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水力发电学报 ›› 2019, Vol. 38 ›› Issue (7): 36-45.doi: 10.11660/slfdxb.20190704

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基于生命周期的溪洛渡水电站水足迹评估

  

  • 出版日期:2019-07-25 发布日期:2019-07-25

Lifecycle assessment of water footprint of Xiluodu hydropower station

  • Online:2019-07-25 Published:2019-07-25

摘要: 水足迹作为体现水资源消耗的指标,其在水电行业的应用有助于更准确地评估水电项目的环境成本。研究从生命周期(全周期)的角度出发完善水足迹计算方法,将建设期和运行期均考虑在内,对溪洛渡水电站的总水足迹和净水足迹分别进行了计算,得到溪洛渡水电站总水足迹为0.56 m3/GJ,净水足迹为0.02 m3/GJ。分析得到砂石骨料加工用水在溪洛渡水电站建设期水足迹中贡献率最大,在净水足迹中贡献率最大的为运行耗水增量,而在总水足迹中贡献率最大的为运行期耗水;同时分析了生命周期跨度的改变对总水足迹和净水足迹组成的影响。研究还将溪洛渡水电站的水足迹与国内外水电站和其他产能业进行了对比,展现了以其为代表的我国金沙江水电基地对水资源利用的优势性。

关键词: 水库管理, 溪洛渡水电站, 水足迹, 净水足迹, 建设期水足迹, 生命周期评估

Abstract: Water footprint (WF), an index of water consumption by a product, could help evaluate the environmental costs of a hydropower station more accurately. Based on the lifecycle assessment (LCA), we calculate the gross WF and the net WF of Xiluodu hydropower station, considering both construction phase and operation phase. The calculation gives a gross WF of 0.56 m3/GJ and a net WF of 0.02m3/GJ. And it shows that the water use in sand aggregate processing makes the largest contribution to the construction WF, the increase of water surface evaporation caused by reservoir construction makes the largest contribution to the net WF, while the largest to the gross WF is water consumption of operation phase. This study also evaluates the influence of lifecycle span on the components of the gross WF and the net WF. The WF values of Xiluodu hydropower station, significantly smaller than those of other hydropower projects all over the world or other energy industries, show its superiority in water use efficiency as a typical case of the Jinsha River hydropower base.

Key words: reservoir management, Xiluodu hydropower station, water footprint (WF), net water footprint, construction phase, lifecycle assessment (LCA)

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