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Effect of Industrial Dust Deposition on Photovoltaic Module Performance: Experimental Measurements in the Tropical Region

机译:工业粉尘沉积对光伏模块性能的影响:热带地区实验测量

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Dust particle accumulation affects outdoor photovoltaic module transmittance of solar cell glazing and thus leads to significant degradation of conversion efficiency owing to lower irradiance reaching the surface. In this study, the sensitivity of the polycrystalline silicon photovoltaic module towards industrial dust deposition was experimentally investigated under the tropical climatic condition of Arusha, Tanzania. Dust involved in the study came from fertilizer, gypsum, aggregate crusher, and coal mine industries. The experimental measurements were outdoor conducted under 720 W/m~2, 800 W/m~2, and 900 W/m~2 solar irradiances. Results indicated that dust accumulation on the polycrystalline silicon photovoltaic module negatively affected output power as well as short-circuit current, however having no significant impact on open-circuit voltage. Maximum module efficiency loss was observed to be 64%, 42%, 30%, and 29% for coal, aggregate, gypsum, and organic fertilizer dust, respectively; hence, coal dust was the most effecting dust among the four. It was also demonstrated that PV module performance deteriorated with temperature rise owing to heat dissipation caused by dust accumulation.
机译:灰尘粒子积聚影响太阳能电池玻璃窗的户外光伏模块透射率,从而导致转换效率的显着降低,由于较低的辐照度到达表面。在这项研究中,在坦桑尼亚阿鲁沙的热带气候条件下实验研究了多晶硅光伏模块对工业粉尘沉积的敏感性。该研究中涉及的粉尘来自肥料,石膏,骨料破碎机和煤矿产业。实验测量在户外进行,在720W / m〜2,800W / m〜2和900 w / m〜2太阳能辐射下进行。结果表明,多晶硅光伏模块上的灰尘积聚对输出功率的负面影响以及短路电流影响,但对开路电压没有显着影响。煤,骨料,石膏和有机肥粉体分别观察到最大模块效率损失为64%,42%,30%和29%;因此,煤尘是四个中最有效的灰尘。还证明了PV模块性能由于灰尘累积引起的散热而导致温度升高。

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