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Overview

Heat power industry is one of the main industries, which includes a set of means and methods, created to control the flow of heat, the conversion of heat into electrical and other types of energy.

 

The tendency of demonopolize energy production, ensure regional energy security, create autonomous and decentralized heat supply systems, and the fuel energy market has created an increasing demand for engineers in the field of heat and power engineering.


Depending on the chosen program, the graduates have advanced fundamental and professional knowledge in the fields of technology for production of electric and thermal energy; prepared for resolving environmental safety issues at nuclear power plants and related issues; capable to develop projects and programs related to testing new and non-standard heat and mass transfer equipment and operate it; to carry out standardization of technical means, systems, technological processes, equipment, and materials.

 

During the training, the student will use advanced university facilities, such as laboratories with modern hard- and software for computer simulation of technological processes and design of thermal and nuclear power plants, heat and mass transfer, thermophysical properties of substances, technical thermodynamics, heat transfer, heat supply, steam and gas turbines, fuel and water analytical, experimental stands X-ray structural and heat engineering expertise, etc.

 

Degree title                           

Master of Science in Clean Technologies for Energy Carriers Conversion

Duration2 academic years
LanguageRussian
Application deadline10.08 (fall semester)
Contact for application issues

International Admission Office (preferably)

E-mail: omrs@tpu.ru

Tel: +7 (3822) 60-64-76

Online Application



Program contacts:

The Butakov Research Center


Learning output

The program graduates will be able to:

  • develop projects and programs, carry out activities related to the testing of new and non-standard heat and mass transfer equipment and operate it, and standardize hardware, systems, processes, equipment, and materials
  • carry out research projects, forecasting, information support, organization of production, labor, and management
  • carry out scientific and feasibility analysis, comprehensively justifies decisions made and implemented
  • develop methodological and regulatory materials, proposals and measures for implementation of projects and programs
  • organize work to increase the scientific and technical knowledge of employees
  • develop and ensure the implementation of energy-saving and environmental measures



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