含尘光伏板的性能分析

Pub Date : 2023-08-02 DOI:10.24425/ather.2023.146558
Minakshi Katoch, Vineet Dahiya, Surendra Kumar
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引用次数: 0

摘要

太阳能光伏发电广泛应用于能源行业。太阳能电池板的性能受到不同变量的影响,包括太阳辐射、温度、风速、相对湿度以及雾霾或污垢的存在。户外太阳能电池板特别容易因自然天气条件导致空气中灰尘颗粒的积聚而导致能源效率下降。灰尘沉积的程度主要由面板的倾斜角度、风向、清洁频率以及当地的气象和地理条件等因素决定。太阳能电池玻璃上的灰尘降低了光束的透光率,造成阴影并降低了电池板的能量转换效率。沙尘暴、污染水平和积雪都会对光伏面板的性能产生重大影响。这些情况降低了太阳能电池板的效率。实验是在两块相同的积尘无尘板上进行的。评估是在离网独立系统的两种不同情况下进行的:模拟大气和白天的开放空间。已经为不同倾斜度的两个面板开发了电流-电压曲线。这些特征提供了足够的信息来分析所考虑的面板的性能。测量结果表明,当灰尘聚集在面板表面时,平均输出功率和短路电流急剧下降。安装倾角影响了多尘和清洁面板的效率和平均功率输出的比率。
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The performance analysis of dusty photovoltaic panel
Solar photovoltaic power is widely utilized in the energy industry. The performance of solar panels is influenced by different variables, including solar radiation, temperature, wind speed, relative humidity and the presence of haze or dirt. Outdoor solar panels are particularly susceptible to a decrease in energy efficiency due to the accumulation of dust particles in the air, which occurs as a result of natural weather conditions. The extent of dust deposition is primarily determined by factors such as the tilt angle of the panel, wind direction, cleaning frequency as well as local meteorological and geographical conditions. The dust on the solar cell glazing reduces the optical transmittance of the light beam, causing shadowing and diminishing the energy conversion productivity of the panels. Sand storms, pollution levels and snow accumulations all significantly impact the photovoltaic panel performance. These circumstances reduce the efficiency of solar panels. The experiment was carried out on two identical dust-accumulated and dust-free panels. The evaluation was carried out in two different situations on the off-grid stand-alone system: in a simulated atmosphere and in an open space during the day. The current-voltage curves have been developed for both panels at various tilt degrees. The features provide sufficient information to analyse the performance of the panels under consideration. The measurements demonstrate that as dust collects on the panel’s surface, the average output power and short circuit current decrease dramatically. The installation tilt angle affected the ratio of efficiency and average power outputs of dusty and clean panels.
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