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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental and numerical investigation of natural convection in tilted square cavity filled with air
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Experimental and numerical investigation of natural convection in tilted square cavity filled with air

机译:充满空气倾斜方腔自然对流的实验和数值研究

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摘要

In the present work, the natural convection mechanism of air in a square cavity with active side and inferior walls has been investigated both experimentally and numerically. The experimental method developed by some of the authors has been tested against new boundary condition. In addition, the combined radiative-convective heat transfer method has been investigated. The position relative to the gravity vector and the temperature difference between hot and cold walls were analysed: four different inclination angles (theta = 0, theta = pi/6, theta = pi/3, theta = pi/2) of the cavity and five different temperatures (10(4) = Ra = 10(5)) of the hot walls were tested for a total of 20 different cases. The velocity fields and the effective temperature of the walls have been measured by, respectively, a Particle Image Velocimetry (PIV) system and a set of thermocouples. It has been assessed that both the average and maximum velocities increase with the increasing of the Rayleigh number and of the tilting angle. The velocity field is characterized by two vortices, with a symmetry axe passing from the cavity centre when theta = 0; by increasing the tilting angle the symmetry tends to disappear leading to the presence of only one vortex for theta = pi/2. Numerical simulations with both pure convection and combined radiative-convective model have been performed. For the model validation, both the maximum and the average values of the velocity field on the cavity have been taken into account. The results are in good agreement with the experimental measurements. The addition of the radiance contribution does not influence the results.
机译:在本作工作中,已经在实验和数值上研究了具有活动侧和下壁的方形腔中的空气中的空气的自然对流机制。由一些作者开发的实验方法已经针对新的边界条件进行了测试。此外,研究了组合的辐射对流传热方法。分析了相对于重力矢量的位置和热和冷壁之间的温差:四个不同的倾角(Theta = 0,Theta = Pi / 6,Theta = Pi / 3,Theta = Pi / 2)的腔体和测试热壁的五种不同温度(10(4)= = 10(5))总共20种不同的情况。通过分别通过颗粒图像速度(PIV)系统和一组热电偶来测量速度场和壁的有效温度。已经评估了平均值和最大速度随着瑞利数和倾斜角度的增加而增加。速度场的特征在于两个涡流,当Theta = 0时,具有从腔中心的对称轴。通过增加倾斜角度,对称性倾向于消失导致仅存在一个涡流的涡流= pi / 2。已经进行了具有纯对流和组合辐射对流模型的数值模拟。对于模型验证,已经考虑了腔体上的最大值和速度字段的平均值。结果与实验测量有关。添加辐射贡献不会影响结果。

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