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Numerical investigation of natural circulation in a 2D-annular closed-loop thermosyphon

机译:二维环形闭环热虹吸管自然循环的数值研究

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This work aims to investigate the natural convection in a water-filled closed-loop. A numerical study of laminar, two-dimensional natural convection in an annular thermosyphon is reported, the loop being heated at a constant flux over the bottom half and cooled at a constant temperature over the top half. The annular thermosyphon configuration which is the subject of this study has never been investigated previously. It is numerically demonstrated that the complexity of the dynamic properties encountered in the experimental studies of toroidal or rectangular loops, is found here: steady flow with and without recirculating regions, periodic motion and Lorenz-like chaotic flow. The numerical work also aims to simulate the variation of mass flow rate and heat transfer behaviors where the driving parameters and correlations which are non-loop specific are also given.
机译:这项工作旨在研究充水闭环中的自然对流。对环形热虹吸管中层流二维自然对流进行了数值研究,报道了该回路在下半部以恒定的通量加热,在上半部以恒定的温度冷却。环形热虹吸管结构是本研究的主题,以前从未进行过研究。数值表明,在环形或矩形环的实验研究中遇到的动力学特性的复杂性在这里找到:带有和不带有再循环区域的稳定流动,周期性运动和类似Lorenz的混沌流动。数值工作还旨在模拟质量流量和传热行为的变化,其中还给出了非循环特定的驱动参数和相关性。

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