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首页> 外文期刊>Journal of Hydrology >Characteristic reference areas for estimating flow resistance of natural foliated vegetation
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Characteristic reference areas for estimating flow resistance of natural foliated vegetation

机译:估算天然叶状植被的流动阻力的特征参考区域

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摘要

Reliable estimation of vegetative flow resistance calls for physically sound and readily measurable plant properties. Laboratory flume investigations were conducted to examine four reference area properties in relation to the drag, reconfiguration, and flow resistance of foliated Black Poplar twigs. The experiments were novel in that three characteristic reference areas (leaf area A_L, frontal projected area under flow A_P, and still-air frontal projected area A_0) as well as the foliage-stem reference area ratio (A_L/A_S) were evaluated. The drag forces were simultaneously measured for up to eight specimens in a plant stand at both partly and just submerged conditions. Due to the high A_L/A_S of the twigs, leaves contributed 74-98% of the total drag at mean velocities of 0.1-0.9m/s. Both the partly and just submerged poplars had similar A_P and drag per characteristic reference area. Thus, the derived parameter values could be used to estimate the friction factors of the poplar stands at low to just submerged conditions, with each of the three characteristic reference areas providing satisfactory estimates. The flow resistance estimation with A_L may be further improved by using A_L/A_S as a secondary area parameter to take into account the share of the stem to the total drag. Comparison to literature data on other deciduous species suggested that the foliage-stem reference area ratio was an essential property for explaining the between-species variation in A_P and flow resistance per A_L.
机译:对植物流动阻力的可靠估算需要物理上合理且易于测量的植物特性。进行了实验室水槽调查,以检查与叶状黑杨小枝的阻力,重构和流阻有关的四个参考区域特性。实验是新颖的,它评估了三个特征参考区域(叶面积A_L,流动A_P下的额叶投影面积和静止空气额叶投影面积A_0)以及叶茎基准面积比(A_L / A_S)。在部分和刚好处于淹没状态下,在一个植物站中最多同时测量了八个样本的拖曳力。由于树枝的高A_L / A_S,平均速度为0.1-0.9m / s时,叶子贡献了总阻力的74-98%。部分和仅淹没的杨树具有相似的A_P和每个特征参考面积的阻力。因此,导出的参数值可用于估计低至刚好淹没条件下的杨树林的摩擦因子,三个特征参考区域中的每一个都提供令人满意的估计。通过将A_L / A_S作为次要区域参数,并考虑到阀杆在总阻力中所占的份额,可以进一步改善使用A_L的流动阻力估计。与其他落叶树种的文献数据比较表明,叶干基准面积比是解释A_P的种间变化和每A_L的流动阻力的重要特性。

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