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Design and Simulation of a Solar Chimney PV/T Power Plant in Northwest China

机译:西北太阳烟囱PV / T电厂的设计与仿真

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摘要

A solar chimney PV/T power plant (SCPVTPP) is proposed. Mathematical models are established for the PV/T solar collector, the chimney, and the power conversion unit, respectively. Performances of the designed SCPVTPP are then simulated. The SCPVTPPs with different PV module areas are finally discussed. It is found that the PV cells hold the highest temperature in the solar collector. Temperature rise of the PV module has significant influences to its power generation. Without cooling, the PV power capacity has an average decrease of 28.71%. The contradictory influences of temperature rise and airflow cooling lead to an 11.81% decrease of the average power capacity. By adding the power generated by PVT, the total PV-related power contribution increases by 4.72%. With the increase of the solar collector ratio, the temperature rise and the wind velocity both first decrease then increase, the SCPP power productivity decreases linearly, and the PV power productivity increases linearly, whereas the PVT power productivity first increases linearly then increases superlinearly. There is a reversed solar collector ratio, exceeding which the PV generates most power. In this study, solar thermal power takes the major role when the solar PV area ratio is smaller than 0.055.
机译:提出了太阳烟囱PV / T发电厂(SCPVTPP)。分别为PV / T太阳能集电极,烟囱和电力转换单元建立数学模型。然后模拟设计的SCPVTPP的性能。最终讨论具有不同光伏模块区域的SCPVTPPS。发现光伏电池在太阳能收集器中保持最高温度。 PV模块的温度升高对其发电具有显着影响。无冷却,光伏电量的平均降低28.71%。温升和气流冷却的矛盾影响导致平均功率容量的10.81%降低。通过添加PVT产生的功率,总光谱相关功率贡献增加了4.72%。随着太阳能收集器比的增加,温度升高和风速均首先降低随后增加,SCPP电力生产率线性降低,并且PV电力生产率线性增加,而PVT电力生产率首先线性增加,然后超级增加。有逆转的太阳能收集器比,超过PV产生大多数功率。在这项研究中,太阳能光伏面积比小于0.055时,太阳能热功率取得了重要作用。

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    Hohai Univ Coll Mech &

    Elect Engn Changzhou 213022 Peoples R China;

    Hohai Univ Coll Mech &

    Elect Engn Changzhou 213022 Peoples R China;

    Hohai Univ Coll Mech &

    Elect Engn Changzhou 213022 Peoples R China;

    Hohai Univ Coll Mech &

    Elect Engn Changzhou 213022 Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理化学计量;
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  • 入库时间 2022-08-20 02:21:19

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