Effects of water level fluctuation on the potential habitat area of Vallisneria natans in Poyang Lake

被引:0
|
作者
Chen L. [1 ]
Chen L. [1 ]
Xu Y. [1 ]
Luan Z. [1 ]
Jin Q. [1 ]
Shi Y. [1 ]
Hu T. [1 ]
机构
[1] State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Nanjing Hydraulic Research Institute, Nanjing
来源
基金
国家重点研发计划; 中国国家自然科学基金;
关键词
Ecological water level; Habitat modeling; Poyang Lake; Submerged macrophyte; Wetland;
D O I
10.14042/j.cnki.32.1309.2020.03.007
中图分类号
学科分类号
摘要
As the dominant submerged macrophytes in Poyang Lake, the winter buds of Vallisneria natans provide food for wintering waterbirds. In order to quantify the effects of water level fluctuation on the habitat area of Vallisneria natans in Poyang Lake, a numerical model was developed by integrating an EFDC hydrodynamic model and habitat suitability curves. The habitat of Vallisneria natans in Poyang Lake was continuously simulated since the 175 m impoundment of the Three Gorges Reservoir in 2008. The quantitative response functions between potential habitat area and water level at Xingzi gauge station were developed for two habitat criteria: ① suitable habitat based on suitability curves and ② regions with water depth≤4 m where Vallisneria natans can grow. It was found that potential habitat area of Vallisneria natans is maximized when the water level at Xingzi gauge station is around 15 m, producing a suitable habitat area is about 1 703 km2 and an area with water depths≤4 m is about 2 336 km2. The impacts of Three Gorges Reservoir and proposed Poyang Lake Lock on the potential habitat area of Vallisneria natans were analyzed. The operation of Three Gorges Reservoir could prevent habitat area getting too small, which could guarantee habitat stability. However, the fluctuation of habitat area decreases significantly, with standard deviations of habitat area declining 27% and 47% for potential suitable habitat and regions with water depth≤4 m respectively compared to its pre-operation. For the proposed Poyang Lake lock, in order to decrease its negetive effect on Vallisneria natans habitat, the recommended operation water level during its refill period should be lower than 16 m, and the water level during the refill period of Three Gorges Reservoir should be higher than 13.5 m. This operation results in a reduction in suitable habitat area by less than 20% from the maximum (1 703 km2), and in a reduction in the area of regions with water depth≤4 m less than 10% from the maximum(2 336 km2). The quantitative influence of water level fluctuation on the potential habitat area of Vallisneria natans in Poyang Lake has been clarified, and the quantitative basis for the conservation of Poyang Lake ecosystem under the modified regime of flow and sediment was provided. © 2020, Editorial Board of Advances in Water Science. All right reserved.
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页码:377 / 384
页数:7
相关论文
共 26 条
  • [1] TANG G H., Study on evolution, protection and management of Poyang Lake's Wetland, (2017)
  • [2] LUO W., Study on eco-hydrological process and regulation countermeasures in typical wetland of Poyang Lake under changing environment, (2014)
  • [3] LI W H, LIU X T, LEI G C, Et al., Influence and countermeasures of Poyang Lake water conservancy project on wetland and migratory birds, (2010)
  • [4] BARZEN J, ENGELS M, BURNHAM J, Et al., Potential impact of a water control structure on the abundance and distribution of wintering waterbirds at Poyang Lake, (2009)
  • [5] HU Z P, LIN Y R., Analysis of evolution process and driving factors for aquatic vegetations of Poyang Lake in 30 years, Resources and Environment in the Yangtze Basin, 28, 8, pp. 1947-1955, (2019)
  • [6] DEEGAN B, WHITE S, GANF G., The influence of water level fluctuations on the growth of four emergent macrophyte species, Aquatic Botany, 86, 4, pp. 309-315, (2007)
  • [7] MACEK P, REJMANKOVA E, HOUDKOVA K., The effect of long-term submergence on functional properties of Eleocharis cellulosa Torr, Aquatic Botany, 84, 3, pp. 251-258, (2006)
  • [8] GU Y F, WANG J, WANG J, Et al., Morphological response and growth strategy of the submerged macrophyte Vallisneria natans under different water depths, Journal of Lake Sciences, 29, 3, pp. 654-661, (2017)
  • [9] YUAN L Y, LI W., Effects of water depths and substrate types on the distribution in winter buds of Vallisneria spinulosa in Poyang Lake, Journal of Yangtze University(Nat Sci Edit), 1, pp. 55-58, (2008)
  • [10] HU Z P, FU J., Quantitative study on hydrology relationship between the Yangtze River and Poyang Lake and its changes, Journal of Hydraulic Engineering, 49, 5, pp. 570-579, (2018)