伏发电系统相对有用。

著录项

  • 作者

    Almansour, Faris Abdullah.;

  • 作者单位

    North Carolina Agricultural and Technical State University.;

  • 授予单位 North Carolina Agricultural and Technical State University.;
  • 学科 Information Technology.;Energy.;Natural Resource Management.
  • 学位 M.S.
  • 年度 2013
  • 页码 98 p.
  • 总页数 98
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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