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An analysis of the dust deposition on solar photovoltaic modules

机译:太阳能光伏模块粉尘沉积分析

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摘要

Solid particles impair the performance of the photovoltaic (PV) modules. This results in power losses which lower the efficiency of the system as well as the increases of temperature which additionally decreases the performance and lifetime. The deposited dust chemical composition, concentration and formation of a dust layer on the PV surface differ significantly in reference to time and location. In this study, an evaluation of dust deposition on the PV front cover glass during the non-heating season in one of the most polluted European cities, Krakow, was performed. The time-dependent particle deposition and its correlation to the air pollution with particulate matter were analysed. Dust deposited on several identical PV modules during variable exposure periods (from 1 day up to 1 week) and the samples of total suspended particles (TSP) on quartz fibre filters using a low volume sampler were collected during the non-heating season in the period of 5 weeks. The concentration of TSP in the study period ranged between 12.5 and 60.05 mu g m(-3) while the concentration of PM10 observed in the Voivodeship Inspectorate of Environmental Protection traffic station, located 1.2 km from the TSP sampler, ranged from 14 to 47 mu g m(-3). It was revealed that dust deposition density on a PV surface ranged from 7.5 to 42.1 mg m(-2) for exposure periods of 1 day while the measured weekly dust deposition densities ranged from 25.8 to 277.0 mg m(-2). The precipitation volume and its intensity as well as humidity significantly influence the deposited dust. The rate of dust accumulation reaches approximately 40 mg m-(2) day(-1) in the no-precipitation period and it was at least two times higher than fluxes calculated on the basis of PM10 and TSP concentrations which suggest that additional forces such as electrostatic forces significantly influence dust deposition.
机译:固体颗粒损害光伏(PV)模块的性能。这导致功率损耗,这降低了系统的效率,以及温度的,其另外降低了性能和寿命的增加。所沉积的灰尘的化学组成,浓度和形成PV表面上的灰尘层的在参考显著不同时间和位置。在这项研究中,在过程中的最污染的欧洲城市的一个非加热季节的PV前盖玻璃粉尘沉积的评价,克拉科夫,进行。与时间相关的颗粒沉积和其与颗粒物质的空气污染相关性进行分析。灰尘期间可变曝光时间段沉积在若干相同PV模块(从第1天到1周),并在周期的非加热季节期间收集总悬浮颗粒物(TSP)上石英纤维过滤器使用低流量取样样品5周。 TSP的在学习期间的浓度为12.5微米和60.05之间克(-3),而PM10的浓度在环境保护业务站的省监察,位于从TSP采样1.2公里,从14到47微米范围GM观察(-3)。据透露,在PV表面的灰尘沉积密度范围为7.5至42.1毫克米(-2)1天的暴露时间而每周测量灰尘沉积密度范围从25.8到277.0毫克米(-2)。沉淀体积,并且其强度以及湿度显著影响所沉积的灰尘。灰尘积累达到的速率大约40毫克间 - (2)天(-1)在无沉淀期,它是高至少2倍,PM10和TSP浓度的基础上计算通量这表明,附加的力,使得静电力显著影响灰尘沉积。

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