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Closed landfills to solar energy power plants: Estimating the solar potential of closed landfills in California.

机译:太阳能发电厂的封闭式垃圾填埋场:估算加利福尼亚州封闭式垃圾填埋场的太阳能潜力。

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摘要

Solar radiation is a promising source of renewable energy because it is abundant and the technologies to harvest it are quickly improving. An ongoing challenge is to find suitable and effective areas to implement solar energy technologies without causing ecological harm. In this regard, one type of land use that has been largely overlooked for siting solar technologies is closed or soon to be closed landfills. Utilizing Geographic Information System (GIS) based solar modeling; this study makes an inventory of solar generation potential for such sites in the state of California. The study takes account of various site characteristics in relation to the siting needs of photovoltaic (PV) geomembrane and dish-Stirling technologies (e.g., size, topography, closing date, solar insolation, presence of landfill gas recovery projects, and proximity to transmission grids and roads).;This study reaches the three principal conclusions. First, with an estimated annual solar electricity generation potential of 3.7 million megawatt hours (MWh), closed or soon to be closed landfill sites could provide an amount of power significantly larger than California's current solar electric generation. Secondly, the possibility of combining PV geomembrane, dish-Stirling, and landfill gas (LFG) to energy technologies at particular sites deserves further investigation. Lastly, there are many assumptions, challenges, and limitations in conducting inventory studies of solar potential for specific sites, including the difficulty in finding accurate data regarding the location and attributes of potential landfills to be analyzed in the study. Furthermore, solar modeling necessarily simplifies a complex phenomenon, namely incoming solar radiation. Additionally, site visits, while necessary for finding details of the site, are largely impractical for a large scale study.
机译:太阳辐射是一种有前途的可再生能源,因为它具有丰富的资源,而收集它的技术也在迅速改善。当前的挑战是找到合适且有效的区域来实施太阳能技术而不会造成生态损害。在这方面,由于选址太阳能技术而被很大程度上忽略的一种土地利用方式是封闭的或即将封闭的垃圾填埋场。利用基于地理信息系统(GIS)的太阳模型;这项研究列出了加利福尼亚州此类场所的太阳能发电潜力清单。这项研究考虑了与光伏(PV)土工膜和碟式斯特林技术的选址需求有关的各种场所特征(例如,尺寸,地形,关闭日期,日晒,存在垃圾填埋气回收项目以及与输电网格的距离)和道路)。该研究得出三个主要结论。首先,估计每年的太阳能发电潜力为370万兆瓦时(MWh),关闭或即将关闭的垃圾填埋场可提供的电力量将大大超过加利福尼亚州目前的太阳能发电量。其次,在特定地点将光伏土工膜,碟式斯特林和垃圾填埋气(LFG)与能源技术相结合的可能性值得进一步研究。最后,在进行特定地点的太阳能潜力清单研究时,存在许多假设,挑战和局限性,包括难以找到有关要在研究中进行分析的潜在垃圾填埋场的位置和属性的准确数据。此外,太阳模型必须简化复杂的现象,即入射的太阳辐射。此外,尽管进行现场访问对于查找站点的详细信息是必需的,但是对于大规模研究而言,这实际上是不切实际的。

著录项

  • 作者

    Munsell, Devon R.;

  • 作者单位

    University of Southern California.;

  • 授予单位 University of Southern California.;
  • 学科 Alternative Energy.;Energy.;Geodesy.
  • 学位 M.S.
  • 年度 2013
  • 页码 122 p.
  • 总页数 122
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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