ISSN 1671-1092 CN 33-1260/TK

大坝与安全 ›› 2025 ›› Issue (3): 65-.

• 施工技术 • 上一篇    下一篇

高海拔地区大型水电工程施工供水优化

王  懿1,王  涛2,陆文航1
  

  1. 1.国家能源集团金沙江分公司,四川 成都,610000;2.中国水利水电第七工程局有限公司五分局,四川 眉山,620860
  • 收稿日期:2025-02-12 出版日期:2025-06-30 发布日期:2026-02-01
  • 作者简介:王 懿(1996—),男,四川成都人,硕士,助理工程师,从事水电工程机电物资管理工作。

Optimization of water supply for large-scale hydropower projects construction in high-altitude areas

WANG Yi, WANG Tao and LU Wenhang
  

  1. Jinsha River Branch of China Energy Group
  • Received:2025-02-12 Online:2025-06-30 Published:2026-02-01

摘要:

旭龙水电站原可研施工供水方案采用传统江河中抽水净化方式,该方案受电站所处地理环境及水文环境影响,存在供水系统能耗高、碳排放量大、建设及运行维护成本高、可靠性差等问题。通过深化研究,紧抓水源这一关键制约点,因地制宜创新性地采用周边天然河沟作为施工水源,充分利用高程差实现“零能耗”自流减压供水,节能减排效果凸显,建设、运维成本显著降低,征地面积大幅减少,系统的可靠性得到有效提升,取得了“环境”“社会”“治理创新”三赢。

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Abstract:

The original water supply plan for construction of Xulong hydropower station adopts the traditional approach of pumping and purifying water from river. This plan is affected by the geographical and hydrological condition of the power station, resulting in high energy consumption, large carbon emissions, high construction and operation maintenance costs, and poor reliability of the water supply system. By further study, focusing on the key constraint point of water source, the natural river channels around Xulong hydropower station are adopted as the construction water source innovatively, which can fully utilize the elevation difference to achieve zero energy consumption and self-flowing pressure reducing water supply. As a result, the energy-saving and emission reduction effects are gained, the construction and operation costs are significantly reduced, the land acquisition area is greatly reduced, and the reliability of the system is effectively improved, achieving a win-win situation of environment, society and governance innovation.

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