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Economics of Residential Photovoltaic and Wind Systems in Arizona and California.

机译:亚利桑那州和加利福尼亚州的住宅光伏和风电系统经济学。

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摘要

Renewable energy has been a very hot topic in recent years due to the traditional energy crisis. Incentives that encourage the renewables have been established all over the world. Ordinary homeowners are also seeking ways to exploit renewable energy. In this thesis, residential PV system, wind turbine system and a hybrid wind/solar system are all investigated.;The solar energy received by the PV panels varies with many factors. The most essential one is the irradiance. As the PV panel been installed towards different orientations, the incident insolation received by the panel also will be different. The differing insolation corresponds to the different angles between the irradiance and the panel throughout the day. The result shows that for PV panels in the northern hemisphere, the ones facing south obtain the highest level insolation and thus generate the most electricity. However, with the two different electricity rate plans, flat rate plan and TOU (time of use) plan, the value of electricity that PV generates is different.;For wind energy, the wind speed is the most significant variable to determine the generation of a wind turbine. Unlike solar energy, wind energy is much more regionally dependent. Wind resources vary between very close locations. As expected, the result shows that, larger wind speed leads to more electricity generation and thus shorter payback period.;For the PV/wind hybrid system, two real cases are analyzed for Altamont and Midhill, CA. In this part, the impact of incentives, system cost and system size are considered. With a hybrid system, homeowners may choose different size combinations between PV and wind turbines. It turns out that for these two locations, the system with larger PV output always achieve a shorter payback period due to the lower cost. Even though, for a longer term, the system with a larger wind turbine in locations with excellent wind resources may lead to higher return on investment. Meanwhile, impacts of both wind and solar incentives (mainly utility rebates) are analyzed. At last, effects of the cost of both renewables are performed.
机译:由于传统的能源危机,可再生能源近年来已成为非常热门的话题。全世界已经建立了鼓励可再生能源的激励措施。普通房主也在寻找开发可再生能源的方法。本文对住宅光伏系统,风力发电机系统以及风/太阳能混合系统进行了全面的研究。最重要的是辐照度。由于光伏面板的安装方向不同,因此面板接收到的入射日照也将有所不同。一天中不同的日照度对应于辐照度和面板之间的不同角度。结果表明,对于北半球的光伏面板,朝南的光伏面板获得的日照强度最高,因此产生的电能最多。但是,在两种不同的电费计划,统一费率计划和TOU(使用时间)计划的情况下,PV产生的电力价值是不同的。对于风能,风速是决定发电量的最大变量。风力涡轮机。与太阳能不同,风能在很大程度上取决于地区。风资源在非常接近的位置之间变化。如预期的那样,结果表明,较大的风速导致更多的发电量,从而缩短了投资回收期。对于光伏/风电混合系统,分析了两个实际案例,分别是加利福尼亚州的Altamont和Midhill。在这一部分中,考虑了激励措施,系统成本和系统规模的影响。对于混合动力系统,房主可以在PV和风力涡轮机之间选择不同的尺寸组合。事实证明,对于这两个位置,由于成本较低,具有较大PV输出的系统始终可实现较短的投资回收期。即使从长远来看,在风力资源优越的地区使用大型风力发电机组的系统也可能会带来更高的投资回报率。同时,分析了风能和太阳能激励措施(主要是公用事业折扣)的影响。最后,实现了两种可再生能源成本的影响。

著录项

  • 作者

    An, Wen.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Alternative Energy.;Engineering Electronics and Electrical.;Energy.
  • 学位 M.S.
  • 年度 2012
  • 页码 101 p.
  • 总页数 101
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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