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NUMERICAL SIMULATIONS OF AN UNSTEADY CONFINED NATURAL CONVECTION FLOW

机译:非定常有限自然对流流动的数值模拟

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A two-dimensional numerical analysis of a laminar natural convection flow within an air-filled enclosure is proposed in this paper from an unstable configuration previously studied experimentally. The flow is driven by a heated square-section cylinder located at the center of a square-section enclosure. Instabilities are observed for an aspect ratio (height of the cylinder over the height of the cavity) of 0.4 and cause the flow to turn into a three-dimensional and unsteady regime characterized by a symmetry breaking and large scale high amplitude flappings around the cylinder. The multi-physic computational software CEDRE, developed at the ONERA, is used to study this unstable behavior and a time-dependent compressible flow solver is used to perform the two-dimensional simulations under the low Mach number approximation, corresponding to the mid-depth cross-section of the enclosure from the experimental configuration. The first results on the investigation of the first unstable modes confirm the onset of the instabilities at the Rayleigh number of the experiment with asymmetrical motions of the fluid around the cylinder. Further analyses highlight the critical Rayleigh number that defines the instability threshold of the first bifurcation which origin and nature could have been identified. Finally, joint fluid-solid simulations are performed to determine more precisely the role of boundary conditions in the onset of instabilities.
机译:本文从先前实验研究的不稳定结构出发,提出了对充满空气的机壳内层流自然对流的二维数值分析。流动由位于方形外壳中央的加热的方形气缸驱动。对于长宽比(圆柱体的高度与腔体的高度)为0.4观察到不稳定性,并导致流动变成三维不稳定的状态,其特征是对称破坏和围绕圆柱体的大规模高振幅拍动。使用ONERA开发的多物理计算软件CEDRE来研究这种不稳定行为,并使用时间相关的可压缩流求解器在低马赫数近似值(对应于中深度)下进行二维模拟。实验配置中的外壳横截面。关于第一个不稳定模式的研究的最初结果证实了在围绕圆柱体的流体非对称运动的实验中,在瑞利数下的不稳定性开始。进一步的分析强调了临界瑞利数,该瑞利数定义了可以确定起源和性质的第一个分叉的不稳定性阈值。最后,进行联合的流固耦合模拟,以更精确地确定边界条件在不稳定性发作中的作用。

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