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On the impact of the aspect ratio on the formation of large-Scale structures in turbulent mixed convection in a cuboidal sample

机译:关于纵横比对立方体样本中湍流混合对流中大规模结构形成的影响

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Temperature measurements combined with Particle Image Velocimetry (PIV) were performed in a cuboidal convection sample with a square cross section (width / height). The objective of the study is to analyze the influence of the aspect ratio Gamma(xz) = L/H and the Archimedes number Ar on the large-scale coherent structures in mixed convection. Air at ambient pressure was used as working fluid (Pr = 0.7). The aspect ratio was varied between 1 = Gamma(xz) = 4 (length / height) and the variation of the Archimedes number was achieved by prescribing the inflow velocity of an air jet, which was superimposed on the thermally induced flow via an inlet and outlet channel. The Rayleigh number was kept constant at Ra = 2.0 x 10(8). A model, adopted from pure thermal convection, was used to extract the number of convection rolls from the circumferential temperature distribution measured along the sidewalls of the convection sample. For a fixed Archimedes number (Ar approximate to 4), the number of thermally induced large-scale circulations (LSCTC) increased with the aspect ratio of the sample. Specifically, starting with Gamma = 2, a linear dependence with unity slope was found. A decrease of the Archimedes number led to a transition from the single ISCTC structures to FC-dominated LSCs (LSCFC) for Gamma = 1 and Gamma = 2, whereas the multi-roll structures found for Gamma = 3 and Gamma = 4 were more stable even for higher inflow velocities.
机译:在具有方形横截面(宽度/高度)的立方体对流样品中进行温度测量与颗粒图像速度计量(PIV)。该研究的目的是分析纵横比γ(XZ)= L / H和ARCHIMEDES数AR对混合对流中的大规模相干结构的影响。环境压力下的空气用作工作流体(PR = 0.7)。纵横比在1 <=γ(XZ)<= 4(长度/高度)之间变化,并且通过规定空气射流的流入速度来实现ARCHIMEDES数的变化,该空气射流通过叠加在热诱导的流动上入口和出口通道。 RAYLEIGH数在RA = 2.0 x 10(8)处保持恒定。采用纯热对流采用的模型,用于从沿着对流样品的侧壁测量的周向温度分布中提取对流辊的数量。对于固定的ArchImedes数(AR近似为4),热诱导的大规模循环(LSCTC)的数量随着样品的纵横比而增加。具体地,从伽马= 2开始,找到与统一斜率的线性依赖性。 Archimedes数量的减少导致从单个ISCTC结构转变为γ= 1和γ= 2的FC主导的LSC(LSCFC),而发现用于γ= 3和γ= 4的多辊结构更稳定即使是较高的流入速度。

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