Phase turbulence in rayleigh-Benard convection

Xi, Li, Gunton
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引用次数: 0

Abstract

We present a three-dimensional simulation of Rayleigh-Benard convection in a large aspect ratio Gamma=60 with stress-free boundaries for a fluid Prandtl number sigma=0.5. We find that a spatiotemporal chaotic state (phase turbulence) emerges immediately above onset, which we investigate as a function of the reduced control parameter epsilon. In particular we find that the correlation length for the vertical velocity field, the time averaged convective current, and the mean square vorticity have power law behaviors near onset, with exponents given by -1/2, 1, and 5/2 respectively. We also find that the time averaged vertical velocity and vertical vorticity fields have the same (disordered) spatial characteristics as the corresponding instantaneous patterns for these fields, and that there is no long-term phase correlation in the system. Finally, we present simple theoretical explanations for the time averaged convective current as a function of the control parameter, and for the fact that the time dependence of three global quantities (characterizing the dissipation of kinetic energy, the release of internal energy by buoyancy, and entropy flow) is essentially the same.

瑞利-贝纳德对流中的相湍流
我们提出了一个三维模拟的瑞利-贝纳德对流在大展弦比Gamma=60,无应力边界的流体普朗特数sigma=0.5。我们发现一个时空混沌状态(相位湍流)立即出现在开始之上,我们研究了它作为减小控制参数epsilon的函数。特别地,我们发现垂直速度场的相关长度、时间平均对流和均方涡度在开始时具有幂律行为,其指数分别为-1/2、1和5/2。我们还发现时间平均垂直速度场和垂直涡度场与其对应的瞬时模式具有相同的(无序的)空间特征,并且在系统中不存在长期的相位相关。最后,我们对时间平均对流作为控制参数的函数,以及三个全局量(表征动能耗散、浮力释放内能和熵流)的时间依赖性本质上是相同的这一事实,提出了简单的理论解释。
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