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Performance assessment of a 400 kWp multi- technology photovoltaic grid-connected pilot plant in arid region of Algeria

机译:阿尔及利亚干旱地区400 kWP多技术光伏电网连接厂的性能评估

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摘要

In this paper, a new study has been carried out to analyze the behavior of four different Photovoltaic (PV) module technologies such as the Mono-crystalline silicon, the Multi-crystalline silicon, the amorphous silicon and the Telluride Cadmium as sub-systems from which a 400kWp pilot plant have been constructed at Ghardaia (The northern-central Sahara desert of Algeria). In this work, the results obtained from experimental data acquisition over a period of one year have been analyzed and discussed in terms of plant power production. In addition to that, performance indicators comprising the reference yield, the final yield, the performance ratio, the capacity factor and a newly suggested factor called the power ratio have been used to assess the sub-systems energetic performances. The performances of the studied sub-systems have been compared, then, to those of other systems located in countries regarded as having similar radiometric and climatic conditions. An additional study have been conducted to evaluate the effect of such important climatic and operating parameters as wind speed, ambient temperature, solar irradiance and module temperature on the energetic performances of the studied sub-systems. The experimental results obtained from monitoring of the studied sub-systems indicate that the plant performs best when it is operated under irradiance comprised between 5.56 kWh/m(2) and 7.04 kWh/m(2) and ambient temperature between 2 degrees C and 45 degrees C. Based on energy production and thermal stability results, the present study has allowed the identification of the most efficient and the best suitable of the aforementioned PV technologies for such arid-regions conditions. (c) 2021 Elsevier Ltd. All rights reserved.
机译:在本文中,已经进行了一种新的研究,以分析四种不同光伏(PV)模块技术的行为,例如单晶硅,多晶硅,非晶硅和碲化镉和碲化镉作为子系统在Ghardaia(阿尔及利亚北部撒哈拉沙漠)建造了400kWp试点工厂。在这项工作中,在一年的实验数据采集中获得的结果已经在植物电力生产方面进行了分析和讨论。除此之外,包括参考产量,最终产量,性能比,容量因数和称为功率比的新建议因子的性能指标已被用于评估子系统的能量性能。然后,研究了研究的子系统的性能,然后比较了所在国家的其他系统,所以被认为具有相似的辐射和气候条件。另一项研究已进行了评估这些重要的气候和操作参数为风速,环境温度,太阳辐照度和模块温度对所研究的子系统的能量性能的效果。从研究的监测获得的实验结果表明,当在5.56千瓦/米(2)和7.04千瓦/米(2)和2度C和45之间的环境温度下,该工厂在辐照下运行最佳。基于能量产生和热稳定性的结果,本研究允许识别用于此类干旱区的上述PV技术的最有效和最佳适用性。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Renewable energy》 |2021年第7期|488-501|共14页
  • 作者单位

    Ctr Dev EnergiesRenouvelables EPST CDER Unite Dev Equipements Solaires UDES Algiers Algeria;

    Ctr Dev EnergiesRenouvelables EPST CDER Unite Dev Equipements Solaires UDES Algiers Algeria;

    Ctr Dev EnergiesRenouvelables EPST CDER Unite Dev Equipements Solaires UDES Algiers Algeria;

    Ctr Dev EnergiesRenouvelables EPST CDER Unite Dev Equipements Solaires UDES Algiers Algeria;

    CEREFE Commissariat Energies Renouvelables & Efficac Ene Algiers Algeria;

  • 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

    PV multi Technology; PV performances; Thermal behavior; Performance ratio; Capacity factor;

    机译:PV多技术;光伏性能;热行为;绩效比例;容量因子;

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