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Experimental investigation of natural convection flow in a laterally heated vertical cylindrical enclosure

机译:横向加热垂直圆柱形外壳中自然对流流动的实验研究

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Vertical cylindrical enclosures are used in the crystal growth industry as crystal growth reactors. Gallium nitride crystals are grown in ammonothermal growth reactors that requires temperatures in the range of 600-1000 K (620-1340 degrees F) and pressures in the range of 1000-6000 bar (14,504-87,022 psi). The process conditions make any experimental measurements difficult, in particular, flow pattern visualization and velocity measurements. A geometrically similar transparent reactor and similar fluid dynamic conditions for crystal growth were used in the process of experimental observation and measurement of the flow. Boundary and fluid temperatures along with velocity vectors were recorded. The flow proved to be oscillating in nature with steady and uniform time-averaged patterns. Fluid temperatures showed a higher standard deviation in the mixing region suggesting that the fluctuations are stronger at this location. Flow patterns and fluid temperatures indicated that the heat transfer between the two sections is driven by conduction and advection. (C) 2019 Elsevier Ltd. All rights reserved.
机译:垂直圆柱形外壳用于晶体生长产业作为晶体生长反应器。氮化镓晶体在氨水生长反应器中生长,其需要温度为600-1000 k(620-1340°F)和1000-6000巴(14,504-87,022psi)的压力。过程条件使得任何实验测量难度,特别是流动模式可视化和速度测量。在实验观察和测量流动的过程中使用了几何相似的透明反应器和类似的晶体生长的流体动力学条件。记录边界和流体温度以及速度向量。通过稳定均匀的时平均模式,该流程证明是振荡的自然。液体温度显示在混合区域中的标准偏差较高,表明在该位置处波动较强。流动模式和流体温度表明,两部分之间的热传递由传导和平流驱动。 (c)2019 Elsevier Ltd.保留所有权利。

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