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首页> 外文期刊>Solar Energy >Temperature uniformity enhancement of densely packed high concentrator photovoltaic module using four quadrants microchannel heat sink
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Temperature uniformity enhancement of densely packed high concentrator photovoltaic module using four quadrants microchannel heat sink

机译:温度均匀性使用四象限微型通道散热器的密集包装高浓缩器光伏模块增强

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摘要

The dense solar radiation received by a high concentration photovoltaic module (HCPVM) causes a high cell temperature. In this module, multiple solar cells were electrically connected in both series and parallel. The higher temperature of the solar cell in the series string limits the generated power for the whole string. Therefore, it is crucial to employ a uniform cooling mechanism for higher electrical performance along with a longer lifespan. The uniform cooling is required to attain safe operating temperature and prevent the hot spot formation. Hence, in the current work, a four-compartment microchannel heat sink is proposed for the thermal management of HCPVM under high solar concentration of 1000 suns (1 sun = 1000 W/m(2)). A three-dimensional (3D) conjugate heat transfer model with exergy analysis is developed and validated. This model was used to investigate the effect of inlet and outlet orientation of four quadrants microchannel heat sink as a cooling method for HCPVM. Eight different orientations of parallel-flow and counter-flow conditions were investigated and compared in terms of temperature non-uniformity, module power, and exergy performance. The results showed that the inlet and outlet orientation was a key role affecting the module temperature non-uniformity. For the counter-flow operated heat sinks, the HCPVM can be operated under a temperature non-uniformity of 3.1 degrees C at total inlet module mass flowrate of 350 g/min and solar concentration ratio of 1000 suns. In addition, the attained HCPVM electrical, thermal, and overall exergy efficiency were 37.2%, 8.2%, and 45.4% respectively at the same conditions.
机译:由高浓度光伏模块(HCPVM)接收的致密太阳辐射导致高电平的细胞温度。在该模块中,多个太阳能电池两者串联电连接并并联电连接。系列串中太阳能电池的较高温度限制了整个串的产生功率。因此,采用均匀的冷却机制对于更高的电气性能以及更长的寿命来说至关重要。需要均匀的冷却以获得安全的工作温度并防止热点形成。因此,在当前的工作中,提出了一个四室微通道散热器,用于高太阳浓度为1000℃的HCPVM的热管理(1阳光= 1000W / m(2))。开发并验证了具有漏洞分析的三维(3D)共轭传热模型。该模型用于探讨四象限微通道散热器的入口和出口取向作为HCPVM的冷却方法的影响。在温度非均匀性,模块功率和高度性能方面,研究了并进行了八种不同的平行流动和反流条件取向。结果表明,入口和出口方向是影响模块温度不均匀性的关键作用。对于逆流操作的散热器,HCPVM可以在350g / min的总入口模块质量流量的350g / min的总入口模块和1000℃的太阳能浓度比的温度下操作。此外,在相同条件下,达到的HCPVM电气,热和总体高效效率分别为37.2%,8.2%和45.4%。

著录项

  • 来源
    《Solar Energy》 |2020年第5期|446-464|共19页
  • 作者单位

    Egypt Japan Univ Sci & Technol Chem & Petrochem Engn Dept Alexandria 21934 Egypt|Aswan Univ Fac Energy Engn Mech Power Engn Dept Aswan 81528 Egypt;

    Aswan Univ Fac Energy Engn Mech Power Engn Dept Aswan 81528 Egypt;

    Egypt Japan Univ Sci & Technol Chem & Petrochem Engn Dept Alexandria 21934 Egypt|City Sci Res & Technol Applicat Fabricat Technol Dept Adv Technol & New Mat & Res Inst Alexandria Egypt;

    Tokyo Inst Technol Dept Chem Sci & Engn Tokyo 1528552 Japan;

    Egypt Japan Univ Sci & Technol Chem & Petrochem Engn Dept Alexandria 21934 Egypt|Alexandria Univ Fac Engn Chem Engn Dept Alexandria 11432 Egypt;

    Mansoura Univ Mech Power Engn Dept Mansoura 35516 Egypt;

  • 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

    Densely packed module; Solar concentration ratio; Microchannel heat sink; Uniform cooling; Exergy analysis;

    机译:密集包装模块;太阳能浓度比;微通道散热器;均匀的冷却;漏洞分析;

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