Department of Aircraft Engines Theory

Major subject: Gas Turbine Power Plants and Compressor Stations

Brief annotation of the major subject:

Preparation of bachelors, engineers and masters on “Power engineering” educational line on the major subject “Gas turbine power plants and compressor stations” for work on appropriate positions at Design Bureaus, Research institutions at the enterprises which produce and maintain gas turbine machines intended for ground and transport power plants.

Students obtain knowledge abilities, skills on fundamental and applied natural sciences, domain of vocational and practical disciplines as well as humanistic knowledge.


BACHELOR'S degree


4 year of training


Natural science disciplines

Higher mathematics
Physics
Chemistry
Fundamentals of information technologies and programming
Drawing geometry, engineering and computer graphics
Fundamentals of ecology
Heat-mass exchange
Fundamentals of power engineering

Disciplines for vocational and practical training

Fundamentals of labor protection
Resistance of materials
Material knowledge and technology of materials
Mathematical methods and models of power engineering equipment
Fundamentals of designing
Methodology and standardization
Electric engineering and electronics
Heat engineering measurements and devices
Life activity safety
Theory and design of blade machines
Theory of gas turbine engines
Designing of turbines and compressors
Theory of gas turbine plants
Design and strength of gas turbine engines and plants
Automation, regulation and assembly units of gas turbine plants
Technology of gas turbine construction
Theory and basis of operation of gas turbine plants
Structure of gas turbine plants and compressor stations

SPECIALIST'S degree


1 year training


Disciplines for natural science, vocational and practical training


Computer systems of gas turbine designing
Combine vapor-gas devices
Dynamics, reliability and diagnostics of gas turbine plants designing
Technology of gas turbine plants assembling and mounting
Ecological aspects of gas turbine plants designing
Turbo-expander and equipment for compressor stations
Computer processing of terms results
Operation of gas turbine plants and gas transport networks


MASTER'S degree


1,5 years training
(based on a successfully completed Bachelor's Degree)


Disciplines for natural science, vocational and practical training

Gas dynamic instability of turbo compressors
Thermal dynamical analysis of vapor gas cycles
Up-dated methods for blade machines design
Computer systems for gas turbine engine designing
Dynamics of gas turbine engines
Experimental methods of investigations
Ecological aspects of gas turbine plants designing
Organization and methodology of research activity
Pedagogic and psychology at higher school

PhD degree


3 years of training


Major subject


Aircraft engines and power plants


Lead instructors:


Boiko Liudmila Georguiyevna - Professor, D. Sc.

Mail published works:

  1. Бойко Л.Г., Муравченко Ф.М., Ковалев М.А., Демин А.Е. Методы расчета двумерного течения при проектировании и доводке осевых компрессоров //Авиационно-космическая техника и технология: Тр. Харьк. авиац. ин-та им. Н.Е. Жуковского за 1997 г. – Харьков, 1998 г. – С. 120–124.
  2. Methods of calculation of two dimension flow under designing and axial compressors.

  3. Газотурбінні двигуни літальних апаратів: Підручник /Ю.М. Терещенко, Л.Г. Бойко, О.В. Мамлюк; За ред. Ю.М. Терещенка. – К.: Вища школа, 2000. – 319 с.
  4. Aircraft gas turbine engines.

     

  5. Теорія теплових двигунів: Підручник / Ю.М. Терещенко, Л.Г. Бойко, С.О. Дмитрієв та ін.; За ред. Ю.М. Терещенка. – К.: Вища школа, 2001. – 382 с.

Theory or heat engines.

 

Gerasimenko Vladimir Petrovich - Professor, D. Sc.

Mail published works:

  1. К повышению устойчивости газовых систем с компрессором /В.П. Герасименко //Авиационно-космическая техника и технология. – Харьков, 2001. – Вып. 23. – С. 45.
  2. With regard to increase of stability of gas systems with a compressor.

  3. О коэффициенте мощности многоярусного рабочего колеса центробежного компрессора / В.П. Герасименко, Н.К. Рязанцев, Ю.А. Анимов, В.В. Белоус //Авиационно-космическая техника и технология. – Харьков, 2001. – Вып. 26. – С. 75–78.
  4. About the power coefficient of multitier impeller of centrifugal compressor.

  5. Расчет характеристик ступеней компрессора на режимах вращающегося срыва / В.П. Герасименко, Т.М. Нурмухаметов, Е.В. Осипов, М.Ю. Шелковский //Авиационно-космическая техника и технология. – Харьков, 2002. – Вып. 34. – С. 26–28.

Calculation of characteristics of compressor stages on modes of rotating stall.