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A novel model to estimate the cleaning frequency for dirty solar photovoltaic (PV) modules in desert environment

机译:一种估计沙漠环境中肮脏的太阳能光伏(PV)模块清洁频率的新型模型

摘要

Accumulated dust on solar photovoltaic (PV) modules can significantly decrease their energy output in desert environment. Therefore, cleaning the deposited dust on the PV module surface is crucial in engineering applications to maintain the high power output of solar power plants, especially in desert areas. Nevertheless, it is difficult to predict the reasonable cleaning frequency for PV modules by traditional methods. In this paper, a novel model to simply estimate the cleaning frequency was developed for dirty PV modules in desert areas based on the dust deposition velocity and the relationship between deposited dust density and PV module power performance. The studied parameters are the installation tilt angles, the dust concentration in the ambient air and the representative average particle diameter. Based on this model, module cleaning frequency for desert regions is approximately 20 days when the power output reduction and particle concentration equal to 5% and 100 μg/m3, respectively. In addition, the effects of accumulation density, average particle diameter, tilt angles and wind velocity on the cleaning frequency are discussed and analyzed respectively.
机译:太阳能光伏(PV)模块上积聚的灰尘会大大降低其在沙漠环境中的能量输出。因此,在工程应用中,清洁光伏组件表面上沉积的灰尘对于维持太阳能发电厂的高功率输出至关重要,特别是在沙漠地区。然而,很难通过传统方法预测光伏组件的合理清洁频率。在本文中,基于灰尘沉积速度以及沉积的灰尘密度与PV组件功率性能之间的关系,为沙漠地区的脏PV组件​​开发了一个简单的模型,可以简单地估算清洁频率。研究的参数是安装倾斜角,环境空气中的粉尘浓度和代表性平均粒径。基于此模型,当功率输出降低和颗粒浓度分别等于5%和100μg/ m3时,沙漠地区的模块清洁频率约为20天。此外,分别讨论和分析了堆积密度,平均粒径,倾斜角和风速对清洗频率的影响。

著录项

  • 作者

    Jiang Y; Lu L; Lu H;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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