
yerzada_m@enu.kz
Physics of plasma and high-voltage discharges, thermal power engineering, instability of combustion of rocket fuels, occurrence of turbulent flame and detonation
Master (scientific-pedagogical):
2019:- - Levels and methods of research (LMR 6211)
- - Experiment Planning and Statistical Processing (EPSP 5203)
- - Renewable energy sources
- - Patenting and scientific research (PSR 5210)
- - Protection against emergency modes (PAEM 5302)
- - Optimization of elektrical system modes
- - Autonomous systems of power supply
- - Electric networks with distributed generation
- - RES in the electric power industry
- - Features of protection of electric power networks
- - Energy saving in the power supply system
Bachelor:
2014:- - Ecology of Engineering (IE 4305)
- - Fundamentals of design and computer aided design systems in power engineering (FDCADS 2224)
- - Fundamentals of design and computer aided design systems in heat energy (OKSAPRTE 4330)
- - CAD and Design Basics Equipment of thermal power plants and nuclear power plants (CADDB 2221)
- - Electric suplly of buildings (ESB 3219)
- - CAD and the basics of designing industrial enterprises (CADBD 2222)
- - Design of thermal power units (PTU 4330)
- - Non-traditional and renewable energy sources (NRES 2225)
- - Material science, technology of structural materials in the heat supply system (MSTSM 2215)
- - Theory of autocontrol (TA 4313)
- - Automated control systems of thermal power processes (ACSTPP 4311)
- - Computer technologies in thermal power engineering (CTTPE 4312)
- - Environmental guard with using of thermal power units (OOSETO 4317)
- - General Electronics and Electrical Engineering (GEEE 3222)
- - Fundamentals of electrical engineering and electronics (FEEE 2219)
- - Computer realization of hydraulic calculations of thermal networks (CRHCTN 4314)
- - Modeling and optimization of technological processes (MOTP 3211)
- - Electrical engineering and basic electronics (EEFE 2205)
- - Theoretical Foundations of Electrical Engineering (TFEE 2220)
- - Materials Science and Mechanics (MSM 2209)
- - Environmental protection in operation of heat power equipment (EPOPE 4201)
- - Nuclear power equipment (NPE 3210)
- - Using of the secondary energy sources (USES 3211)
- - Environmental technologies (ET 4202)
- - CAD and the basics of designing industrial enterprises (CBDIE 3315)
- - Labor protection, chemical control of coolants (LPCHCC 4316)
- - Electrical engineering and basic electronics (EEBE 2210)
- - Modeling, algorithmization and optimization of elements and systems in thermal power engineering (MAOESHPE 3210)
- - CAD and Design Basics Equipment of thermal power plants and nuclear power plants (CDBETPPNPP 3314)
- - CAD and the basics of designing industrial enterprises (CBDIE 3303)
- - Modeling, algorithmization and optimization of technological processes (MAOTP 3302)
- - Modeling, algorithmization and optimization of elements and systems in heat power engineering (MAOESHPE 3303)
- - Computer technology in heat engineering calculations (CTHEC 3211)
- - Computer modeling in power engineering (CMPE 2213)
- - Mathematical problems and computer modeling in power industry (MPCMPI 2212)
- - High voltage engineering (HVE 2217)
- - Industrial electronics (IE 3221)
- - The quality of electric power (GEP 3304)
- - Electric machine (EM 2211)
- - Electrical materials science (EMS 2216)
- - Electrical engineering, electronics, heat engineering measurements and control (EEEHEMC 2207)
- - Theoretical fundamentals of electrical engineering (TFEE 2207)
- - Power converters (PC 3308)
- - Electrical engineering and electronics (EE 2214)
- - Automatic control theoryend electronics (ACTE 2206)
- - Transients in the power industry (TPSS 3226)
- - Electrical measurements and control (EMC 2205)
- - Auxiliary equipment of thermal power plants (AETPP 3216)
- - Electrical engineering and fundamentals of industrial electronics
- - Electrical and Structural Materials Science
- - Automatic control theory
- - Power electronics
1. Toward the Methods of Designing a Combined System “Stirling Engine–Electric Generator–Load (Consumer)”.
Journal of Engineering Physics and Thermophysics. 2025
2. SIMULATION OF CONDITIONS FOR ACHIEVING HIGH ELECTRICAL POWER AND EFFICIENCY IN A STIRLING ENGINE WITH A FREE WORKING PISTON.
Eurasian Physical Technical Journal. 2024
3. Modeling of Cooling Tower Operation with Consideration for the Chemical Work in the Steam–Air Mixture.
Journal of Engineering Physics and Thermophysics. 2023
4. Contribution to the Search for the Optimum Conditions for Reducing Water Loss in the Cooling Tower.
Journal of Engineering Physics and Thermophysics. 2023
5. A Simple Theory of Multicomponent Diffusion and Simulation of the Combustion of a Stoichiometric H2/O2 Mixture.
Technical Physics. 2022
6. Free Convective Motion of Air in a Heated Space.
Journal of Engineering Physics and Thermophysics. 2020
7. Features of optimization problem for selecting materials to minimize heat loss through the wall.
Bulletin of the Tomsk Polytechnic University Geo Assets Engineering. 2020
8. The Possibility of Converting Energy in Space with the Aid of a Chain Heat Machine Operating on Methane and Nitrogen.
Journal of Engineering Physics and Thermophysics. 2019
9. Simulation of Combustion of Solid High-Energy Materials with Account for Erosive Effects.
Combustion Explosion and Shock Waves. 2019
10. Anomalous Effect of Turbulence on the Combustion Rate of a High-Energy Solid Material.
Russian Journal of Physical Chemistry B. 2018
11. Analytical Study of Hydrodynamic Instability in the Flame: 2. Account of the Viscosity of the Gas in the Cold and Hot Areas.
Russian Journal of Physical Chemistry B. 2018
12. Simulation of the Slow Combustion-to-Detonation Transition in a Hydrogen–Oxygen–Inhibitor (C2Br2F4) Mixture.
Journal of Engineering Physics and Thermophysics. 2017
13. Determination of the transfer coefficients of natural turbulence occurring near the solid-propellant gasification zone. II. hydrodynamic instability in the presence of cross-flow.
Combustion Explosion and Shock Waves. 2017
14. Determination of the transfer coefficient of natural turbulence occurring near the solid-propellant gasification zone. I. Two-phase model of the gasification zone.
Combustion Explosion and Shock Waves. 2017
15. Negative erosion effect and the emergence of unstable combustion. 2. numerical simulation.
Combustion Explosion and Shock Waves. 2016
16. Negative erosion effect and the emergence of unstable combustion. 1. Analysis of the models.
Combustion Explosion and Shock Waves. 2016
17. Limits of steady burning propellants in the phenomenological theory using effective initial temperature.
Journal of Thermal Science and Technology. 2015
18. Thermal regime in a building in the presence of mixing of heat carriers from delivery and return pipelines.
Journal of Engineering Physics and Thermophysics. 2014
19. Optimum control of heat supply of a building. 2. Analysis and results.
Journal of Engineering Physics and Thermophysics. 2014
20. Optimum control of heat supply of a building. 1. Formulation of the problem and basic formulas.
Journal of Engineering Physics and Thermophysics. 2014
21. Analytical calculation of the negative erosive burning rate.
Combustion Explosion and Shock Waves. 2013
