AbstractNumerical simulation has emerged as a powerful tool for the development and optimization of technical processes. This is especially true for processes with high demand on quality and high added value to the product. Near-perfect control of the temperature and flow distribution inside the crystallization furnace is essential for high-efficiency solar cells. This work presents computer simulations of a directional crystallization furnace producing 100kg ingots. Temperatures, fluid flow, stresses and deformations are calculated. Comparisons to measurements show that the thermal condition in the furnace during the complete cycle of heating, melting, crystallization and cooling is well reproduced by the mathematical tool
The heat transfer and liquid phase convection during GaInSb crystal growth via the traveling heater ...
This paper presents a three dimensional study of a gas-fired, regenerative, side-port glass melting ...
Models for computer analysis of crystallization process in metallurgical ingots obtained as a result...
AbstractNumerical simulation has emerged as a powerful tool for the development and optimization of ...
The Directional Solidification is a very important technique for growing high quality multicrystalli...
AbstractComputational modeling is an essential tool in modern crystal growth technology and developm...
Ingot-casting method is an important method for producing high efficient solar cells with using mult...
International audienceLarge-scale production of multi-crystalline silicon for high-efficient solar c...
This project addresses the energy efficiency and productivity of solids manufacturing and separation...
The thermal response of fixtured parts in a batch-type brazing furnace can require numerous, time-co...
High temperature processing of raw materials in metals production and recycling often involves compl...
A global, axisymmetric thermal model of a Czochralski furnace is coupled to an external, local, 3D, ...
Ingot-casting method is an important method for producing high efficient solar cells with using mult...
Ingot-casting method is an effective and important method for producing high efficient solar cells w...
Float glass melting furnaces are characterized by their large sizes (60 m in length, 10 m in width, ...
The heat transfer and liquid phase convection during GaInSb crystal growth via the traveling heater ...
This paper presents a three dimensional study of a gas-fired, regenerative, side-port glass melting ...
Models for computer analysis of crystallization process in metallurgical ingots obtained as a result...
AbstractNumerical simulation has emerged as a powerful tool for the development and optimization of ...
The Directional Solidification is a very important technique for growing high quality multicrystalli...
AbstractComputational modeling is an essential tool in modern crystal growth technology and developm...
Ingot-casting method is an important method for producing high efficient solar cells with using mult...
International audienceLarge-scale production of multi-crystalline silicon for high-efficient solar c...
This project addresses the energy efficiency and productivity of solids manufacturing and separation...
The thermal response of fixtured parts in a batch-type brazing furnace can require numerous, time-co...
High temperature processing of raw materials in metals production and recycling often involves compl...
A global, axisymmetric thermal model of a Czochralski furnace is coupled to an external, local, 3D, ...
Ingot-casting method is an important method for producing high efficient solar cells with using mult...
Ingot-casting method is an effective and important method for producing high efficient solar cells w...
Float glass melting furnaces are characterized by their large sizes (60 m in length, 10 m in width, ...
The heat transfer and liquid phase convection during GaInSb crystal growth via the traveling heater ...
This paper presents a three dimensional study of a gas-fired, regenerative, side-port glass melting ...
Models for computer analysis of crystallization process in metallurgical ingots obtained as a result...