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近40年洞庭湖澧水洪道冲淤演变分析
引用本文:贺方舟,黎昔春.近40年洞庭湖澧水洪道冲淤演变分析[J].中国农村水利水电,2020(4):139-144.
作者姓名:贺方舟  黎昔春
作者单位:湖南省水利水电勘测设计研究总院洞庭湖研究中心;洞庭湖水环境治理与生态修复湖南省重点实验室
基金项目:国家重点研发计划资助项目(2017YFC0405305)。
摘    要:基于澧水洪道实测水文资料、不同年代水下地形资料、断面测绘资料及现有相关研究成果,系统分析研究了澧水洪道及七里湖槽蓄量变化、洪道重点部位冲淤变化特征、纵断面及典型横断面冲淤演变规律等。结果表明1995年来澧水洪道平面调整不大,但河槽冲刷较明显,滩地存在淤积,洪道整体表现为冲刷。七里湖槽蓄量1995-2003年间略有减小,2003-2011年槽蓄量增长较快。随着上游水库的运用,2003年后河道深泓下切速率加快,洲滩普遍存在泥沙淤积,新河口、柳林咀河段存在较强的演变趋势,需要加强观测并采取必要的稳定河势措施。

关 键 词:洞庭湖  澧水  七里湖  河道演变  冲淤分析  GIS

Research on the Fluvial Process of the Lishui Flood Channel in Recent 40 Years
HE Fang-zhou,LI Xi-chun.Research on the Fluvial Process of the Lishui Flood Channel in Recent 40 Years[J].China Rural Water and Hydropower,2020(4):139-144.
Authors:HE Fang-zhou  LI Xi-chun
Institution:(Dongting Lake Research Center,Hunan Hydro and Power Design Institute,Changsha 410007,China;Key Laboratory of Water Environment Control and Ecological Restoration of Dongting Lake in Hunan Province,Changsha 410007,China)
Abstract:Based on the measured hydrological data, underwater topographic data, cross-section mapping data in different years and existing research findings of the Lishui Flood Channel, this paper studies the variation of storage capacity of Lishui Flood Channel and Qili Lake Channel, the variation characteristics of erosion and deposition in key parts of flood channel, the evolution law of erosion and deposition in vertical section and typical cross-section. The results show that the level of Lishui Flood Channel has not changed much since 1995, but the riverbed fluvial scour is obvious. It also shows that the beach of the Lishui Flood Channel is the place of sediment deposition while the whole of the flood channel is scouring. With the operation of the upstream reservoir, the scouring rate of river channel has been accelerated since 2003. There is a strong trend of evolution in Xinhekou and Liulingzui reach where it is necessary to strengthen observation and take necessary measures to stabilize the river regime.
Keywords:Dongting Lake  Lishui River  Qili Lake  fluvial process  deposition and erosion  GIS
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