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Numerical Simulation and Stability Study of Natural Convection in an Inclined Rectangular Cavity

机译:矩形腔内自然对流的数值模拟与稳定性研究

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This paper examines the process of instability of natural convection in an inclined cavity based on numerical simulations. The energy gradient method is employed to analyze the physics of the flow instability in natural convection. It is found that the maximum value of the energy gradient function in the flow field correlates well with the location where flow instability occurs. Meanwhile, the effects of the flow time, the plate length, and the inclination angle on the instability have also been discussed. It is observed that the locations of instabilities migrate right as the flow time increased. With the increase of plate length, the onset time of the instability on the top wall of the cavity decreases gradually and the locations of instabilities move to the right side. Furthermore, the locations of instability move left with the increase of the inclination angle in a certain range. However, these positions move right as the accumulation of the heat flux is restrained in the lower left corner of the cavity once the inclination angle exceeds a certain range.
机译:本文基于数值模拟研究了倾斜腔中自然对流的不稳定性过程。采用能量梯度法分析了自然对流中流动不稳定性的物理现象。发现流场中能量梯度函数的最大值与发生流动不稳定性的位置很好地相关。同时,还讨论了流动时间,板长和倾斜角度对不稳定性的影响。可以观察到,随着流动时间的增加,不稳定性的位置向右迁移。随着板长度的增加,腔顶壁上不稳定性的开始时间逐渐减少,不稳定性的位置移至右侧。此外,不稳定性的位置在一定范围内随着倾斜角的增加而向左移动。但是,一旦倾斜角超过一定范围,由于在腔体的左下角限制了热通量的积累,这些位置向右移动。

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  • 来源
    《Mathematical Problems in Engineering 》 |2013年第2期| 198695.1-198695.12| 共12页
  • 作者单位

    Faculty of Mechanical Engineering and Automation, Zhejiang Sci-Tech University, Hangzhou 310018, China;

    Faculty of Mechanical Engineering and Automation, Zhejiang Sci-Tech University, Hangzhou 310018, China;

    School of Civil Engineering, The University of Sydney, NSW 2006, Australia;

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