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Photovoltaic pumping systems driven by tracking collectors. Experiments and simulation

机译:跟踪收集器驱动的光伏泵系统。实验与模拟

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摘要

An experimental facility of a photovoltaic array mounted on a one-axis east-west tracker, coupled to a pumping system, was tested for several months, under two working conditions: fixed and tracking mode. Results show that the gain obtained in the daily water volume is higher than the one obtained for the collected irradiation. For values of hemispherical irradiation equal to 5000 and 6000 Wh/m~2, the irradiation collected by the tracker plane is 19 and 24% higher than the one collected by the fixed system. However, gains in water volume are equal to 37 and 41%. The reasons for the increase in pumped water volume being larger than the increase in collected irradiance are analyzed. To generalize the experimental results, a long term estimate of the water volume pumped by PV systems driven by tracking collectors was carried out via the utilizability method. As a result, we describe how the benefit ratio in pumped water volume is affected by the contributions due to collected irradiance, utilizability function and a factor Ω, related to the non-linearity of the characteristic curve. Finally, the influence of the critical irradiance (I_C) (minimum value of irradiance, necessary to start the water pump operation) on the benefit obtained in pumped water volume, by using tracking systems, is discussed. Numerical simulations show that the increase in pumped water volume, annual average, varies between 1.29 and 1.53 for (I_C) within the interval from 275 to 575 W/m~2.
机译:安装在单轴东西向跟踪器上的光伏阵列的实验设备与泵送系统耦合,在固定和跟踪两种工作条件下进行了几个月的测试。结果表明,每日水量所获得的增益高于收集到的辐射所获得的增益。对于等于5000和6000 Wh / m〜2的半球形辐射值,跟踪器平面收集的辐射比固定系统收集的辐射高19和24%。但是,水量的增加等于37%和41%。分析了抽水量增加大于收集的辐照度增加的原因。为了概括实验结果,通过可利用性方法对由跟踪收集器驱动的光伏系统泵送的水量进行了长期估算。结果,我们描述了抽水量的收益率是如何受到收集的辐照度,可利用性函数和因数Ω(与特性曲线的非线性相关)的贡献的影响。最后,通过跟踪系统,讨论了临界辐照度(I_C)(辐照度的最小值,启动水泵运行所必需的)对抽水量获得的收益的影响。数值模拟结果表明,(I_C)的抽水量(年平均值)的增加在275至575 W / m〜2的范围内变化(I_C)。

著录项

  • 来源
    《Solar Energy》 |2003年第1期|p.45-52|共8页
  • 作者单位

    Research Group on Alternative Energy Sources (FAE), Nuclear Energy Department (DEN), Federal University of Pernambuco UFPE, Av. Prof. Luiz Freire, 1000, 50740-540, Recife (PE), Brazil;

  • 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 太阳能技术;
  • 关键词

  • 入库时间 2022-08-18 00:28:37

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