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首页> 外文期刊>Solar Energy >Performance of a concentrated photovoltaic energy system with static linear Fresnel lenses
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Performance of a concentrated photovoltaic energy system with static linear Fresnel lenses

机译:具有静态线性菲涅耳透镜的集中式光伏能源系统的性能

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摘要

A new type of greenhouse with linear Fresnel lenses in the cover performing as a concentrated photovoltaic (CPV) system is presented. The CPV system retains all direct solar radiation, while diffuse solar radiation passes through and enters into the greenhouse cultivation system. The removal of all direct radiation will block up to 77% of the solar energy from entering the greenhouse in summer, reducing the required cooling capacity by about a factor 4. This drastically reduce the need for cooling in the summer and reduce the use of screens or lime coating to reflect or block radiation. All of the direct radiation is concentrated by a factor of 25 on a photovoltaic/thermal (PV/T) module and converted to electrical and thermal (hot water) energy. The PV/T module is kept in position by a tracking system based on two electric motors and steel cables. The energy consumption of the tracking system, ca. 0.51 Wm~(-2), is less than 2% of the generated electric power yield. A peak power of 38 W m~(-2) electrical output was measured at 792 W m~(-2) incoming radiation and a peak power of 170 W m~2 thermal output was measured at 630 W m~(-2) incoming radiation of. Incoming direct radiation resulted in a thermal yield of 56% and an electric yield of 11%: a combined efficiency of 67%. The annual electrical energy production of the prototype system is estimated to be 29 kW h m~(-2) and the thermal yield at 518 MJ m~(-2). The collected thermal energy can be stored and used for winter heating. The generated electrical energy can be supplied to the grid, extra cooling with a pad and fan system and/or a desalination system. The obtained results show a promising system for the lighting and temperature control of a greenhouse system and building roofs, providing simultaneous electricity and heat. It is shown that the energy contribution is sufficient for the heating demand of well-isolated greenhouses located in north European countries.
机译:提出了一种新型的温室,温室的盖上带有线性菲涅尔透镜,可以用作聚光光伏(CPV)系统。 CPV系统保留所有直接的太阳辐射,而漫射的太阳辐射则穿过并进入温室栽培系统。除去所有直接辐射,夏天将阻止高达77%的太阳能进入温室,从而将所需的冷却能力降低了约4倍。这大大减少了夏天对冷却的需求,并减少了屏幕的使用或石灰涂层以反射或阻挡辐射。所有直接辐射都以25的倍数集中在光伏/热(PV / T)模块上,并转换为电能和热能(热水)。通过基于两个电动机和钢缆的跟踪系统将PV / T模块固定在适当的位置。跟踪系统的能耗,约。 0.51 Wm〜(-2)小于所产生电能的2%。在792 W m〜(-2)入射辐射下测得38 W m〜(-2)的峰值功率输出,在630 W m〜(-2)处测得170 W m〜(2)的峰值功率输出的辐射。入射的直接辐射导致热产率为56%,电产率为11%:综合效率为67%。原型系统的年发电量估计为29 kW h m〜(-2),热产量为518 MJ m〜(-2)。收集的热能可以存储并用于冬季采暖。产生的电能可以提供给电网,并通过垫和风扇系统和/或脱盐系统进行额外的冷却。获得的结果显示了一种有前途的系统,可用于温室系统和建筑物屋顶的照明和温度控制,同时提供电和热。结果表明,能量贡献足以满足北欧国家/地区隔离良好的温室的供暖需求。

著录项

  • 来源
    《Solar Energy》 |2011年第3期|p.432-442|共11页
  • 作者单位

    Wageningen UR Greenhouse Horticulture, P. O. Box 644, 6700 AP Wageningen, The Netherlands;

    Wageningen UR Greenhouse Horticulture, P. O. Box 644, 6700 AP Wageningen, The Netherlands;

    Wageningen UR Greenhouse Horticulture, P. O. Box 644, 6700 AP Wageningen, The Netherlands;

    Wageningen UR Greenhouse Horticulture, P. O. Box 644, 6700 AP Wageningen, The Netherlands;

    Wageningen UR Greenhouse Horticulture, P. O. Box 644, 6700 AP Wageningen, The Netherlands;

    Wageningen UR Greenhouse Horticulture, P. O. Box 644, 6700 AP Wageningen, The Netherlands;

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

    Fresnel; Concentrators; Energy options; CPV system; Solar cell; Greenhouse;

    机译:菲涅耳;选矿厂;能源选择;CPV系统;太阳能电池;温室;

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