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首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Double-diffusive convection during solidification of a metal analog system (NH4Cl-H2O) in a differentially heated cavity
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Double-diffusive convection during solidification of a metal analog system (NH4Cl-H2O) in a differentially heated cavity

机译:金属模拟系统(NH4Cl-H2O)在差热腔中的固化过程中的双扩散对流

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摘要

This experimental study focused mainly on the solidification of a binary mixture of ammonium chloride and water (NH4Cl-H2O) in a differentially heated cavity. One vertical wall was cooled to temperature T-C = -20 degreesC, and the other opposite vertical wall was kept at a constant temperature T-H = +20 degreesC. The effect of the initial concentration of ammonium chloride on the solidification process was considered. Particle image velocimetry was used in this study for the visualization of the dynamic field during the solidification process. The temperature distribution at discrete locations in the solution and on the vertical cooling wall were monitored using thermocouples. The convection flow patterns, the ice thickness, and the temperature distribution were obtained for various initial concentrations of ammonium chloride ranging from 0 to 20 wt.% (sub-eutectic and near-eutectic growth). The results obtained in the course of this study reveal that (1) the initial concentration plays a significant role in the evolution of convection flow patterns, (2) the thickness of the frozen layer depends on position inside the cavity (top, middle, bottom), (3) the ice growth rate was almost double at the bottom of the cavity, and (4) the process of solidification is slower with an increase in the initial concentration levels of the binary solution. (C) 2003 Elsevier Inc. All rights reserved. [References: 22]
机译:这项实验研究主要集中于在差热腔中固化氯化铵和水的二元混合物(NH4Cl-H2O)。将一个垂直壁冷却至温度T-C = -20摄氏度,另一对垂直壁则保持在恒定温度T-H = +20摄氏度。考虑了氯化铵初始浓度对固化过程的影响。在这项研究中,使用了粒子图像测速仪对凝固过程中的动态场进行可视化。使用热电偶监控溶液中离散位置和垂直冷却壁上的温度分布。对于各种初始浓度为0至20 wt。%(亚共晶和近共晶生长)的氯化铵,获得了对流流动模式,冰厚度和温度分布。在研究过程中获得的结果表明,(1)初始浓度在对流流动模式的演变中起着重要作用,(2)冻结层的厚度取决于腔体内的位置(顶部,中间,底部) ),(3)腔底部的冰生长速率几乎翻倍,以及(4)随着二元溶液初始浓度水平的提高,凝固过程变慢。 (C)2003 Elsevier Inc.保留所有权利。 [参考:22]

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