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Resonant Penetrative Convection with an Internal Heat Source/Sink

机译:带有内部热源/散热器的共振穿透对流

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摘要

We develop a detailed linear instability and nonlinear stability analysis for the situation of convection in a horizontal plane layer of fluid when there is a heat sink/source which is linear in the vertical coordinate which is in the opposite direction to gravity. This can give rise to a scenario where the layer effectively splits into three sublayers. In the lowest one the fluid has a tendency to be convectively unstable while in the intermediate layer it will be gravitationally stable. In the top layer there is again the possibility for the layer to be unstable. This results in a problem where convection may initiate in either the lowest layer, the upmost layer, or perhaps in both sublayers simultaneously. In the last case there is the possibility of resonance between the upmost and lowest layers. In all cases penetrative convection may occur where convective movement in one layer induces motion in an adjacent sublayer. In certain cases the critical Rayleigh number for thermal convection may display a very rapid increase which is much greater than normal. Such behaviour may have application in energy research such as in thermal insulation.
机译:当散热器/热源在与重力方向相反的垂直坐标上呈线性时,我们针对流体水平面层中的对流情况开发了详细的线性不稳定性和非线性稳定性分析。这会导致该层有效地分成三个子层的情况。在最低层中,流体有对流不稳定的趋势,而在中间层中,它在重力方面是稳定的。在顶层中,该层又可能不稳定。这导致了对流可能同时在最低层,最高层或可能同时在两个子层中启动的问题。在最后一种情况下,最上层和最下层之间可能会发生共振。在所有情况下,渗透性对流都可能发生,其中一层中的对流运动会引起相邻子层中的运动。在某些情况下,热对流的临界瑞利数可能会显示非常迅速的增加,这比正常情况大得多。这样的行为可以在能量研究中,例如在绝热中应用。

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