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Selection of boundary conditions for modeling the turbulent exchange processes within the atmospheric surface layer

机译:选择大气表面层内湍流交换过程的边界条件的选择

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摘要

One- and two-dimensional hydrodynamic models of turbulent transfer within the atmospheric surface layer under neutral thermal stratification are considered. Both models are based on the solution of system of the timeaveraged equations of Navier - Stokes and continuity using a 1.5-order closure scheme as well as equations for turbulent kinetic energy and the rate of its dissipation. The influence of the upper and lower boundary conditions on vertical profiles of wind speed and turbulence parameters within the atmospheric surface layer was derived using an one-dimensional model usually applied in case of an uniform ground surface. The boundary conditions in the model were prescribed in such way that the vertical wind and turbulence patterns were well agreed with widely used logarithmic vertical profile of wind speed, linear dependence of turbulent exchange coefficient on height above ground surface level and constancy of turbulent kinetic energy within the atmospheric surface layer under neutral atmospheric conditions. On the basis of the classical one-dimensional model it is possible to obtain a number of relationships which link the vertical wind speed gradient, turbulent kinetic energy and the rate of its dissipation. Each of these relationships can be used as a boundary condition in our hydrodynamic model. The boundary conditions for the wind speed and the rate of dissipation of turbulent kinetic energy were selected as parameters to provide the smallest deviations of model calculations from classical distributions of wind and turbulence parameters. The corresponding upper and lower boundary conditions were used to define the initial and boundary value problem in the two-dimensional hydrodynamic model allowing to consider complex topography and horizontal vegetation heterogeneity. The two-dimensional model with selected optimal boundary conditions was used to describe the spatial pattern of turbulent air flow when it interacted with the forest edge. The dynamics of the air flow establishment depending on the distance from the forest edge was analyzed. For all considered initial and boundary value problems the unconditionally stable implicit finite-difference schemes of their numerical solution were developed and implemented.
机译:考虑了中性热分层下大气表面层内湍流转移的单维流体动力学模型。两种型号都基于Navier - Stokes的定期方程式的系统的解决方案,以及使用1.5阶闭合方案的连续性以及湍流动能的方程和耗散速度。使用一维模型在均匀地面的情况下,使用一维模型来推导上下边界条件对大气表面层内的风速和湍流参数的垂直轮廓的影响。模型中的边界条件以这样的方式规定,垂直风和湍流图案与风速的广泛使用的对数垂直轮廓相同,湍流交换系数上高于地面水平的高度和湍流动能的恒定的线性依赖性中性大气条件下的大气表面层。在经典一维模型的基础上,可以获得链接垂直风速梯度,湍流动能和耗散速率的多个关系。这些关系中的每一个可以用作我们的流体动力学模型中的边界条件。选择风速的边界条件和湍流动能的耗散速率作为参数,以提供来自风和湍流参数的经典分布的模型计算的最小偏差。使用相应的上下边界条件来定义二维流体动力学模型中的初始和边值问题,允许考虑复杂的地形和水平植被异质性。具有所选最佳边界条件的二维模型用于描述与森林边缘相互作用时湍流空气流动的空间模式。分析了空气流量建立的动态,这取决于森林边缘距离的距离。对于所有考虑的初始和边界值问题,开发并实施了它们数值解决方案的无条件稳定的隐式有限差分方案。

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