首页> 外文期刊>Journal of engineering physics and thermophysics >CALCULATION OF UNSTEADY FLOW PAST A CUBE ON THE WALL OF A NARROW CHANNEL USING URANS AND THE SPALART-ALLMARAS TURBULENCE MODEL
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CALCULATION OF UNSTEADY FLOW PAST A CUBE ON THE WALL OF A NARROW CHANNEL USING URANS AND THE SPALART-ALLMARAS TURBULENCE MODEL

机译:利用URANS和SPALART-ALLMARAS湍流模型计算狭窄通道内的非恒定流量立方体。

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The results of numerical simulation of fully developed turbulent flow in a channel with the cube on the lower wall (for the characteristic Reynolds number Re = 40,000) within the framework of the traditional approach to the solution of unsteady Reynolds-averaged Navier-Stokes equations (URANS) in combination with the semiempirical Spalart-Allmaras turbulence model (with a correction for rotation) have been presented. A detailed comparative analysis of the results of numerical simulation of local and integral flow characteristics and the Martinuzzi experimental data has shown that the self-oscillating regime of flow past the cube is a superposition of oscillations of the arms of a horseshoe vortex and the rear arched and detached vortex structures. Using fast Fourier transformation, it has been found that the oscillations are of a bimodal character in the longitudinal and vertical directions, whereas in the transverse direction, they are of a unimodal character.
机译:在传统方法求解非稳态雷诺平均Navier-Stokes方程的传统方法的框架内,下壁上的立方体(特征雷诺数Re = 40,000)的通道中充分发展的湍流的数值模拟结果(已经提出了结合半经验Spalart-Allmaras湍流模型(具有旋转校正)的URANS。对局部和整体流动特性数值模拟结果的详细比较分析以及Martinuzzi实验数据表明,经过立方体的流动的自激振荡状态是马蹄涡流和后拱形臂的振荡的叠加。和分离的涡旋结构。使用快速傅立叶变换,已经发现振动在纵向和垂直方向上具有双峰特性,而在横向上,它们具有单峰特性。

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