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A mathematical model of scandium ore deposit formation in liquating magmatic melts

机译:液体岩浆熔体钪矿床形成的数学模型

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Solidification of liquating silicate magmatic melts may lead to formation of rare earth mineral deposits. By the example of quasi-binary system SiO2-Sc2O3, the processes of cooling and directional solidification of the melt in an intrusive chamber have been studied, and velocities of the phase fronts and the width of the phase separation field have been calculated. Using the fluctuation approach, the physical and mathematical model of the formation and growth of dispersed phase in the continuous cooling of liquating melt was developed, and the conditions of incorporating the dispersed inclusions by solidified matrix phase were determined. The proposed model allows obtaining quantitative estimates of the size and number of inclusions per unit of hardened rock, depending on the solidification conditions and the initial chemical composition of the melt.
机译:液态硅酸盐岩浆熔体的凝固可能导致稀土矿物沉积物的形成。 通过准二元系统SiO2-SC2O3的示例,已经研究了侵入式室中的熔体的冷却和定向凝固过程,并且已经计算了相位前沿的速度和相分离场的宽度。 利用波动方法,开发了液态熔体连续冷却中分散相的形成和生长的物理和数学模型,并测定通过固化基质相结合分散的夹杂物的条件。 所提出的模型允许从熔化条件和熔体的初始化学成分中获得每单位硬化岩石的尺寸和夹杂物的尺寸和数量的定量估计。

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