干旱区科学2021,Vol.13Issue(3) :274-289.

Impact of utility-scale solar photovoltaic array on the aeolian sediment transport in Hobq Desert, China

TANG Guodong MENG Zhongju GAO Yong DANG Xiaohong
干旱区科学2021,Vol.13Issue(3) :274-289.

Impact of utility-scale solar photovoltaic array on the aeolian sediment transport in Hobq Desert, China

TANG Guodong 1MENG Zhongju 1GAO Yong 1DANG Xiaohong1
扫码查看

作者信息

  • 1. College of Desert Control Science and Engineering, Inner Mongolia Agricultural University, Hohhot 010018, China
  • 折叠

Abstract

Deserts are ideal places to develop ground-mounted large-scale solar photovoltaic (PV) power station. Unfortunately, solar energy production, operation, and maintenance are affected by geomorphological changes caused by surface erosion that may occur after the construction of the solar PV power station. In order to avoid damage to a solar PV power station in sandy areas, it is necessary to investigate the characteristics of wind-sand movement under the interference of solar PV array. The study was undertaken by measuring sediment transport of different wind directions above shifting dunes and three observation sites around the PV panels in the Hobq Desert, China. The results showed that the two-parameter exponential function provides better fit for the measured flux density profiles to the near-surface of solar PV array. However, the saltation height of sand particles changes with the intersection angle between the solar PV array and wind direction exceed 45°. The sediment transport rate above shifting dunes was always the greatest, while that around the test PV panels varied accordingly to the wind direction. Moreover, the aeolian sediment transport on the solar PV array was significantly affected by wind direction. The value of sand inhibition rate ranged from 35.46% to 88.51% at different wind directions. When the intersection angle exceeds 45°, the mean value of sediment transport rate above the solar PV array reduces to 82.58% compared with the shifting dunes. The results of our study expand our understanding of the formation and evolution of aeolian geomorphology at the solar PV footprint. This will facilitate the design and control engineering plans for solar PV array in sandy areas that operate according to the wind regime.

Key words

aeolian sediment transport/mass flux density profiles/sand-fixation/shelter efficacy/solar photovoltaic array

引用本文复制引用

基金项目

出版年

2021
干旱区科学
中国科学院新疆生态与地理研究所,科学出版社

干旱区科学

CSTPCDCSCDSCI
影响因子:1.743
ISSN:1674-6767
被引量1
参考文献量4
段落导航相关论文