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首页> 外文期刊>International Journal of Thermal Sciences >Numerical investigation of flow reversal and instability in mixed laminar vertical tube flow
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Numerical investigation of flow reversal and instability in mixed laminar vertical tube flow

机译:混合层流垂直管内流动逆向和失稳的数值研究

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摘要

The problem of the transient laminar mixed convection flow of air in a vertical tube under buoyancy effect and high wall heat flux condition has been numerically investigated by using a full 3D-transient-model and Boussinesq's assumptions. The tube is submitted to a uniform but time-dependent wall heat flux. Results have clearly shown that the flow reversal was first initiated near the tube exit section, on the tube wall and at the level Gr = 3 × 10{sup}5 for opposed-buoyancy case, and on the tube centerline and at the level of Grashof number around 106 for assisted-buoyancy one. With further increase in time of the wall heat flux, such reversed flow region has considerably increased in size and intensity and it clearly spreads into the upstream region. The presence of such recirculatibn cells has drastically perturbed the flow and the thermal field as well as the heat transfer. Although the flow structure appears to conserve its axisymmetrical characters even for cases with very high Grashof numbers, results from this study have shown that the flow seems to remain stable and unique up to the level Gr = 5 × 10{sup}5 and 10{sup}6, respectively, for opposed and assisted buoyancy cases. Beyond these critical Grashof numbers; an extremely slow and rather difficult and tedious convergence behaviors have been experienced, which are believed to be due to a possible flow transition.
机译:通过使用完整的3D瞬态模型和Boussinesq的假设,对浮力作用和高壁热通量条件下垂直管中空气的瞬态层流混合对流问题进行了数值研究。管子受到均匀但随时间变化的壁热通量。结果清楚地表明,在逆向浮力情况下,在管子出口段附近,在管壁上,在液位Gr = 3×10 {sup} 5处,在管子中线和在辅助浮力1的Grashof数约为106。随着壁热通量时间的进一步增加,这种反向流动区域的尺寸和强度大大增加,并且明显地扩散到上游区域。这种再循环细胞的存在极大地干扰了流动和热场以及热传递。尽管即使在具有非常高的Grashof数的情况下,流动结构也似乎保留了其轴对称特征,但这项研究的结果表明,在Gr = 5×10 {sup} 5和10 { sup} 6,分别针对相对浮力和辅助浮力。除了这些重要的Grashof数之外;已经经历了极其缓慢且相当困难且乏味的收敛行为,这被认为是由于可能的流动过渡所致。

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