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Experimental performance of an ultra-low-cost solar photovoltaic-thermal (PVT) collector using aluminum minichannels and nonimaging optics

机译:使用铝制迷你烷基和非纵向光学器件的超低成本太阳能光伏 - 热(PVT)收集器的实验性能

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摘要

Electricity, space heating, and hot water are ubiquitous needs among modern buildings. Solar photovoltaic/thermal (PVT) technologies are well suited to provide all of these in a distributed and renewable manner, however, the high cost of current PVT technologies remains a major barrier to implementation as the technology competes for roof space with low cost standalone PV modules. In an effort to reduce costs, a new type of solar PVT collector has been developed which replaces the traditional packaging materials with a low cost nonimaging optic and replaces sheet-and-tube heat exchange materials with a low cost and thermally efficient aluminum minichannel. A 1.2 m(2) aperture prototype built using silicon SunPower solar cells has demonstrated 57.4% thermal efficiency and 12.3% electric efficiency at ambient temperature and a maximum (stagnation) temperature around 80 degrees C. Extrapolating this performance shows the PVT collector will to generate 226 kW-hours (kWh) of electricity and 603 kWh of heat per square meter each year for a solar resource of 5.5 kWh/m(2)/day, and by doing so avoid 1280 kWh of natural gas consumption and 183.8 kg of CO2 emissions. Technical performance is comparable with commercial PVT systems today, but with a much lower estimated module cost of $81/m(2) ($0.54/W-DC). A side-by-side analysis indicates the PVT collector can be installed for 85% of the capital cost of side-by-side PV + T with only 70% of the required roof space.
机译:电力,空间加热和热水是现代建筑中无处不在的需求。太阳能光伏/热(PVT)技术非常适合于以分布式和可再生方式提供所有这些,然而,当前PVT技术的高成本仍然是实施的主要障碍,因为该技术竞争低成本的屋顶空间的屋顶空间模块。为了降低成本,已经开发出一种新型的太阳能PVT收集器,其用低成本的非学影光学器件取代了传统的包装材料,并用低成本和热高效的铝合金替换板和管热交换材料。使用硅SunPower太阳能电池建造的1.2米(2)孔径原型已经展示了57.4%的热效率和12.3%的电效率在环境温度下,最大(停滞)温度约为80摄氏度。推断该性能显示PVT收集器将产生每年226千瓦小时(千瓦时)电力和603千瓦时每平方米为每平方米为5.5千瓦时/米(2)/天,避免1280千瓦时的天然气消耗和183.8公斤的二氧化碳排放。技术性能与今天的商业PVT系统相媲美,但估计的模块成本低于81 / m(2)(0.54美元/ W-DC)。并排分析表明PVT收集器可以安装85%的旁边PV + T的资本成本,只有70%所需的屋顶空间。

著录项

  • 来源
    《Applied Energy》 |2020年第15期|114894.1-114894.11|共11页
  • 作者单位

    Univ Calif Merced Sch Engn 5200 Lake Rd Merced CA 95340 USA;

    Univ Calif Merced Sch Engn 5200 Lake Rd Merced CA 95340 USA;

    Univ Calif Merced Sch Engn 5200 Lake Rd Merced CA 95340 USA;

    Univ Calif Merced Sch Engn 5200 Lake Rd Merced CA 95340 USA;

    Univ Calif Merced Sch Engn 5200 Lake Rd Merced CA 95340 USA;

    Univ Calif Merced Sch Engn 5200 Lake Rd Merced CA 95340 USA;

    Univ Calif Merced Sch Engn 5200 Lake Rd Merced CA 95340 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Solar; Photovoltaic; Thermal; Hybrid; PVT; Nonimaging; Minichannel;

    机译:太阳能;光伏;热;杂交;PVT;非肖像;MINICHANNEL;

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