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A MODELING OF SHEAR AND NORMAL TURBULENT STRESSES IN OPEN CHANNEL FLOWS

机译:开放通道流中剪切和正常湍流应力的建模

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The structure of turbulence in open channel flows is anisotropic and very complicated. This structure is described by the turbulent stresses tensor. This tensor can be presented as a sum of two tensors: the normal stress and shear stress tensors. The normal stresses can be known from measurements or some suitable theoretical and empirical approaches. One of them which allows for calculating the main component of the normal stresses is presented in the paper. The shear stresses can be defined by many different models. In the paper the stresses definition is based on a new concept of generic mixing length. It is shown how to define the generic mixing length and how to decompose it into the three main components of the mixing length tensor. To show how the new model works the basic hydrodynamics equations (parabolic approximation of Reynolds equations) together with the turbulence model are solved. The well-known Patankar-Spalding algorithm was used for solving these equations. Some numerical simulations were performed for different components of the mixing length tensor. The results show the role of these components in calculation of 3-D velocity distribution, i.e. the prime velocity distribution and secondary currents. Also, they show that the process of model calibration is simple and very efficient.
机译:在开放通道流动中的湍流结构是各向异性的并且非常复杂。这种结构由湍流应力张量描述。该张量可以作为两个张量的总和:正常应力和剪切应力张量。可以从测量或一些合适的理论和经验方法中知道正常应力。其中一个允许计算正常应力的主要成分的其中一个。剪切应力可以由许多不同的模型定义。在纸质中,压力定义是基于通用混合长度的新概念。显示了如何定义通用混合长度以及如何将其分解为混合长度张量的三个主要组件。为了展示新模型如何运作,解决了基本流体动力学方程(雷诺方程的抛物面近似值)与湍流模型一起解决。众所周知的PatankAl-Spaldation算法用于解决这些方程。对混合长度张量的不同部件进行了一些数值模拟。结果显示了这些组分在计算3-D速度分布的计算中的作用,即主要速度分布和二次电流。此外,他们表明模型校准过程简单且非常有效。

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