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Citation
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HERO ID
3026513
Reference Type
Book/Book Chapter
Title
Development of a 100 kW plasma torch for plasma assisted combustion of low heating value fuels
Author(s)
Takali, S; Fabry, F; Rohani, V; Cauneau, F; Fulcheri, L
Year
2014
Book Title
Journal of Physics Conference Series
Volume
550
DOI
10.1088/1742-6596/550/1/012018
Web of Science Id
WOS:000346661100018
Abstract
Most thermal power plants need an auxiliary power source to (i) heat-up the boiler during start up phases before reaching autonomy power and (ii) sustain combustion at low load. This supplementary power is commonly provided with high LHV fossil fuel burners which increases operational expenses and disables the use of anti-pollutant filters. A Promising alternative is under development and consists in high temperature plasma assisted AC electro-burners. In this paper, the development of a new 100 kW three phase plasma torch with graphite electrodes is detailed. This plasma torch is working at atmospheric pressure with air as plasma gas and has three-phase power supply and working at 680 Hz. The nominal air flow rate is 60 Nm(3). h(-1) and the outlet gas temperature is above 2 500 K. At the beginning, graphite electrodes erosion by oxidizing medium was studied and controlling parameters were identified through parametric set of experiments and tuned for optimal electrodes life time. Then, a new 3-phase plasma torch design was modelled and simulated on ANSYS platform. The characteristics of the plasma flow and its interaction with the environing elements of the torch are detailed hereafter.
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