Faculty of Energy and Fuels, AGH University of Science and Technology, Kraków, Poland.
Department of Electrical and Electronic Engineering, University of Nottingham, Nottingham, UK.
Environ Sci Pollut Res Int. 2020 Jan;27(2):2001-2014. doi: 10.1007/s11356-019-06742-2. Epub 2019 Nov 25.
The particle deposition on the surface of solar photovoltaic panels deteriorates its performance as it obstructs the solar radiation reaching the solar cells. In addition to that, it may cause overheating of the panels, which further decreases the performance of the system. The dust deposition on the surfaces is a complex phenomenon which depends on a large number of different environmental and technical factors, such as location, weather parameters, pollution, tilt angle and surface roughness. Hence, it becomes crucial to investigate the key parameters which influence dust accumulation and their interrelations. In this study, the phenomenon of dust deposition was studied experimentally in the urban area at one of the most polluted cities of Europe, i.e. Kraków, Poland. Solar photovoltaic panels tilted at angles 15° and 35° were exposed to atmospheric conditions for the period of eighteen months from 6 May 2017 until 30 November 2018. Dust samples were collected from the panels for the exposure period which ranged from one day up to 11 days. It was observed that lower tilt angles promote dust accumulation on the surface and that in the absence of wind and rain, deposition of particles on the surface of panels follows the pattern of concentration of PM2.5 and PM10 in the atmosphere. Wind and rainfall usually promote the removal of dust particles from the surface. However, rainfall not always aids the cleaning of panels, and it was observed that low-intensity rain results in a very low rate of PMs in the air and in much higher than typical dust deposition on the panel surface. It also accelerates the cementing of already deposited dust. It was only rainfall whose intensity was at least 38 mm/h that was sufficient to remove dust particles from the panels.
太阳能光伏电池板表面的颗粒沉积会降低其性能,因为它会阻碍到达太阳能电池的太阳辐射。此外,它可能会导致电池板过热,从而进一步降低系统的性能。灰尘在表面的沉积是一个复杂的现象,它取决于许多不同的环境和技术因素,如位置、天气参数、污染、倾斜角度和表面粗糙度。因此,研究影响灰尘积累的关键参数及其相互关系变得至关重要。在这项研究中,在欧洲污染最严重的城市之一的波兰克拉科夫的城市地区进行了灰尘沉积的实验研究。15°和 35°倾斜的太阳能光伏电池板在 2017 年 5 月 6 日至 2018 年 11 月 30 日的十八个月内暴露于大气条件下。在暴露期间,从一天到 11 天不等,从电池板上收集了灰尘样本。观察到较低的倾斜角度会促进表面灰尘的积累,并且在没有风和雨的情况下,颗粒在电池板表面的沉积遵循 PM2.5 和 PM10 在大气中的浓度模式。风和雨通常会促进灰尘颗粒从表面去除。然而,降雨并不总是有助于清洁电池板,并且观察到低强度降雨会导致空气中的 PMs 非常低,而电池板表面的灰尘沉积却远高于典型水平。它还加速了已沉积灰尘的固结。只有强度至少为 38mm/h 的降雨才足以从电池板上清除灰尘颗粒。