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In this study natural convection and PCM volume variation during melting process are considered in the simulations.
As a result of the present work, an appropriate electrode configuration and operating conditions for waste melting process are presented for the optimization of transferred plasma torches.
Based on the Scheil equation, mathematical models of the solid fraction versus temperature for the off-eutectic alloy during melting process are presented for the cases with and without consideration of solid diffusion.
Kinetic effects associated with the melting process are also discussed.
The main characteristic scales and non-dimensional parameters which describe the principal features of the melting process are found.
Influences of the heater temperature, the ingot size, the furnace cooling and the crucible design on the melting process are investigated carefully.
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The duration of the melting process is defined based on the level of melting completion.
A simulation method for the heat-mass coupled snow melting process is described.
Comparisons of target temperature profiles between Fourier and non-Fourier heat conduction in melting process were implemented.
Using FEM simulations, the melting process was simulated and the final melting times were found to be almost identical to the analytical results.
The metal melting process is described here, and slag types regarding the melted metal type and the cooling method are discussed as well.
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