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Numerical simulation of turbulent Rayleigh-Benard convection

机译:湍流瑞利-贝纳德对流的数值模拟

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The turbulent convection of liquid in a horizontal layer is simulated numerically for the case of heating from below. The liquid is assumed to be viscous and incompressible, and the layer boundaries are assumed to be flat, isothermal, and free from shear stress. The Boussinesq approach without any semi-empirical relationships (DNS) has been used and the flow is considered to be three-dimensional and non-stationary. The special pseudo-spectral method with resolution 65~3 of harmonics and Prandtl number equal to 10 is used. The present 3D,free simulation shows that exponent of power law at r ≥ 150 for temperature pulsations -2/15 coincides with the experimental result and that exponent of power laws for vertical velocity pulsations 0.4 and Reynolds number 0.5 are close to known experimental and numerical results. The same is also true for kinetic energy and rms velocity.
机译:对于从下方加热的情况,通过数值模拟了水平层中液体的湍流对流。假定液体是粘性和不可压缩的,并且层边界假定为平坦,等温且没有剪切应力。已使用没有任何半经验关系(DNS)的Boussinesq方法,并且该流被认为是三维的并且是非平稳的。使用谐波分辨率为65〜3且普朗特数等于10的特殊伪谱方法。当前的3D,自由仿真表明,温度脉动-2/15在r≥150时的幂律指数与实验结果一致,垂直速度脉动0.4和雷诺数0.5的幂律指数与已知的实验和数值接近结果。动能和均方根速度也是如此。

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