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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Lagrangian transport in a class of three-dimensional buoyancy-driven flows

机译:APS-APS流体动力学分部第70届年会-事件-一类由浮力驱动的三维拉格朗日输运

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The study concerns the Lagrangian dynamics of three-dimensional (3D) buoyancy-driven cavity flows under steady and laminar conditions due to a global temperature gradient imposed via an opposite hot and cold sidewall. This serves as archetypal configuration for natural-convection flows in which gravity is perpendicular to the global temperature gradient. Limited insight into the Lagrangian properties of this class of flows motivates this study. The 3D Lagrangian dynamics are investigated in terms of the generic structure of the Lagrangian flow topology that is described in terms of the Grashof number (Gr) and the Prandtl number (Pr). Gr is the principal control parameter for the flow topology: vanishing Gr yields a state of closed streamlines (integrable state); increasing Gr causes the formation of toroidal coherent structures embedded in chaotic streamlines governed by Hamiltonian mechanisms. Fluid inertia prevails for ``smaller'' Gr. A buoyancy-induced bifurcation of the flow topology occurs for ``larger'' Gr and underlies the emergence of ``secondary rolls'' and secondary tori for ``larger'' Pr. Stagnation points and corresponding manifold interactions are key to the dynamics.
机译:这项研究涉及三维(3D)浮力驱动型腔流的拉格朗日动力学,该动力学是由于相对的冷热侧壁施加的整体温度梯度而在稳定和层流条件下产生的。这是重力垂直于全局温度梯度的自然对流的原型构造。对此类流的拉格朗日性质的有限了解激发了这项研究。根据拉格朗日流拓扑的通用结构研究了3D拉格朗日动力学,该结构以Grashof数(Gr)和普朗特数(Pr)进行描述。 Gr是流拓扑的主要控制参数:消失Gr会产生闭合流线状态(可积状态);增加的Gr会导致嵌入汉密尔顿机制控制的混沌流线中的环形相干结构的形成。 ``较小''的Gr占主导地位的是流体惯性。浮力引起的流动拓扑分叉出现在``较大''的Gr上,并为``较大''的Pr出现了``次级辊''和次级托里。停滞点和相应的歧管相互作用是动力学的关键。

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