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Experimental study of low-frequency oscillations and large-scale circulations in turbulent mixed convection

机译:湍流混合对流中低频振荡和大尺度环流的实验研究

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The formation and dynamics of large-scale circulations in forced and mixed convection has been studied at ambient and elevated fluid pressure by means of particle image velocimetry and temperature measurements. The study has been conducted in two rectangular containers of the same shape and aspect ratios of Γ_(xz) = 1 and Γ_(yz) = 5. For the measurements at high fluid pressure the dimensions of the cell have been scaled down by a factor of 5. Air with Pr = 0.7 has been used as fluid in both configurations. Forced convection has been investigated at Re= 1.01 × 10~4 and mixed convection has been studied at Ar = 3.3, Re = 1.01 × 10~4 and Ra = 2.4 × 10~8. In this configuration low-frequency oscillations in the heat transfer between the inlet and outlet have been found for mixed convection. Instantaneous velocity vector fields obtained from particle image velocimetry have been analysed using proper orthogonal decomposition and an algorithm to detect the core and the core centre position of large-scale circulations.
机译:通过颗粒图像测速和温度测量,研究了在环境和升高的流体压力下强迫和混合对流中大尺度环流的形成和动力学。该研究是在两个相同形状和长宽比Γ_(xz)= 1和Γ_(yz)= 5的矩形容器中进行的。对于在高流体压力下的测量,样品池的尺寸已按比例缩小/5。两种配置中都使用Pr = 0.7的空气作为流体。研究了在Re = 1.01×10〜4时的强制对流,在Ar = 3.3,Re = 1.01×10〜4且Ra = 2.4×10〜8时研究了混合对流。在这种构造中,已经发现入口和出口之间的热传递中的低频振荡是混合对流的。使用适当的正交分解和检测大规模循环的核心和核心中心位置的算法,分析了从粒子图像测速获得的瞬时速度矢量场。

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