Jia Dongyu, Yang Liwei, Gao Xiaoqing
Lanzhou City University, Lanzhou 730070, China.
Key Laboratory of Ecological Safety and Sustainable Development in Arid Lands, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou 730000, China.
iScience. 2024 Aug 31;27(10):110871. doi: 10.1016/j.isci.2024.110871. eCollection 2024 Oct 18.
China's pursuit of photovoltaic (PV) power, particularly rooftop installations, addresses energy and ecological challenges, aiming to reduce basic energy consumption by 50% by 2030. The northwest region, with its solar potential, is a focal point for distributed PV growth, which has already exceeded 50% of the energy mix by 2021. This study assesses the rooftop PV potential in five northwestern capitals, finding favorable conditions such as ample space, dense populations, and high sunlight exposure. Cities like Yinchuan and Xining are highlighted for their high projected annual PV yields. Although there is a negative correlation between surface temperature and vegetation coverage, the Weather Research and Forecasting (WRF) numerical simulation found that large-scale deployment of rooftop photovoltaics will not have a significant impact on the vegetation ecology of the area. The research underscores the significant role of rooftop PV in achieving China's energy and climate goals in its northwestern urban centers.
中国对光伏发电的追求,尤其是屋顶光伏发电装置,旨在应对能源和生态挑战,目标是到2030年将基础能源消耗降低50%。拥有太阳能潜力的西北地区是分布式光伏发电增长的重点区域,到2021年,该地区的分布式光伏发电在能源结构中的占比已超过50%。本研究评估了西北五省省会城市的屋顶光伏发电潜力,发现这些城市具备空间充足、人口密集和日照充足等有利条件。银川和西宁等城市因其预计的年光伏发电量高而受到关注。尽管地表温度与植被覆盖之间存在负相关关系,但气象研究与预报(WRF)数值模拟发现,大规模部署屋顶光伏发电不会对该地区的植被生态产生重大影响。该研究强调了屋顶光伏发电在实现中国西北城市中心能源和气候目标方面的重要作用。