水力发电学报
            首 页   |   期刊介绍   |   编委会   |   投稿须知   |   下载中心   |   联系我们   |   学术规范   |   编辑部公告   |   English

水力发电学报 ›› 2024, Vol. 43 ›› Issue (2): 1-14.doi: 10.11660/slfdxb.20240201

• •    下一篇

特约论文:小流域生态-岩土协同减灾原理与方法初探

  

  • 出版日期:2024-02-25 发布日期:2024-02-25

Preliminary study on principles and methods of ecological-geotechnical engineering coordinated disaster reduction for small watersheds

  • Online:2024-02-25 Published:2024-02-25

摘要: 随着全球变暖,极端降雨事件增多,导致山区小流域灾害频发,严重威胁人民生命财产安全。小流域防灾减灾形式多样,其中生态工程措施与岩土工程措施相结合协同减灾的方式,不仅能够充分发挥两种措施在不同时间段的减灾作用,而且能够增加整体减灾功效。目前,受限于生态工程措施与岩土工程措施协同减灾原理不明,评估方法缺乏,导致二者无法有机结合并开展综合减灾效益评估。本文在基于自然解决方案的基础上,提出了山区小流域生态-岩土措施协同减灾的原理,即利用生态工程与岩土工程协作,通过坡面防护和沟道调控,形成稳定阶梯-深潭结构的生态工程-岩土工程措施协同减灾原理。在此基础上,结合地理信息系统和最优化原理,给出基于能量消减的小流域生态工程-岩土工程协同减灾功效的定量化评价方法,为规划、设计、物种选择以及生态工程与岩土工程对策的结合提供依据。

关键词: 小流域, 基于自然解决方案, 能量消减, 生态-岩土协同减灾

Abstract: With global warming, extreme rainfall events are increasing, leading to frequent disasters in small watersheds in mountainous regions and threatening severely the safety of people's lives and property. A small watershed can adopt various forms of disaster prevention and reduction, among which the combination of ecological engineering measures and geotechnical engineering measures can not just fully utilize the disaster reduction effects of the two measures at different periods, but also increase the overall disaster reduction effectiveness. At present, the principle of collaborative disaster reduction between ecological and geotechnical engineering measures is unclear, and their evaluation methods are also unclear; so, it is extremely difficult to combine the two organically or conduct a comprehensive disaster reduction benefit assessment. On the basis of natural solutions, this paper establishes a principle of coordinated ecological-geotechnical measures for reducing disasters in small watersheds in mountainous regions. Specifically, a stable step-deep pool structure using ecological and geotechnical engineering measures should be formed through collaboration of both fields, slope protection, and channel regulation, so as to achieve collaborative disaster reduction. Then, we give a quantitative method for evaluating the effectiveness of synergistic disaster reduction by small watershed ecological and geotechnical engineering measures based on energy reduction planning, thus laying a basis for design, species selection, and integration with geotechnical engineering strategies.

Key words: small watershed, Natural based solution (NBS), energy reduction, ecological-geotechinical engineering coordinated disaster reduction

京ICP备13015787号-3
版权所有 © 2013《水力发电学报》编辑部
编辑部地址:中国北京清华大学水电工程系 邮政编码:100084 电话:010-62783813
本系统由北京玛格泰克科技发展有限公司设计开发  技术支持:support@magtech.com.cn