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Modeling of industrial bulk crystal growth-state of the art and challenges

机译:工业体晶体生长的建模技术现状与挑战

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Numerical modeling has become an indispensable and acknowledged tool for developing and optimizing crystal growth processes and equipment. Although the state of the art allows efficient use of simulation in both academic and industrial crystal growth, modeling of crystal growth is on its way to its own next generation with extended application fields, more powerful hardware, and increasingly sophisticated numerical methods, especially from the field of soft-computing. One very promising approach is the combination of genetic algorithms with conventional thermal modeling. The great benefit of numerical modeling is demonstrated by some current examples from different fields of bulk crystal growth, treated either by classical global modeling or by additional use of genetic algorithms. (c) 2004 Elsevier B.V. All rights reserved.
机译:数值建模已成为开发和优化晶体生长工艺和设备的必不可少的工具。尽管现有技术允许在学术和工业晶体生长中有效地使用模拟,但是晶体生长的建模正通过扩展的应用领域,更强大的硬件和越来越复杂的数值方法(尤其是从晶体学到模型学)发展到下一代。软计算领域。一种非常有前途的方法是将遗传算法与常规热建模相结合。数值建模的巨大优势已通过一些当前实例得到了证实,这些实例来自于不同的块状晶体生长领域,可以通过经典的全局建模或通过遗传算法的额外使用来处理。 (c)2004 Elsevier B.V.保留所有权利。

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