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首页> 外文期刊>Limnologica >Depth limit of littoral vegetation in a storage reservoir: A case study of Lipno Reservoir (Czech Republic)
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Depth limit of littoral vegetation in a storage reservoir: A case study of Lipno Reservoir (Czech Republic)

机译:储水库沿岸植被的深度极限:以利普诺水库为例(捷克)

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摘要

Controlling factors for the occurrence of littoral macrophyte species were investigated in Lipno Reservoir (area: 46.5km ~2; z _(mean): 6.6m; z _(max): 22m; water residence time: 0.6yr), a dam impoundment with moderately fluctuating water level (amplitude up to 4m) which is used for hydropower and downstream flow augmentation. The options of supporting littoral macrophyte growth for improving the reservoir's ecological potential were evaluated according to the European Water Framework Directive's definitions. Macrophytes were examined at 115 sites, each 50m long, along the whole reservoir perimeter at regular 1km intervals. Sites were surveyed for their phytocoenology, shore morphometry, pedological characteristics of substrate, transparency of water, and anthropogenic impacts. Most of the sites were characterised by a wide eulittoral zone with a tenuous cover of terrestrial hydrophilic, amphibious, and/or emergent macrophytes and a low proportion of silt, clay, and organic fractions in the substrate. Infralittoral submerged and floating-leaved macrophytes were restricted to a few sites within the mouths of the main and side tributaries where transparency was maintained by clear inflow water independent of reservoir pool fluctuations. Water transparency was low (1-2m) compared to annual changes of water level (2 to >3m). Multivariate statistical analysis (DCA, CCA) confirmed relationships between the occurrence of macrophyte species and morphological and substrate characteristics of the shore. Improvement of macrophyte cover and establishment of vital infralittoral zones requires improvements in water transparency and changes in reservoir operation, i.e., limiting the range of water level fluctuation to less than ca. 1m.
机译:在利普诺水库(面积:46.5km〜2; z _(平均):6.6m; z _(最大):22m;水滞留时间:0.6yr),大坝蓄水区中,研究了沿海大型植物物种发生的控制因素。具有适度波动的水位(幅度高达4m),用于水力发电和下游流量的增加。根据欧洲水框架指令的定义,评估了支持沿海大型植物生长以改善水库生态潜力的方案。在整个水库周长上以规则的1 km间隔在115个站点(每个站点50 m长)上检查了大型植物。调查了这些地点的植物生态学,海岸形态,底物的土壤学特征,水的透明度和人为影响。大多数部位的特征是宽阔的选举区,陆生亲水性,两栖和/或出苗的大型植物覆盖着薄弱的部分,底物中的泥沙,粘土和有机部分比例低。鳍下淹没和浮叶大型植物被限制在主支流和侧支流口内的几个位置,这些位置通过透明的流入水而保持透明,而与水库的波动无关。与每年水位变化(2至> 3m)相比,水的透明度较低(1-2m)。多元统计分析(DCA,CCA)证实了大型植物物种的出现与海岸的形态和底物特征之间的关系。改善大型植物的覆盖面和建立重要的飞翅下带,需要提高水的透明度和改变水库的运行,即将水位波动范围限制在约200摄氏度以下。 1m

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