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Study Master in Petroleum Engineering in Russia, choose from many specializations.

1. Химическая технология органических веществ2

Studying Master in Petroleum Engineering in Russia under the following specializations allows you to gain the knowledge, skills and abilities required for the formation of a multidisciplinary highly qualified specialist in the field of oil and gas fields to meet the requirements of modern high-tech production, capable of performing at a high technical level of design and the design and production and technological activities in this area , to engage in organizational and management activities in the interdisciplinary fields of oil and gas industry, including in the international team that can take responsibility for the professional solutions, taking into account environmental protection and compliance with safety regulations, as well as continuous professional self-improvement and self-education. This all under the Learning in Russia™ program for international graduates!

Come study with Council for Foreign Education in Russia, the official International Education partner of leading Russian State Universities and Russian National Research State Universities.

Degree/Field of study: Master in Petroleum Engineering

Duration: 2 years

Specializations can be done in any one of the following (TPU):

1. The reliability of gas and oil pipelines and storage facilities

2. Construction of deep oil and gas wells in complex mining and geological conditions

3. Management of development and operation of Oil and Gas fields

4. Machinery and equipment of oil and gas fields

5. Development, Production and Operation of oil and gas fields

6. Geological and Geophysical problems of development of oil and gas fields (Double degree with Heriot-Wat in English medium)

7. Design and Development of oil and gas fields (Double degree with Heriot-Wat in English medium)

Competitive advantages of the various specializations

1. Master of Reliability of Oil pipelines and storage facilities is able to:

• combine in-depth knowledge of the process equipment reliability theory with dynamic, hydro-mechanical and thermodynamic processes during its operation;
• be expert in modern computer means of group and individual design of oil and gas pipelines and storage facilities with the use of geoinformation technologies;
• to carry out non-standard calculations for optimization of technological modes of transportation of oil and gas, taking into account operational parameters of oil pipelines and storage equipment;
• to master the methods of modeling of complex hydrodynamic processes, choose optimal technological regimes pumping oil and gas and pipeline options, taking into account the profile of the route;

2. Master in Construction of deep oil and gas wells in complex mining and geological conditions

• to develop and substantiate the technical, technological, techno-economic, psychological and other necessary indicators characterizing processes, facilities, systems, projects, oil and gas company;
• improve and develop methods for the analysis of information on manufacturing processes and the technical devices in the field of drilling, oil and gas, fishing control and regulation of the extraction of hydrocarbons on land and at sea, the pipeline transport of oil and gas, underground gas storage, storage and marketing of crude oil, and liquefied petroleum gases;
• to carry out a regulated and implement new processes oil and gas production and transportation of oil and gas, to record and analyze the results of these processes;
• to apply new methods to improve the regulated operation and maintenance of the technological equipment used in oil and gas production and transportation of oil and gas;
• to carry out multi-criteria assessment of the benefits of the technological processes, projects, work the oil and gas company;
• assess the risks of innovative new technologies, equipment and systems.

3. Master in Management of Development and Operation of Oil and Gas fields should be able to:

• perform complex analytical calculations to analyze dynamic, hydraulic and thermodynamic characteristics of the pipeline transportation equipment;
• use complex modern experimental equipment in the study of the processes that affect the performance and strength characteristics of oil and gas pipelines and storage facilities;
• to apply modern methods of designing a group of pipeline transport objects using automated project management systems, and methods of improving the reliability of pipeline transport of oil and gas equipment during the design and operation;
• own modern computer means of group and individual design of oil and gas pipelines and storage facilities with the use of geoinformation technologies;
• to carry out non-standard calculations for optimization of technological modes of transportation of oil and gas, taking into account operational parameters of oil pipelines and storage equipment;

4. Master of Machinery and Equipment of oil and gas fields is able to:

• provides an effective project development, meeting the requirements of long-term development of the industry (including the use of CAD and computer technology);
• develop and calculate the technical documentation at all stages of the design of machines, equipment and construction of oil and gas production;
draw up solutions to the drawings,
• to develop terms of reference for the design and manufacture of new and improvement of existing models of machines, equipment and construction of oil and gas fields with the feasibility of decisions, taking into account the ecological purity, the level of mechanization and automation of production and labor protection;
• to organize the effective work of the staff on the basis of modern management methods;

