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An analytical model for mean wind profiles in sparse canopies.

机译:稀疏冠层平均风廓线的分析模型。

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Existing analytical models for mean wind profiles within canopies are applicable only in dense canopy scenarios, where all momentum is absorbed by canopy elements and, hence, the effect of the ground on turbulent mixing is not important. Here, we propose a new analytical model that can simulate mean wind profiles within sparse canopies under neutral conditions. The model adopts a linearized canopy-drag parametrization and a first-order turbulence closure scheme taking into account the effects of both the ground and canopy elements on turbulent mixing. The resulting wind profile within a sparser canopy appears to be more like a logarithmic form, with the no-slip condition at the ground being satisfied. The analytical solution converges exactly to the standard surface-layer logarithmic wind profile in the case of zero canopy density (i.e., no-canopy scenario) and tends to be an exponential wind profile for a dense canopy; this feature is unique compared with existing analytical models for canopy wind profiles. Results from the new model are in good agreement with those from laboratory experiments and numerical simulations.
机译:冠层内部平均风廓线的现有分析模型仅适用于茂密的冠层场景,在该场景中,所有动量都被冠层元素吸收,因此,地面对湍流混合的影响并不重要。在这里,我们提出了一个新的分析模型,该模型可以模拟中性条件下稀疏冠层内的平均风廓线。考虑到地面和冠层元素对湍流混合的影响,该模型采用线性化的冠层阻力参数化和一阶湍流闭合方案。稀疏顶篷内产生的风廓线看起来更像是对数形式,地面的防滑条件得到了满足。在冠层密度为零的情况下(即无冠层情况),分析解决方案完全收敛到标准的表层对数风廓线,并且对于密集的冠层倾向于为指数风廓线;与现有的冠层风廓线分析模型相比,此功能是独一无二的。新模型的结果与实验室实验和数值模拟的结果非常吻合。

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