微分加热方形通风腔内混合对流纳米流体进入混沌的三个阶段

Taghourt Abdeldjalil, S. Aklouche-benouaguef, B. Zeghmati
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摘要

本文对非定常Al2O3水纳米流体在微分方形通风腔中的混合对流进行了数值研究。研究了恒定雷诺数Re=50和理查德森数Ri=40 ~ Ri=150时,从稳态到混沌混合对流状态的路径。控制方程采用隐式有限体积格式和TDMA算法求解。结果通过流线、等温线、平均温度、平均努塞尔数、压降....给出观察到,随着Ri数的增大,平均努塞尔数和平均腔温值均增大。随着Ri数的增加,压降略有减小。经过三个阶段达到完全混沌流态。第一阶段类似于Ruelle-Takens-Newhouse方案。在这一阶段结束时,周期性的出现中断了完全混沌的发展,开始了混沌路径的第二阶段,在这一阶段发生了另外一系列的三个超临界Hopf型分岔和一个周期加倍分岔。第三阶段开始于间歇性的出现,它打断了一个完整的混沌流的出现。在第三阶段结束时,会出现完全的混乱。
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A three stages transition into chaos for mixed convection nanofluid inside a differentially-heated square ventilated cavity
In this paper we present a numerical study of an unsteady Al2O3 water nanofluid mixed convection in a differentiated square ventilated cavity. The routes from steady-state to chaotic mixed convection state have been also studied for a constant Reynolds Number (Re), Re=50 and Richardson number (Ri) ranging from Ri=40 to Ri=150. The governing equations are solved using an implicit finite-volume scheme and TDMA algorithm. Results are presented through streamlines, isotherms, mean temperature, average Nusselt number, pressure drop…. It is observed that the average Nusselt number and the mean cavity temperature values are all the higher as the Ri number is great. The pressure drop slightly decreases as Ri number increases. The fully chaotic flow regime is reached after three stages. The first stage is similar to the Ruelle-Takens-Newhouse scenario. At the end of this stage, apparition of periodicity interrupted the development of a full chaos initiating the second stage of the route to chaos where another series of three supercritical Hopf type bifurcations and a period doubling bifurcation take place. The third stage starts by the emergence of intermittencies which interrupts the apparition of a full chaotic flow. A complete chaos is achieved at the end of this third stage.
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