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A note on kappa - epsilon modelling of vegetation canopy Air-Flows

机译:关于kappa的注释-植被冠层气流的epsilon建模

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The kappa-epsilon turbulence model is a standard of computational software packages for engineering, yet its application to canopy turbulence has not received comparable attention. This is probably due to the additional source (and/or sink) terms, whose parameterization remained uncertain. This model must include source terms for both turbulent kinetic energy (kappa) and the viscous dissipation rate (epsilon), to account for vegetation wake turbulence budget. In this note, we show how Kolmogorov'srelation allows for an analytical solution to be calculated within the portion of a dense and homogeneous canopy where the mixing length does not vary. By substitution within model equations, this solution allows for a set of constraints on source term model coefficients to be derived. Those constraints should meet both Reynolds averaged Navier-Stokes equations and large-eddy simulation sub-grid scale turbulence modelling requirements. Although originating from within a limited portion of the canopy, the predicted coefficients values must be valid elsewhere in order to make the model capable of predicting the whole canopy-layer flow with a single set of constants.
机译:kappa-ε湍流模型是工程计算软件包的标准,但是其在冠层湍流中的应用并未受到类似的关注。这可能是由于附加的源(和/或宿)项,其参数化仍不确定。该模型必须包括湍动能(kappa)和粘性耗散率(epsilon)的源项,以说明植被尾流的湍流预算。在本说明中,我们说明了柯尔莫哥洛夫(Kolmogorov)的关系如何允许在稠密且均质的树冠部分(混合长度不变)内计算分析解决方案。通过在模型方程式内进行替换,此解决方案允许导出对源项模型系数的一组约束。这些约束应同时满足雷诺平均Navier-Stokes方程和大涡模拟子网格尺度湍流建模要求。尽管源自冠层的有限部分,但是预测系数值必须在其他位置有效,以便使模型能够使用一组常数来预测整个冠层的流动。

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