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Research on Pendulum Characteristic of Natural Convection Gas within Three-dimensional Closed Cavity

机译:三维封闭腔内自然对流气体摆特性研究

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In this paper, the pendulum characteristic of natural convection gas within the 3D spherical closed cavity are discussed. By using the finite element method, the flow and temperature field caused by heat source within the 3D spherical closed cavity under different tilted conditions are calculated. The results are as follow: (1) Under buoyancy effect, the direction of natural convection gas in the cavity always stays in the direction of the buoyancy. (2) The isotherm is approximately oval. The temperature field in the direction of buoyancy is stretched and in the vertical direction of buoyancy is compressed. The temperature gradient which is parallel to the baseline near the heat source O is equal with the cavity horizontal. The temperature gradients are not equal with the tilted angle of 10°. The temperature gradient difference Δδ=4.7 K/mm, when the temperature of heat source is 473K and the radius of the closed cavity is 10mm. The temperature gradient difference Δδ=9.5 K/mm with the tilted angle of 20°. (3) The difference of the temperature gradients on both sides increases with the increase of tilted angle. There is a linear relationship between the temperature gradient difference Δδ and the tilted angle θ.
机译:本文讨论了3D球形封闭腔内自然对流气体的摆特性。通过使用有限元方法,计算了在不同倾斜条件下,热源在3D球形封闭腔内引起的流动和温度场。结果如下:(1)在浮力作用下,空腔中自然对流气体的方向始终保持在浮力方向。 (2)等温线近似为椭圆形。沿浮力方向的温度场被拉伸,而沿浮力垂直方向的温度场被压缩。平行于热源O附近的基线的温度梯度等于空腔水平。温度梯度与10°的倾斜角不相等。当热源的温度为473K且封闭腔的半径为10mm时,温度梯度差Δδ= 4.7K / mm。温度梯度差Δδ= 9.5K / mm,倾斜角为20°。 (3)两侧温度梯度的差异随着倾斜角度的增加而增加。温度梯度差Δδ与倾斜角θ之间存在线性关系。

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