5. Master in Development, Production and Operation of oil and gas fields is able to:

• master complex procedures for monitoring the process of exploitation of different hydrocarbon composition;
• field of study and development of reserves;
• apply a wide range of skills, including rapid flooding, the collection of data on production, planning and implementation of field development control programs;
• plan and conduct hydrodynamic studies of wells, interpret the results of GDI for determining the filtration characteristics of reservoirs – permeability, skin factor, well damage, average reservoir pressure, reservoir heterogeneity and reservoir boundaries;
• integrated data processing characteristics of the wells and geological conditions, seismic data, the analysis of geophysical logging, rock properties and fluid to support the results of the HDI;
• make the program analyzes the state of deposits and use multiple methods to monitor and control the process of field development;
• prepare project documentation, depending on the stage of development, the field of study and development of reserves;
• prepare project documents, applying knowledge of regulatory and legislative documents for compliance with the requirements for preparing project documents;
• represent and defend the project documents by the GKZ, HRS / CDC, CDC;
• apply a wide range of skills, including rapid flooding, the collection of data on production, planning and implementation of field development control programs;
• apply knowledge of modern software products to develop hydrocarbon deposits;

6. Master in the Geological and Geophysical problems of development of oil and gas fields is able to:

• apply engineering solutions for the analysis of commercial and technological parameters for the field evaluation;
• apply the spectrum of analytical methods for the evaluation of reservoir properties of the formation and the state of deposits;
• use multiple methods to monitor field development;
• prepare project documentation, depending on the stage of development, the field of study and development of reserves;
• prepare project documents, applying knowledge of regulatory and legislative documents for compliance with the requirements for preparing project documents;
• apply knowledge of Russian reserves calculation of the standard, as well as the SEC (Securities and Exchange Commission) and SPE (Society of Petroleum Engineers) standards;
• interpret the results of GDI for determining the filtration characteristics of reservoirs – permeability, skin factor, well damage, average reservoir pressure, reservoir heterogeneity and reservoir boundaries;
• integrated data processing characteristics of the wells and geological conditions, seismic data, the analysis of geophysical logging, rock properties and fluid to support the results of the HDI;
• be able to work in an international team of experts of Petroleum Engineering;

7. Master of Design and Development of oil and gas fields is capable of:

• conducting sophisticated analytical calculations and experiments on the analysis of design decisions related to the scheduling and arrangement of surface facilities of oil and gas fields;
• general plans to leave the surface taking into account the construction of fields of geospatial data;
• use complex modern software to create production systems, harvesting, transportation and storage of hydrocarbons;
• to apply modern methods of designing surface facilities objects fields using automated project management systems;
• to carry out non-standard calculations for optimization of technological modes of object surface facilities of oil and gas, taking into account the operating parameters of the equipment acquisition, storage and transportation of hydrocarbons;
• able to work well in a multi-disciplinary team of specialists-designers

DISCIPLINES

General Scientific cycle
BASIC part:

  1. Methodological problems of modern science
  2. The general theory of dynamical systems
  3. Economy and management of oil and gas production
  4. Mathematical modeling of problems in the oil and gas industry
  5. Methods of Mathematical Physics

The variable part

  • Professional foreign language
  • Energy saving hydrocarbon technology
  • Computer modeling of the oil and gas business technology
  • Management of oil and gas process
  • Engineering and geological software design oil and gas facilities
  • gathering systems, processing and storage of borehole products
  • Structural Engineer surface facilities of oil and gas complex

Professional cycle
Basic part

  1. The methodology of design in the oil and gas industry and project management. Computer Aided Design
  2. Information Systems. Manage the development of deposits. Feasibility analysis

The variable part

  1. Geosteering in the oil and gas business
  2. The technology of oil and gas production
  3. The organization works on maintenance and repair of oil and gas equipment
  4. Drilling oil and gas wells
  5. Technology development of oil and gas fields
  6. Construction and operation of gas and oil pipelines and Storages
  7. The reliability of gas and oil pipelines and storage facilities
  8. Computer-aided design of pipeline transport systems
  9. Modern conceptions of oil disperse systems
  10. Monitoring of pipeline transportation equipment
  11. Studies of the stress-strain state of pipelines
  12. The strength of oil and gas pipelines and storage equipment
  13. Quality control and testing of oil and gas pipelines and storage facilities
  14. Water supply, sanitation and fire safety of oil and gas complex
  15. Power supply arrangement of oil and gas facilities
  16. Systems of pipeline transport of hydrocarbons
  17. Legal support of the project activity in the oil and gas industry
  18. Designing of systems of transport maintenance of oil and gas complex
  19. Environmental support for development and production

For applying to study Master in Petroleum Engineering in one of the leading National Research Russian State University fill in all fields in our INFORMATION REQUEST Form and forward it to one of our e-mails: admissions@cferussia.ru or learninginrussia@gmail.com

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Master in Information Security in Russia

Information-Security

Study Master in Information Security in Russia under the Learning in Russia™ program for international students!

