Course detail
Electric Arc Application
FEKT-LAELAcad. year: 2018/2019
Basic orientation in problems of technical application of plasma, survey of essential diagnostic methods and apparatuses for estimation of plasma parameters. Information on technical means with switching electric arc, on plasma generators and their operation, on plasma modification of materials and their properties with special respect to environmental friendly technologies.
Language of instruction
Number of ECTS credits
Mode of study
Guarantor
Learning outcomes of the course unit
Graduate from this subject is able to:
- define plasma, lowtemperature plasma and enumerate the basic plasma properties,
- orient in problems of plasma technology.
- describe the man parts of arc heater - device generated thermal plasma.
Prerequisites
Co-requisites
Planned learning activities and teaching methods
Teaching methods include lectures, numerical exercises. Course is taking advantage of e-learning (Moodle) system.
There are continuous tests in the numerical exercises.
Assesment methods and criteria linked to learning outcomes
Course curriculum
2. Thermodynamic properties of thermal plasma.
3. Transport properties of thermal plasma.
4. Electrical arc, V-A characteristic of arc, mathematical description of V-A characteristic.
5. Electrical arc in switching, arc quenching, heavy current, interactive and dielectric interval.
6. Arc heaters - description, types of arc heaters, stabilization of electric arc, theory and construction of arc heaters.
7. Basis of mathematical and physical modelling of electric arc, simplified model of electric arc.
8. Basis of diagnostc of plasma. Indirect method of determination of intermediate temperature and speed of plasmajet in the arc heater exit.
9. Mathematical and physical description of plasma processes, design of the arc heater.
10. Fitting of the arc heater, cooling system, gas system, measurements in working order.
11. Plasma applications.
Work placements
Aims
Specification of controlled education, way of implementation and compensation for absences
Recommended optional programme components
Prerequisites and corequisites
Basic literature
Recommended reading
Classification of course in study plans
Type of course unit
Lecture
Teacher / Lecturer
Syllabus
Thermodynamics of high temperature processes.
Essentials of plasma diagnostics.
Properties of electric arc, voltage-current characteristics of free electric arc and of stabilised one, mathematical description of voltage-current characteristics, interaction between electric arc and magnetic field.
Switching electric arc, hv and vhv devices, extinguishing process, heavy current, interaction, and dielectric intervals.
Elements of mathematical-physical modelling of quenching process.
Plasma torches, methods of stabilisation of arc, theory and design of torches.
Mathematical and physical description of processes in plasmatrons, the design of plasma generator.
Supporting technological circuits of plasmatrons, water cooling system, gas handling, operational measurements.
Plasma technology of surface modification of products, of transformation of material properties, and of production of new materials with special properties.
Thermal plasma technology of decomposition of very stable ecologically harmful wastes.
Ecological application of electric discharge for destruction of undesirable materials, for water purification, etc.
Further perspective of industrial application of electric arc and thermal plasma.
Fundamentals seminar
Teacher / Lecturer
Syllabus
Basic relations for transport of mass, momentum, and energy, momentum conservation equation, flowing and turbulence.
Determination of plasma parameters, optical, spectral, and probe diagnostic methods.
Evaluation of enegy balance of plasmatron.
Energy balance of high temperature thermocouple.
Application of spectral methods, Abel´s transformation.
Magnetic field of coil systems in dynamic regime.
Laboratory exercise
Teacher / Lecturer
Syllabus
Temperature profile measurement by thermocouple.
Measurement of energy balance of plasma generator, determination of mean plasma parameters.
Measurement of voltage-current characteristics of plasmatron.