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On the validity of boundary layer analysis for flow and mass transfer caused by rotation during the solution growth of large, single crystals

机译:边界层分析对于大单晶溶液生长过程中旋转引起的流动和传质的有效性

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摘要

The rate of growth of single crystals from liquid solutions depends on coupled kinetic and transport phenomena. However, when continuum transport is limiting, the maximum crystal growth rate is determined by the rate of solute transport through the liquid phase to the growing crystal. We examine the validity of simple scaling and boundary layer theories to assess the behavior of a model solution crystal growth system, namely the growth of potassium titanyl phosphate (KTP) from high-temperature solutions. The approximation of the transport to a crystal rotating steadily in a supersaturated solution is based on the classical analytical solution for flow driven by a semi-infinite rotating disk and associated mass transfer. Our results indicate that this boundary layer analysis is reasonable as long as the solution container is very large, the geometry of the system is nearly axisymmetric, and the imposed flows are predominantly steady. For many practical systems, these conditions do not hold and such boundary layer analyses are expected to be in considerable error. (c) 2005 Elsevier B.V. All rights reserved.
机译:液态溶液中单晶的生长速率取决于动力学和传输现象。但是,当连续传输受限时,最大的晶体生长速率由溶质通过液相传输到生长的晶体的速率决定。我们检查简单的缩放比例和边界层理论的有效性,以评估模型溶液晶体生长系统的行为,即从高温溶液中生长磷酸钛氧钾(KTP)。在超饱和溶液中稳定旋转的晶体的输运近似基于基于半无限旋转盘驱动的流动和相关质量传递的经典解析解。我们的结果表明,只要溶液容器非常大,系统的几何形状几乎是轴对称的,并且施加的流动主要是稳定的,则这种边界层分析是合理的。对于许多实际系统而言,这些条件不成立,并且此类边界层分析预计将具有相当大的误差。 (c)2005 Elsevier B.V.保留所有权利。

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