Arid
DEVELOPMENT AND EVALUATION OF PROTOTYPE TRANSPARENT ELECTRODYNAMIC SCREEN (EDS) INTEGRATED SOLAR COLLECTORS FOR AUTOMATED DUST REMOVAL.
Hudelson, John N.; Stark, Jeremy; Gibson, Hannah; Hao, Fang; Xu, Zhongkai; Mazumder, Malay; Horenstein, Mark N.
通讯作者Hudelson, John N.
会议名称ASME 8th International Conference on Energy Sustainability
会议日期JUN 30-JUL 02, 2014
会议地点Boston, MA
英文摘要

The integration of transparent electro-dynamic screen (EDS) on the front surface of solar mirrors and glass cover plates of photovoltaic panels has a strong potential to significantly reduce the frequency of water-based cleaning needed to mitigate losses from dust depositions present in arid regions. The objective of our research was to develop and evaluate prototype transparent EDS-integrated mirrors and solar panels for their self-cleaning functions, with an aim to keep the collectors clean at a low cost without water or manual labor. This paper focuses on the design, fabrication, and laboratory evaluation of a prototype EDS integrated second surface mirrors and solar panels. The EDS consists of a set of parallel transparent electrodes screen-printed on the optical surface and embedded in a thin transparent dielectric film. By applying three-phase, low current, low frequency high voltage-pulses to the electrodes, electro-dynamic repulsion forces and a traveling wave are created for removing dust particles from the surface of the collectors. Design and construction of an environmental test chamber to simulate different atmospheric conditions of semi-arid and arid areas with respect to temperature, RH, and dust deposition conditions are briefly described. A non-contact specular reflectometer was designed, constructed and calibrated for measuring specular reflection efficiency of the mirrors. Laboratory evaluation of the performance of the EDS-integrated collectors was completed using humidity controlled environment test chamber where the prototype mirrors and panels were examined for their self-cleaning action. In each experiment, the solar collectors were loaded with dust until the specular reflectance of the test mirror or the short circuit current of the panel showed a significant decrease. The EDS was then operated for one minute and the relative output was recorded. The results show that the specular reflectivity of EDS mirrors and the short circuit current of the EDS panels can be restored by more than 90% of the values measured under the clean conditions.


来源出版物PROCEEDINGS OF THE ASME 8TH INTERNATIONAL CONFERENCE ON ENERGY SUSTAINABILITY, 2014, VOL 1
出版年2014
ISBN978-0-7918-4586-8
出版者AMER SOC MECHANICAL ENGINEERS
类型Proceedings Paper
语种英语
国家USA
收录类别CPCI-S
WOS记录号WOS:000361161900052
WOS类目Energy & Fuels ; Engineering, Mechanical
WOS研究方向Energy & Fuels ; Engineering
资源类型会议论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/302956
作者单位Boston Univ, Boston, MA 02215 USA
推荐引用方式
GB/T 7714
Hudelson, John N.,Stark, Jeremy,Gibson, Hannah,et al. DEVELOPMENT AND EVALUATION OF PROTOTYPE TRANSPARENT ELECTRODYNAMIC SCREEN (EDS) INTEGRATED SOLAR COLLECTORS FOR AUTOMATED DUST REMOVAL.[C]:AMER SOC MECHANICAL ENGINEERS,2014.
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