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水力发电学报 ›› 2025, Vol. 44 ›› Issue (6): 42-49.doi: 10.11660/slfdxb.20250605

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京津冀地区湖库漂浮式光伏开发潜力及节水降碳成效

  

  • 出版日期:2025-06-25 发布日期:2025-06-25

Potential development of floating photovoltaic in lakes and reservoirs in Beijing-Tianjin-Hebei region and its effectiveness in water and carbon reduction

  • Online:2025-06-25 Published:2025-06-25

摘要: 为了缓解京津冀地区土地紧张的现状,提高城市群的能源开发率,本文分析了京津冀地区湖库的漂浮式光伏开发潜力,以密云水库为例推广至京津冀地区,通过构建漂浮式光伏发电模型,结合相关气象数据进行模拟仿真,得到以下结论:密云水库构建漂浮式光伏模型时,光伏电站的模拟发电情况符合年内温度和辐射量的分布规律,模型在京津冀地区具有普适性;京津冀地区的湖库面积开发率为5%时,模拟年发电量达到5.07×109 kW·h,约为京津冀地区光伏发电总量的20%,具有极大的开发潜力;京津冀地区构建漂浮式光伏每年能够减少排放288.57万t的二氧化碳,节约62.4万t标准煤,节水量达到319.39万m3,减少湖库大面积蒸发造成的水资源浪费。漂浮式光伏电站既可以提高闲置水体的利用率,又可以缓解经济高度发展的城市群的能源压力和水资源紧张现状,对京津冀地区的光伏能源开发起到促进作用,为京津冀地区的光伏能源发展提供新的思路。

关键词: 漂浮式光伏, 京津冀地区, 光伏发电模型, 碳减排, 发电预测

Abstract: To alleviate the current land shortage in the Beijing-Tianjin-Hebei region and raise its energy development rates for urban agglomerations, this article examines the potential development of floating photovoltaic in its lakes and reservoirs. We take the Miyun reservoir as an example, and extend it to the whole study region. By constructing a floating photovoltaic power generation model and combining it with relevant meteorological data for simulation, we draw conclusions below. First, when this model is implemented in Miyun Reservoir, the simulated photovoltaic power generation varies in a year in the same trend as temperature and radiation, and the model has universality in the study region. Second, when 5% of the lake and reservoir area is used to develop floating photovoltaic in the study region, its simulated annual power generation reaches 5.07×109 kW·h, roughly 20% of its total photovoltaic output at present, showing there exists a great potential for future development. Third, construction of floating photovoltaics in this study region can reduce annual emissions of 2.8857 million tons of carbon dioxide, save 624 thousand tons of standard coal and 3.1939 million cubic meters of water, and reduce water resource waste caused by evaporation on large lakes and reservoirs. For the Beijing-Tianjin-Hebei region, floating photovoltaic power stations can improve the utilization rate of its idle water bodies, alleviate its energy pressure and water resource shortage in highly developed urban agglomerations, promote its development of photovoltaic energy, thus supporting the new idea for developing photovoltaic energy in the region.

Key words: floating photovoltaics, Beijing-Tianjin-Hebei region, photovoltaic power generation model, carbon reduction, power generation forecast

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