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Experimental investigation of the impact of airborne dust deposition on the performance of solar photovoltaic (PV) modules

机译:机载尘埃沉积对太阳能光伏(PV)模块性能影响的实验研究

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摘要

Deposition of airborne dust on outdoor photovoltaic (PV) modules may decrease the transmittance of solar cell glazing and cause a significant degradation of solar conversion efficiency of PV modules. Previous studies of this issue indicated that dust deposition is closely related to the tilt angle of solar collector, exposure period, site climate conditions, wind movement and dust properties. However, few studies considered the influence of the properties of PV module itself on dust deposition and efficiency degradation, such as the cell types and surface materials. This experimental work aimed to study the dust accumulation onto different types of solar PV modules and the corresponding efficiency degradation. The experiment was designed and conducted in the laboratory with a sun simulator and a test chamber. The degradation of PV module efficiency caused by dust deposition under various conditions was investigated. The results indicated that dust pollution has a significant impact on PV module output. With dust deposition density increasing from 0 to 22 g m~2, the corresponding reduction of PV output efficiency grew from 0 to 26%. The reduction of efficiency has a linear relationship with the dust deposition density, and the difference caused by cell types was not obvious. When the dust deposition density was fixed, the reductions of output efficiency at relatively lower or higher solar densities were much more severe. Moreover, the surface material may influence dust deposition and accumulation considerably. The poly-crystalline silicon module packaged with epoxy degraded faster than other modules with glass surface under the same dust concentration.
机译:在室外光伏(PV)模块上沉积空气传播的灰尘可能会降低太阳能电池玻璃的透光率,并导致PV模块的太阳能转换效率显着下降。对此问题的先前研究表明,灰尘的沉积与太阳能集热器的倾斜角,暴露时间,现场气候条件,风的运动和灰尘特性密切相关。但是,很少有研究考虑光伏组件本身的特性对灰尘沉积和效率降低的影响,例如电池类型和表面材料。该实验工作旨在研究粉尘在不同类型的太阳能光伏组件上的积聚以及相应的效率下降。该实验是在实验室中使用阳光模拟器和测试室进行设计和进行的。研究了在各种条件下由于粉尘沉积导致的光伏组件效率下降。结果表明,粉尘污染对光伏组件的输出有重大影响。随着粉尘沉积密度从0增加到22 g m〜2,相应的PV输出效率降低从0增加到26%。效率的降低与粉尘的沉积密度呈线性关系,且由电池类型引起的差异不明显。当粉尘沉积密度固定时,在相对较低或较高的太阳能密度下,输出效率的降低更为严重。此外,表面材料可能会严重影响粉尘的沉积和聚集。在相同的粉尘浓度下,用环氧树脂包装的多晶硅模块比其他玻璃表面模块降解得更快。

著录项

  • 来源
    《Atmospheric environment》 |2011年第25期|p.4299-4304|共6页
  • 作者

    Hai Jiang; Lin Lu; Ke Sun;

  • 作者单位

    Renewable Energy Research Croup, Department of Building Services Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong Special Administrative Region, China;

    Renewable Energy Research Croup, Department of Building Services Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong Special Administrative Region, China;

    Renewable Energy Research Croup, Department of Building Services Engineering, The Hong Kong Polytechnic University, Kowloon, Hong Kong Special Administrative Region, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dust deposition photovoltaic modules efficiency reduction surface material;

    机译:除尘光伏组件效率降低表面材料;

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