Boiler Units of Thermal Power Plants, part 2

Major: Thermal Power Engineering
Code of subject: 6.144.01.E.047
Credits: 4.00
Department: Heat Engineering and Thermal and Nuclear Power Plants
Lecturer: associate professor, Ph.D. Kuznetsova Marta Yaroslavivna
Semester: 6 семестр
Mode of study: денна
Мета вивчення дисципліни: Training of specialists for production-technological, organizational-management, design and research activities in the field of heat energy on topics related to boiler installations of heat energy facilities.
Завдання: general competences: - the ability to apply knowledge in practice; - the ability to search and analyze information from various sources; - the ability to solve tasks and make appropriate decisions; - the potential for further education. professional competences: - basic knowledge of the main regulatory and legal acts and reference materials, current standards and technical conditions, instructions and other regulatory documents in the field of heat energy; - basic knowledge of technical characteristics, design features, purpose and rules of operation of thermal power equipment; - knowledge of modern technological processes and systems of technological preparation of production; - the ability to apply professional knowledge and practical skills to solve typical problems of the specialty, as well as the operation of systems and equipment of thermal power plants; - the ability to use knowledge and skills for calculation, research, selection, implementation, repair, and design of systems and components of thermal power plants.
Learning outcomes: • Know: - functions of boilers; - options, technological scheme and design of industrial of boilers; - processes in fuel boilers in general; - technological schemes and equipment of fuel preparation for burning. • Be able to: - determine the destination and construction features assemblies of of boilers and fuel preparation; - to calculate the heating surfaces of boilers.
Required prior and related subjects: prerequisites: • Higher Mathematics • Physics • Сhemistry • Engineering Thermodynamics • Heat-mass Exchange co-requisites: • Heat-mass Exchange Machines of Industrial Enterprises • Heat Engines of Industrial Enterprises
Summary of the subject: The parameters, technological schemes and designs of boiler installations of thermal power facilities are considered. Processes occurring in furnaces and boiler plants in general are described. Technological schemes and equipment of fuel preparation systems for combustion are presented, as well as methods of burning fuels in furnaces of industrial boiler plants, methods of adjusting parameters of working bodies and modes of operation of boiler plants under load, methods of calculation and research of boiler plants in general are considered.
Опис: 1.1. Combustion of gaseous fuel. Classification of furnaces and burners for gaseous fuel. Combustion of gas together with other types of fuel. Operation of gas furnaces. Peculiarities of calculation of gas burners and furnaces. 1.2. Combustion of liquid fuel. Schemes of spraying liquid fuel. Fuel injectors. Combined gas and oil burners. Furnaces for burning liquid fuel and gas-oil pre-furnaces. 1.3. Combustion of solid fuel in a layer. Classification of layer furnaces. Characteristics of the solid fuel combustion process in a dense layer. Furnaces for burning solid fuel in a dense layer. Boiler furnaces with a fluidized bed. The choice of layer furnaces and the basis of their calculation. 1.4. Sawdust preparation. Features of burning solid fuel in a dusty state. Basic schemes of dust preparation. Fuel drying. Fuel grinding. Selection of dust preparation system and mills. 1.5. Combustion of coal dust in furnaces of boilers. Features of burning coal dust. Pulverized coal burners and their location on the walls of the combustion chamber. Furnaces for burning coal dust with solid and liquid slag removal. Cyclones and vortex furnaces. Reduction of the content of nitrogen oxides and sulfur in combustion products. Selection and calculation characteristics of furnaces for burning coal dust. 1.6. Heat exchange in boiler elements. Heat exchange in the furnace. Heat exchange in convective heating surfaces. Intensification of radiative and convective heat exchange. 1.7. Boiler hydrodynamics. Conditions for reliable operation of boiler elements. Mode, structure and characteristics of the flow of the working fluid. Characteristics of evaporative systems. Hydrodynamics of boilers with natural circulation, direct-flow boilers, boilers with multiple forced circulation, water-heating boilers, economizer, superheater. 1.8. Aerodynamics of the gas-air tract. Systems of the gas-air tract. Aerodynamic supports. Chimney aerodynamics. Choice of fan and smoke exhaust. 1.9. Water mode and steam quality of boilers. Scale formation and feed water requirements. Feed water preparation systems. Water mode and boiler blowing. Separation and steam washing. 1.10. Thermal scheme of the boiler. Characteristics of the thermal circuit. Temperature of combustion products at the fuel outlet. Heat absorption in the evaporation system, economizer and superheater. Exhaust gas temperature. Examples of thermal scheme of boilers. Thermal schemes of the boiler room. 1.11. Characteristics and designs of boilers. Boilers with low pressure natural circulation. Energy boilers with natural circulation of medium pressure. Direct current boilers. Layout of boilers.
Assessment methods and criteria: Assessment of knowledge is provided by current and examination controls. Current control: – preparation and implementation of practical classes; - preparation, execution and protection of laboratory works. Examination control is carried out during the examination session in written and oral form. Current monitoring of practical and laboratory classes is carried out in order to identify the student's readiness for classes in the following forms: • a selective oral survey before the start of classes; • frontal verification of the performance of preliminary laboratory work; • evaluation of the student's activity in the course of classes, submitted proposals, original solutions, clarifications and definitions, additions to previous answers, etc.
Критерії оцінювання результатів навчання: - current control (20 points): oral survey; written reports on laboratory work; - final control (80 points): the examination test is valued at 70 points, the oral component - 10 points.
Порядок та критерії виставляння балів та оцінок: Points for current and exam control are assigned as a percentage of the maximum grade for the educational material of the component based on the following criteria for evaluating the student's knowledge and skills: 100–88% – awarded for a high level of knowledge; 87–80% – awarded for knowledge of the educational material of the component above the average level, including calculations, reasoned answers to the questions asked (a small amount of inaccuracies is possible); 79–71% – a generally correct understanding of the educational material of the component is presented, including calculations, reasoned answers to the questions, which, however, contain certain (insignificant) shortcomings; 70–61% – awarded for mediocre knowledge of the educational material of the component; 60–50% – awarded for weak knowledge of the educational material of the component; 49–26% – presented for ignorance of a significant part of the educational material of the component; 25–00% – awarded for not knowing a significant part of the educational material of the component. Current and control testing is carried out in the National Security Service and the grade is automatically assigned for all test tasks. The exam is conducted in written and oral form (the exam test is valued at 70 points, the oral component - 10 points). The oral examination involves a sample question from different sections of the course and the completion of simple tasks.
Recommended books: 1. Stepanov D.V., Korzhenko Ye.S., Bodnar L.A. Kotelni ustanovky promyslovykh pidpryiemstv: Navchalnyi posibnyk. – Vinnytsia : Vntu, 2011. – 120 s. 2. Yanko P.I. Rezhimi ekspluatatsiyi energetichnih kotliv / P.I. Yanko, Y.S. Misak. - Lviv: NVF «Ukrayinski tehnologiyi», 2004. – 270 p. 3. Konovalov S.V. Ekspluatatsiya kotliv / S.V. Konovalov. – Vinnitsya: PP «Balyuk», 2007. – 216 p.
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