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An explicit algebraic Reynolds stress and heat flux model for incompressible turbulence: Part II Buoyant flow

机译:不可压缩湍流的显式代数雷诺应力和热通量模型:第二部分浮力流

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This paper presents a derivation of an explicit algebraic model for two-dimensional (2-D) buoyant flows. It is an extension of the work reported in Part I (So et al. [27]). The tensor representation method of Jongen and Gatski [14] is extended to derive an explicit algebraic Reynolds stress model (EASM) for 2-D buoyant flow invoking the Boussinesq approximation. The projection methodology is further extended to treat the heat flux transport equation in the derivation of an explicit algebraic heat flux model (EAHFM) for buoyant flow. Again, the weak equilibrium assumption is invoked for the scaled Reynolds stress and scaled heat flux equation. An explicit algebraic model for buoyant flows is then formed with the EASM and EAHFM. From the derived EAHFM, an expression for the thermal diffusivity tensor in buoyant shear flows is deduced. Furthermore, a turbulent Prandtl number (Pr-T) for each of the three heat flux directions is determined. These directional Pr-T are found to be a function of the gradient Richardson number. Alternatively, a scalar Pr-T can be derived; its value is compared with the directional Pr-T. The EASM and EAHFM are used to calculate 2-D homogeneous buoyant shear flows and the results are compared with direct numerical simulation data and other model predictions, where good agreement is obtained.
机译:本文提出了二维(2-D)浮力流的显式代数模型的推导。它是第一部分(So等人[27])报道的工作的扩展。 Jongen和Gatski [14]的张量表示方法得到了扩展,从而得出了一个用Boussinesq逼近的二维浮力流的显式代数雷诺应力模型(EASM)。在推导浮力流的显式代数热通量模型(EAHFM)的过程中,将投影方法进一步扩展为处理热通量传递方程。同样,对比例缩放的雷诺应力和比例缩放的热通量方程式调用了弱平衡假设。然后,用EASM和EAHFM形成浮力流的显式代数模型。从导出的EAHFM中,推导出浮力剪切流中热扩散张量的表达式。此外,确定三个热通量方向中每个方向的湍流普朗特数(Pr-T)。发现这些定向Pr-T是梯度理查森数的函数。或者,可以导出标量Pr-T。将其值与方向Pr-T进行比较。 EASM和EAHFM用于计算二维均匀浮力剪切流,并将结果与​​直接数值模拟数据和其他模型预测进行比较,从而获得良好的一致性。

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