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Simulation numerique de la stabilite dans les cavites rectangulaires soumises a des flux de chaleur uniformes et croises.

机译:矩形腔在均匀和交叉热流作用下的稳定性数值模拟。

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摘要

In this thesis, we focus on a linear and weakly non-linear stability analysis of the parallel, fully developed convection flow in a rectangular cavity whose boundaries are subjected to crossed uniform heat fluxes. For numerical modeling of this system, the Navier-Stokes equation with the assumption of the Boussinesq approximation, and the energy equation are coupled to simulate the natural convective motion. Parametric investigations based on the Rayleigh number, the Prandtl number, and the aspect ratio are performed to characterize the Stokes problem. The effect of initial conditions and boundary conditions on the convection process are also investigated.; First, we examined the parallel flown pattern within a cavity with large values of the aspect ratios (a 1 or a 1). The results showed that dependently of Rayleigh number and heat flux ratio (q), multiple solutions can exist, some of which are unstable (anti-natural). Numerical calculations were carried out to determine the minimum aspect ratio above which the flow can be assumed to be quasi-parallel. The effects of the governing parameters on the intensity of the flow were examined. The multiples states of natural convection and different type of bifurcations were also discussed.; Second, we studied the stability of the parallel flow pattern in order to predict the thresholds for Hopf bifurcation. The critical Rayleigh numbers for the onset of convection in the layer are predicted for a wide range of Prandtl numbers and heat flux ratios. Depending on the value of Pr and the heat flux ratio, two instability modes are predicted, thermal, for Pr > 1 and hydrodynamic, for Pr 1. For small Prandtl numbers (Pr ∈ [0,1]), both modes can occur at the codimension-2 intersection points of the critical branches. The transition between the shear-driven and buoyancy-driven instabilities occurs with a jump in the critical wavelength number and the critical oscillation frequency.; For the horizontal fluid layer and for the range of parameters considered, stable, super-critical bifurcation occur solely for longitudinal disturbances with three velocity components. According to the value of Pr and the heat flux ratio, the instability is hydrodynamic and oscillating at small Pr, and thermal and steady for larger Pr. For small heat flux ratios (q 1), there exists an unstable, subcritical branches of the hydrodynamic modes, for oblique disturbances. At the codimension-2 points, computations of the four Landau coefficients revealed that the hydrodynamic mode is the only stable mode.; In addition, for the vertical slot, the critical disturbances are the transverse across the base flow (betac). For small and mild values of Prandtl (Pr 53.325), instabilities are always oscillating. When Prandtl increases (Pr > 53.325), stationary supercritical branches are detected. Computations of the Landau coefficients for the two interacting modes revealed that the thermal mode is the only stable mode at the codimension-2 points. (Abstract shortened by UMI.)
机译:在本文中,我们着重于对矩形腔内平行,完全展开的对流进行线性和弱非线性稳定性分析,该矩形腔的边界受到交叉均匀热流的影响。对于该系统的数值建模,将具有Boussinesq近似假设的Navier-Stokes方程与能量方程耦合以模拟自然对流运动。基于Rayleigh数,Prandtl数和纵横比进行参数研究,以表征Stokes问题。还研究了初始条件和边界条件对流过程的影响。首先,我们检查了具有高纵横比(a 1或 1)值的空腔内的平行飞行模式。结果表明,取决于瑞利数和热通量比(q),可以存在多种解决方案,其中一些是不稳定的(反自然的)。进行了数值计算以确定最小长宽比,在该最小长宽比之上,可以将流动假定为准平行。检查了控制参数对流动强度的影响。还讨论了自然对流和不同类型分叉的多重状态。其次,我们研究了平行流模式的稳定性,以预测Hopf分叉的阈值。对于广泛的普朗特数和热通量比,预测了层中对流发生的临界瑞利数。根据Pr的值和热通量比,可以预测两种不稳定模式:对于Pr> 1是热的,对于Pr <1是流体动力的。对于小的Prandtl数(Pr∈[0,1]),两种模式都可能发生。在关键分支的codimension-2交点处。剪切驱动和浮力驱动的不稳定性之间的过渡是随着临界波长数和临界振荡频率的跃迁而发生的。对于水平流体层和所考虑的参数范围,仅对于具有三个速度分量的纵向扰动,才会发生稳定的超临界分叉。根据Pr的值和热通量比,不稳定性在较小的Pr时是流体动力学的,并且在较大的Pr时是不稳定的。对于较小的热通量比(q <1),存在流体动力模式的不稳定,亚临界分支,用于倾斜扰动。在codimension-2点,对四个Landau系数的计算表明,流体动力模式是唯一的稳定模式。另外,对于垂直缝隙,关键扰动是横穿基流(betac)的横向扰动。对于小而温和的Prandtl值(Pr <53.325),不稳定性总是在波动。当Prandtl增加(Pr> 53.325)时,将检测到固定的超临界分支。对两种相互作用模式的Landau系数的计算表明,热模式是在codimension-2点处唯一的稳定模式。 (摘要由UMI缩短。)

著录项

  • 作者

    Bougherara, Habiba.;

  • 作者单位

    Ecole Polytechnique, Montreal (Canada).;

  • 授予单位 Ecole Polytechnique, Montreal (Canada).;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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