Physics-based Finite Element Methods models can be used to investigate the electrical conditions in submerged arc furnaces (SAFs). However, their explicit solution may be very demanding in terms of time and computational resources. This makes these models difficult to employ during control operations and in fast prototyping. To obviate these inconveniences, we developed metamodels that are grounded on the physics-based model. In this context, a metamodel is a surrogate of an original model obtained using statistical analysis tools to determine approximate input–output relationships in a database of simulations from the original model. The metamodels for the SAF electrical conditions are shown to retain the same generalization capabilities a...
This study imparts a scientific perception of a phosphorous-producing submerged arc furnace never se...
Silicon is produced in submerged arc furnaces which are heated by electric currents passing through ...
Controlling and optimizing smelting processes in submerged-arc furnaces are complicated by the limit...
Physics-based Finite Element Methods models can be used to investigate the electrical conditions in ...
Finite element models were generated of two submerged arc furnaces of different geometries. A 48MW c...
This thesis investigates the modelling and optimization of electro-thermal variable parameters appl...
Modelling the production of silicon in a submerged arc furnace (SAF) requires accounting for the wid...
Purpose of the paper is to study the behaviour of a submerged arc furnace for the production of ferr...
Silicon is produced in submerged arc furnaces (SAFs), with the heat needed for the endothermic chemi...
This paper presents computations of the electric field inside a furnace. We first look at the effect...
Most submerged arc furnaces used for the production of ferroalloys run on three-phase alternating cu...
Electric arc furnaces (EAF) are complex industrial plants whose actual behavior depends upon numerou...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 2...
This work presents computations of electric current distributions inside an industrial submerged arc...
The production of silicon in electric smelting furnaces is a complex and energy-intensive process. ...
This study imparts a scientific perception of a phosphorous-producing submerged arc furnace never se...
Silicon is produced in submerged arc furnaces which are heated by electric currents passing through ...
Controlling and optimizing smelting processes in submerged-arc furnaces are complicated by the limit...
Physics-based Finite Element Methods models can be used to investigate the electrical conditions in ...
Finite element models were generated of two submerged arc furnaces of different geometries. A 48MW c...
This thesis investigates the modelling and optimization of electro-thermal variable parameters appl...
Modelling the production of silicon in a submerged arc furnace (SAF) requires accounting for the wid...
Purpose of the paper is to study the behaviour of a submerged arc furnace for the production of ferr...
Silicon is produced in submerged arc furnaces (SAFs), with the heat needed for the endothermic chemi...
This paper presents computations of the electric field inside a furnace. We first look at the effect...
Most submerged arc furnaces used for the production of ferroalloys run on three-phase alternating cu...
Electric arc furnaces (EAF) are complex industrial plants whose actual behavior depends upon numerou...
Thesis (Ph.D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 2...
This work presents computations of electric current distributions inside an industrial submerged arc...
The production of silicon in electric smelting furnaces is a complex and energy-intensive process. ...
This study imparts a scientific perception of a phosphorous-producing submerged arc furnace never se...
Silicon is produced in submerged arc furnaces which are heated by electric currents passing through ...
Controlling and optimizing smelting processes in submerged-arc furnaces are complicated by the limit...