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Convection in rotating annular channels heated from below. Part 1. Linear stability and weakly nonlinear mean flows

机译:从下方加热的旋转环形通道中的对流。第1部分。线性稳定性和弱非线性平均流量

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Convection in a Boussinesq fluid in an annular channel rotating about a vertical axis with lateral rigid sidewalls, stress-free top and bottom, uniformly heated from below is investigated. The sidewalls are assumed to be either perfectly insulating or conducting. Three different types of convection are identified when the channel is rotating sufficiently fast: (i) global oscillatory convection preferred for small Prandtl numbers in channels with intermediate or large aspect ratios (width to height ratio), (ii) wall-localized oscillatory convection representing the most unstable mode for moderate or large Prandtl numbers in channels with intermediate or large aspect ratios and (iii) global stationary convection preferred in channels with sufficiently small aspect ratios regardless of the size of the Prandtl number. The corresponding weakly nonlinear problem describing differential rotation and meridional circulation is also examined, showing that geostrophic, multiple-peaked (two prograde and two retrograde) differential rotation can be maintained by the Reynolds stresses in wall-localized convective eddies in a rapidly rotating channel.
机译:研究了在绕垂直轴旋转的环形通道中的Boussinesq流体中的对流,该通道具有横向刚性侧壁,顶部和底部无应力,并且从下方均匀加热。假定侧壁完全绝缘或导电。当通道旋转得足够快时,会识别出三种不同类型的对流:(i)对于具有中等或较大纵横比(宽高比)的通道中的小Prandtl数,首选全局振荡对流;(ii)代表壁局部振荡对流在具有中等或较大纵横比的通道中,对于中等或较大的Prandtl数,最不稳定的模式;以及(iii)在具有足够小的纵横比的通道中,无论Prandtl数的大小如何,首选全局平稳对流。还研究了描述微分旋转和子午环流的相应的弱非线性问题,表明在快速旋转的通道中,壁面对流涡流中的雷诺应力可以维持地转,多峰(两个顺行和两个逆行)的差异旋转。

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