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Weakly Nonlinear Oscillatory Convection in a Rotating Fluid Layer Under Temperature Modulation

机译:温度调制下旋转流体层中的弱非线性振荡对流

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A study of thermal instability driven by buoyancy force is carried out in an initially quiescent infinitely extended horizontal rotating fluid layer. The temperature at the boundaries has been taken to he time-periodic, governed by the sinusoidal function. A weakly nonlinear stability analysis has been performed for the oscillatory mode of convection, and heat transport in terms of the Nusselt number, which is governed by the complex form of Ginzburg-Landau equation (CGLE), is calculated. The influence of external controlling parameters such as amplitude and frequency of modulation on heat transfer has been investigated. The dual effect of rotation on the system for the oscillatory mode of convection is found either to stabilize or destabilize the system. The study establishes that heat transport can be controlled effectively by a mechanism that is external to the system. Further, the bifurcation analysis also presented and established that CGLE possesses the supercritical bifurcation.
机译:在初始静止的无限延伸水平旋转流体层中,进行了由浮力驱动的热不稳定性研究。由正弦函数控制的边界温度是时间周期的。对流的振荡模式已进行了弱非线性稳定性分析,并计算了由金塞尔堡-朗道方程(CGLE)的复数形式控制的以努塞尔数表示的热传递。研究了外部控制参数(例如调制的幅度和频率)对热传递的影响。发现旋转对流的振荡对系统的双重影响使系统稳定或不稳定。研究表明,可以通过系统外部的机制来有效地控制热传输。此外,分叉分析还提出并确定了CGLE具有超临界分叉。

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