Come study with Council for Foreign Education in Russia, the official International Education partner of leading Russian State Universities and Russian National Research State Universities.

Degree/Field of study: Master in Information Security

Duration: 2 years
Profile – Safety of Automated System

BASIC part:
1 The methodology of scientific knowledge
2 Mathematical modeling
3 IT IS maintenance facilities
4 Information security management

Specialized part:
1 Special chapters of mathematics
2 Special chapters of physics
3 Game Theory and Operations Research
4 Fundamentals of management activities
5 Organizational and Legal Information Security
6 Systems theory and systems analysis
7 Technologies and programming methods
8 Theoretical Foundations of Information Security
9 Technical means of information protection
10 Methods and means of information protection in electronic document management systems
11 The theory of decision making under conflict information
12 Cryptographic methods of information protection
13 Methods and means of protection of cloud computing
14 Fundamentals of Information Security
15 Computer technologies in science and education
16 programs and data protection
17 Protection of personal data
18 system information and network
19 Steganography
20 Protection in operating systems
21 Intelligent security solutions

For applying to study Master in Software Engineering in one of the leading National Research Russian State University fill in all fields in our INFORMATION REQUEST Form and forward it to one of our e-mails: admissions@cferussia.ru or learninginrussia@gmail.com

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Master in Software Engineering in Russia

software_eng

Study Master in Software Engineering in Russia under the Learning in Russia™ program for international students!

Come study with Council for Foreign Education in Russia, the official International Education partner of leading Russian State Universities and Russian National Research State Universities.

Degree/Field of study: Master in Software Engineering)

Duration: 2 years
Profile – Development of software and information systems

A software engineer applies the principles of software engineering to the design, development (of correct and reliable), maintenance, testing, and evaluation of the software and systems that make computers or devices, equipments, gadgets etc. containing software work.

Disciplines which are compulsory

  1. Disciplines of specialization
  2. Distributed data processing system
  3. Collective development PO
  4. Design compiler
  5. Methodology for Software Engineering
  6. Design of operating systems
  7. Programming of parallel processes
  8. computer networks protocols
  9. Intelligent systems
  10. Optimization methods
  11. High Performance Computing and parallel computing
  12. Software Development Technologies
  13. Designing of compilers and interpreters of programming languages
  14. Means of implementation of the information requirements
  15. System of formation of three-dimensional images
  16. Digital Signal Processing and Pattern Recognition
  17. Design of PC operating systems
  18. Math modeling
  19. Internet technologies and local area networks

Each student will have access to the following list:
1 ACM Computing Surveys
2 ACM Transactions on Computer Systems
3 ACM transactions on database systems
4 Advances in Engineering Software
5 Automated Software Engineering
6 Byte (Russian)
7 Communications of the ACM
8 Crosstalk: the journal of defense software engineering
9 Dr. Dobb’s Journal: Software Tools for the Professional Programmer
10 Empirical Software Engineering
11 EXE: The Software Developer’s Magazine
12 IEE proceedings. Computers and digital techniques
13 IEE proceedings. Software
14 IEEE annals of the history of computing
15 IEEE software
16 IEEE transactions on dependable and secure computing
17 IEEE transactions on software engineering
18 Information and Software Technology
19 Innovations in Systems and Software Engineering
20 International Journal of Software Engineering and Knowledge Engineering
21 International Journal on Software Tools for Technology Transfer
22 IT professional
23 Journal of software
24 Journal of the Association for Computing Machinery
25 Lecture Notes in Computer Science
26 Microsoft Architects Journal / Russian Edition
27 MSDN Magazine / Russian Edition
28 OFFICE
29 Optimization Methods and Software
30 PCWeek (Russian edition)
31 Productivity Software
32 Programming and Computer Software
33 Software and Systems Modeling
34 Software Development
35 Software Quality Journal
36 Software Quality Professional
37 SQL Server administrators
38 SQL Server professionals
39 TECHNET Magazine / Russian Edition
40 The Journal of Systems and Software
41 Theoretical Computer Science
42 Web-design for professionals
43 Web-development: ASP, Web-services, XML
44 IT Security-infrastructure
45 Information Technology
46 Using Visual Studio
47 Corporate databases
48 Modeling and Analysis of Information Systems
49 Open systems
50 Useful tools for developers in software
51 Programming
52 Programming in C #
53 Programming in C / C ++
54 Software Engineering

For applying to study Master in Software Engineering in one of the leading National Research Russian State University fill in all fields in our INFORMATION REQUEST Form and forward it to one of our e-mails: admissions@cferussia.ru or learninginrussia@gmail.com

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Study Petroleum Engineering in Russia with a Bachelors degree in Drilling of Oil and natural Gas wells  GAS DRILL gas-drilling

BACHELORS in Petroleum Engineering in Russia

Come study in Russia in TPU (founded in 1896), Tomsk, Council for Foreign Education in Russia’s official partner.

