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首页> 外文期刊>Journal of Fluid Mechanics >Control of long-wavelength Marangoni-Benard convection
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Control of long-wavelength Marangoni-Benard convection

机译:长波长Marangoni-Benard对流的控制

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A nonlinear feedback control strategy for delaying the onset and eliminating the subcritical nature of long-wavelength Marangoni-Benard convection is investigated based on an evolution equation. A control temperature is applied to the lower wall in a gas-liquid layer otherwise heated uniformly from below. It is shown that, if the interface deflection is assumed to be known via sensing as a function of both horizontal coordinates and time, a control temperature with a cubic-order polynomial dependence on the deflection is capable of delaying the onset as well as eliminating the subcritical instability altogether, at least on the basis of a weakly nonlinear analysis. The analytical results are supported by direct numerical simulations. The control coefficients required for stabilization are O(1) for both delaying onset indefinitely and eliminating subcritical instability. In order to discuss the effects of control, a review is made of the dependence of the weakly nonlinear subcritical solutions without control upon the various governing parameters.
机译:基于演化方程,研究了一种非线性反馈控制策略,该策略用于延迟长波Marangoni-Benard对流的发生并消除其亚临界特性。将控制温度施加到气-液层中的下壁,否则从下方均匀加热。结果表明,如果假设通过检测得知界面挠度是水平坐标和时间的函数,则与挠度呈三次阶多项式关系的控制温度能够延迟发生并消除这种现象。至少在弱非线性分析的基础上,完全达到亚临界不稳定性。分析结果得到直接数值模拟的支持。稳定所需的控制系数为O(1),既可以无限期地延迟发作,又可以消除亚临界不稳定。为了讨论控制的效果,回顾了弱非线性亚临界解的依赖性,而没有对各种控制参数进行控制。

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