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Two-dimensional modelling of a DC arc plasma furnace with opposite cathode and anode - MaRDI portal

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Two-dimensional modelling of a DC arc plasma furnace with opposite cathode and anode (Q959557)

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scientific article; zbMATH DE number 5383237
Language Label Description Also known as
English
Two-dimensional modelling of a DC arc plasma furnace with opposite cathode and anode
scientific article; zbMATH DE number 5383237

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    Two-dimensional modelling of a DC arc plasma furnace with opposite cathode and anode (English)
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    18 December 2008
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    Summary: A two-dimensional modelling is conducted concerning the effects of the arc current and the cathode-anode distance on the heat transfer and flow patterns inside a DC arc plasma furnace with opposite cathode and anode and with opposite working-gas injection. The modelling results show that a stagnation layer with zero axial velocity is formed between the cathode and anode when an appropriate parameter combination is employed. The position of the stagnation layer moves toward the anode side with increasing arc current. And the gas temperature at the stagnation point increases with increasing arc current or decreasing cathode-anode distance.
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    two-dimensional modelling
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    2D modelling
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    DC arc
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    plasma furnaces
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    heat transfer
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    arc current
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    cathode-anode distance
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    flow patterns
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