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地形变化对鄱阳湖枯水的影响

姚静 李云良 李梦凡 张奇

湖泊科学2017,Vol.29Issue(4):955-964,10.
湖泊科学2017,Vol.29Issue(4):955-964,10.DOI:10.18307/2017.0419

地形变化对鄱阳湖枯水的影响

The influence of bathymetry changes on low water level of Lake Poyang

姚静 1李云良 1李梦凡 1张奇1

作者信息

  • 1. 中国科学院南京地理与湖泊研究所,中国科学院流域地理学重点实验室,南京210008
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摘要

Abstract

A fine 2D hydrodynamic model of Lake Poyang was used to simulate the hydrological effect of the bathymetry changes between 1998 and 2010.Spatio temporal patterns of water levels and discharge in 2006 of two DEM were simulated to assess the bathymetry effect,considering 2006 as a typical dry year.Results showed that the north water way was deeper in 2010 than that in 1998,resulting in lower water levels.In low water level period,the water surface gradient was larger,and the effect of DEM changes was more significant than that in high level period.The low water levels decreased by 1-2 m corresponding to water level lower than 9 m at Hukou.The reductions of high water levels were lower than 0.4 m when water level at Hukou higher than 15 m.The influenced magnitude was largest at Duchang,followed by Xingzi,Tangyin and Kangshan.The water head from Duchang to Hukou decreased by 2 m in low level period.The water surface gradient decreased from Duchang to Xingzi,and increased from Tangyin to Duchang.There was no distinct gradient change from Kangshan to Hukou.The total discharge into the Yangtze River increased by 6%.The channel areas were most affected,however the influence of bathymetry changes spread across the most of the lake area.Water areas of some sub-lakes varied due to the local morphological changes.This study quantified magnitude and domain of the effect of bathymetry changes on Lake Poyang level from a hydrodynamic perspective.The outcomes may provide scientific support for water resource and ecological environment management,evolution and analysis of river-lake relationship.

关键词

地形变化/水动力模拟/低水位/鄱阳湖

Key words

Bathymetry change/hydrodynamic simulation/low water level/Lake Poyang

引用本文复制引用

姚静,李云良,李梦凡,张奇..地形变化对鄱阳湖枯水的影响[J].湖泊科学,2017,29(4):955-964,10.

基金项目

国家重点基础研究发展计划(2012CB417003)、江西省重大生态安全问题监控协同创新中心项目(JXS-EW-00)和国家自然科学基金项目(41301023,41371062)联合资助. (2012CB417003)

湖泊科学

OA北大核心CSCDCSTPCD

1003-5427

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