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库区洲滩生境改造方案优选

单敏尔 周银军 郭超 刘鑫 孙贵洲 李志晶

长江科学院院报2024,Vol.41Issue(1):18-25,8.
长江科学院院报2024,Vol.41Issue(1):18-25,8.DOI:10.11988/ckyyb.20221186

库区洲滩生境改造方案优选

Optimization of Habitat Renovation Plan for Reservoir Beach:A Case Study on Wangfuzhou Reservoir

单敏尔 1周银军 2郭超 2刘鑫 3孙贵洲 2李志晶2

作者信息

  • 1. 长江科学院河流研究所,武汉 430010||长江航道规划设计研究院,武汉 430040
  • 2. 长江科学院河流研究所,武汉 430010
  • 3. 长江航道勘察设计院(武汉)有限公司,武汉 430040
  • 折叠

摘要

Abstract

In recent years,aquatic plant disasters in cascade reservoirs with low head due to slow flow velocity and small water depth has emerged as a new problem in reservoir management.To tackle the Elodea canadensis disaster in the Wangfuzhou Reservoir area,an approach involving local topographic transformation was implemented.The aim was to create an unfavorable hydrological environment for the growth of Elodea.We propose a concept of hydro-dynamic improvement rate to quantitatively describe the changes in hydrodynamic strength before and after transfor-mation.Furthermore,we established an entropy-TOPSIS model to select the optimum plan for each area in compre-hensive consideration of the hydrodynamic improvement effect,the environmental impact,and transformation bene-fits.The major findings are as follows:in area A,under periodic flow rate,modification scheme 1 exhibits a meager hydrodynamic improvement rate of only 5.16%,which is much lower than the rates achieved by scheme 2(59.15%)and scheme 3(63.62%).For area B and area C,scheme 1 weakens the hydrodynamic strength,while scheme 2 and scheme 3 yield improvement rates of 16.02%and 20.19%for area B,and 45.47%and 51.99%for area C,respectively.The improvement rates of both scheme 2 and scheme 3 are relatively close.By using the entro-py weight method,we obtained the weights of each index in the three areas,ranking from transformation benefit to average transformation depth and hydrodynamic improvement rate in descending order.Taking into account the over-all hydrodynamic improvement rate,environmental impact,and transformation benefit,the comprehensive evalua-tion index calculated using the TOPSIS model suggests that Scheme 3 is superior to Scheme 2 and Scheme 1.Thus,Scheme 3 is identified as the optimal transformation scheme for each area.

关键词

库区洲滩生境改造/水动力提升率/熵权/TOPSIS模型/伊乐藻/王甫洲水库

Key words

habitat renovation of reservoir beach/hydrodynamic improvement rate/entropy weight/TOPSIS mod-el/Elodea canadensis/Wangfuzhou Reservoir

分类

环境科学

引用本文复制引用

单敏尔,周银军,郭超,刘鑫,孙贵洲,李志晶..库区洲滩生境改造方案优选[J].长江科学院院报,2024,41(1):18-25,8.

基金项目

中央级公益性科研院所基本科研业务费项目(CKSF2021530/HL,CKSF2021743/HL) (CKSF2021530/HL,CKSF2021743/HL)

长江科学院院报

OACSTPCD

1001-5485

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