Study in Russia with Council for Foreign Education in Russia as it is in a strategically strong position due to its location in Russia and its relationship with top Petroleum Engineering faculties to impart quality education in Petroleum Engineering to international students.

The demand for new engineers is expected to continue well into the future as a large number of practising engineers are approaching retirement age, creating new opportunities for young graduates. Oil and gas production is a worldwide business with possibilities of overseas assignments or involvement in major overseas projects.

In our petroleum engineering program, low Professor: student ratios, research is integrated into learning , European Credit Transfer System (ECTS) , access to research and technological resources and ability to re pass the exams every semester if the student fares not satisfactorily or falls sick or is out f station for some genuine reason.

Several worldwide trends ensure that the strong demand for petroleum engineers will continue. The ever-increasing population of the earth, combined with the growing thirst for energy in the developing countries like India, China, Nigeria, Indonesia, South Africa, Brazil etc., is putting significant upward pressure on the demand for oil and gas production. This increasing demand for energy, and the simple fact that oil and gas resources are limited, places the petroleum engineer in a strong position now and for many years to come.

Oil company expenditures for exploration and production are rising fast, as are budgets and salaries for petroleum engineers. The number of job openings also is rising.

The ever-increasing integration of multidisciplinary teams of professionals—including petroleum engineers, geologists, geophysicists, and others—is another trend shaping the future of the industry. Joint ventures and partnerships among companies, and outsourcing of projects are opening new opportunities and new ways of doing business. These business trends are accelerating simultaneously with technological advances in the areas of computer simulation of underground oil and gas reservoirs, geophysical seismic techniques, horizontal drilling, and offshore drilling and production.

Additionally, more jobs are available than there are professionals to fill them.

In this course the student will be getting getting specialized skills and knowledge in the field of drilling oil and gas wells. Therefore, during the development of this profile bachelors will invited to explore the main issues related to the directional drilling of wells, increasing the wear resistance of the rock cutting tool research ecotoxicity drilling mud and cement solutions, development of jetvortex nozzles jetting drill bits, improving the quality of drilling fluids.

Objectives / Purpose The Federal State Education Standards requirements and interested employers
Readiness of graduates to the production process and design activities, providing upgrades, implementation and operation of equipment for the production, transportation and storage of oil and gas The Federal State Education Standards requirements, criteria AEER, compliance with international standards and the EUR-ACE FEANI. Needs of the scientifc-research center of “TomskNIPIneft” and the oil & gas industry, enterprise OOO “Gazprom”, “Transneft”
Readiness of graduates to the organizational and managerial activities for making professional decisions in the interdisciplinary fields of modern oil and gas technologies using the principles of management and control The Federal State Education Standards requirements, criteria AEER, compliance with international standards and the EUR-ACE FEANI, questions of domestic and foreign employers

BACHELORS in Petroleum Engineering in Russia course with specialization in Drilling of Oil and natural Gas wells

  • Legal provision of the oil and gas business (mining law)
  • Business Etiquette and Culture of Communication
  • Fundamentals of business ethics and corporate culture

in the field of production and technological activities

  • ability to manage system technological processes
  • operate and maintain the complex Oil & Gas facilities

in the field of organizational and managerial activities

  • Effectively work individually and as a team member on an interdisciplinary topics
  • lead the team for the professional innovation tasks in accordance with the requirements of corporate culture and tolerance

in the area of ​​project activity

  • Plan, conduct, analyze, process, experimental studies with the interpretation of the results obtained on the basis of modern modeling techniques and computer technology
  • Ability to apply knowledge, modern methods and software design tools to compile the project and working and technological documentation for drilling oil and gas wells, production, gathering, preparation, transport and storage of hydrocarbons

student should KNOW

  •  key terms and definitions, well construction, well classification
  • history, problems and prospects of development of the technology of drilling wells
  • processes of production drilling process
  • methodology for designing the well design, calculation of casing and zonal isolation
  • elements of technological equipment of the drill string, their structure and rules of operation
  • technical tools of basic technological processes
  • regulatory and technological and instructional documentation for drilling oil and gas wells
  • basic safety precautions when drilling
  • the peculiarities of engineering and technical services management and control drilling operations.

