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首页> 外文期刊>River research and applications >Hydrodynamic behaviour of European black poplar (Populus nigra L.) under coppice management along Mediterranean river ecosystems
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Hydrodynamic behaviour of European black poplar (Populus nigra L.) under coppice management along Mediterranean river ecosystems

机译:欧洲灌木林管理下欧洲黑杨(Populus nigra L.)沿地中海河流生态系统的水动力行为

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This study examined the hydrodynamic behaviour of European black poplar (Populus nigra L.) under coppice management in riparian areas with a multidisciplinary approach. An innovative procedure on the basis of the combination of plant allometric relations and hydrodynamic models was applied to assess drag forces and plant hydrodynamic bending as function of the basal diameter and module of elasticity, with a probabilistic approach. Cuttings of European black poplar from 2 close riverine environments of Southern Italy have been planted and subjected to the same coppice management strategy. The 2 different 3-year-old shoot poplar ensembles exhibited statistically similar morphological traits but stems with different module of elasticity. Drag forces were simulated with a model on the basis of the vegetative Cauchy number. Plant deformation under the hydrodynamic load was modelled as a base-mounted cantilever beam. The differences in the observed elasticity were verified to be also significant from a hydrodynamic perspective. Diagrams were drawn to describe plant bending, drag forces, and basal momentum as function of basal diameter, accounting for the uncertainty in the module of elasticity. These results can be exploited for identifying objective hydrodynamic criteria to be adopted for coppice management of riparian woody vegetation in human controlled river ecosystems.
机译:本研究采用多学科方法研究了沿岸灌木林管理下欧洲黑杨(Populus nigra L.)的水动力行为。采用一种基于植物异位关系和流体力学模型相结合的创新方法,以概率方法评估了阻力和植物流体力学弯曲随基础直径和弹性模量的变化。已经种植了来自意大利南部2个邻近河流环境的欧洲黑杨的插条,并对其进行了相同的灌木林管理策略。 2个不同的3岁幼枝杨合奏表现出统计学上相似的形态特征,但茎具有不同的弹性模量。在营养柯西数的基础上,用模型模拟了阻力。在水动力作用下的植物变形被模拟为基座安装的悬臂梁。从流体力学的角度来看,观察到的弹性差异也很明显。绘制了图表来描述植物弯曲,拖曳力和基础动量随基础直径的变化,从而说明了弹性模量的不确定性。这些结果可用于确定客观水动力标准,以便在人类控制的河流生态系统中对河岸木本植被进行小灌木林管理。

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