The effect of crystal rotation direction on the thermal and velocity fields of a Czochralski system with a low Prandtl number melt
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference14 articles.
1. Growth of silicon crystal with a diameter of 400mm and weight of 400kg
2. Analysis of turbulent flow in silicon melts by optical temperature measurement
3. Instabilities, transition and turbulence in the Czochralski crystal melt
4. An experimental model of the flow in Czochralski growth
5. The temperature field of a model Czochralski melt
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1. Multiple instabilities of thermocapillary flow in a cylindrical pool with a rotating disk on the free surface;Physical Review E;2022-05-03
2. The effect of rotation on the thermal-solutal capillary-buoyancy flow in a shallow annular pool with various capillary ratios;International Journal of Heat and Mass Transfer;2020-05
3. Effects of crystal-crucible iso-rotation and a balanced/unbalanced cusp magnetic field on the heat, flow, and oxygen transport in a Czochralski silicon melt;Journal of Crystal Growth;2020-02
4. Thermofluid Characteristics of Czochralski Melt Convection Using 3D URANS Computations;Journal of Thermal Science and Engineering Applications;2019-05-22
5. Numerical simulation of heat and mass transfer during Czochralski silicon crystal growth under the application of crystal-crucible counter- and iso-rotations;Journal of Crystal Growth;2019-02
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