student should be BE ABLE TO:

  • use simulation methods of drilling wells
  • count well design
  • to develop the technology of drilling
  • use of technical means for measuring parameters of drilling fluids and cement
  • conduct analytical work on the problem of drilling wells
  • reasonable to choose a method of drilling and rock cutting tools for specific geotechnical drilling conditions
  • calculate the optimal settings for the drilling
  • perform projecting and checking calculation of the drill string for vertical and directional wells with rotary and turbine drilling
  • conduct analytical work on the technological problems of drilling oil and gas wells.

student should POSSESS:

  • Methods of constructing the simplest mathematical models of typical professional tasks
  • Mathematical methods for solving problems of the natural sciences
  • Methods of analysis meaningful interpretation of the results

Disciplines studied under BACHELORS in Drilling of Oil and natural Gas wells

1 GENERAL INFORMATION ABOUT THE CONSTRUCTION OF WELLS

1.2. TECHNOLOGY DRILLING TOOLS
1.2.1. Rock cutting tool
1.2.2. Core Lifter device and drill head
1.2.3. drillstring
1.3.1. turbodrills
1.3.2. Downhole drilling motors
1.3.3. Electric drills

1.4. TECHNOLOGICAL ASPECTS OF DRILLING.
1.4.1. Correlation of drilling and operational parameters.
1.4.2. The specifics of the various technologies in drilling
1.4.3. Drilling of wells with balanced pressure
1.4.4. Well drilling coring.
1.4.6. Drilling support-technology wells.
1.4.7. Design drilling technology

1.5. HIGHLIGHTS Drilling Technology Extreme Environments
1.5.1. Drilling technology to prevent fluid loss
1.5.2. Drilling technology for the prevention of water, oil and gas shows
1.5.3. Drilling technology to prevent violations of the stability of the borehole walls
1.5.4. Technological measures to prevent sticking
1.5.5. Features drilling technology in permafrost

1.7. Technology of drilling shallow wells VARIOUS
1.7.1. Technique and technology of drilling boreholes Features and drilling methods. Well design and setup filters. Drilling rigs, drill string and drilling technology.
1.7.2. Drilling Technology for solid minerals
Drilling conditions and methods used. Technological drilling tool. Constructive scheme, the normal range of drilling rigs. Features drilling technology.
1.7.3. Features drilling technology geotechnical and seismic wells.
Purpose and features of geological and seismic wells. Methods of drilling rigs, drill string and drill mode settings.

 

TOPICS OF LABORATORY WORK

    1. Identification of the elements of the flowsheet for the Drill Unit 80 installation
    2. Identification of the elements of the functional systems of a Rock Bit (RB)
    3. Identification of the RB with milled arm
    4. Identification of RB Carbide arms
    5. Identification of flushing systems
    6. Visual quality control stepper motor
    7. Instrumental quality control stepper motor
    8. Estimation of the parameters in the operation of stepper motor
    9. Coding wear
    10. Blade-drilling and PDC (polycrystalline diamond cutter) bits
    11. Identification of drill pipes
    12. Identification of the connecting elements of the drill string
    13. Determination of the strength characteristics of the drill pipe
    14. Identification of 14 turbines turbodrills
    15. Identification supports turbodrills
    16. Identification of the elements of section turbodrills
    17. Identification of the elements of section turbodrills spindle
    18. Identification of elements turbodrills with oblique line pressure
    19. Identification of the elements of the bulk Propellers
    20. Identification of the drill head
    21. Identification of core lifter devices
    22. Operative correction operation of SM
    23. Determination of the duration of a rational mining bits
    24. Identification of emergency tool
    25. Identification of rock cutting tools for drilling shallow wells
    26. Identification elements 26 of the drill string for drilling shallow wells
    27. Tools for coring while drilling for solid minerals

TOPICS PRACTICAL LESSONS

  1. Selection of drilling
  2. Analysis of the quality of materials for the manufacture of roller cone bits
    Rock Bit (RB)
  3. Analysis of structural supports SM
  4. Analysis purification schemes face
  5. Analysis of the structures of SM
  6. Analysis of the structure of diamond bits
  7. Analysis layouts drillstring
  8. Analysis layouts BHA for drilling vertical holes
  9. Analysis of layouts BHA for drilling directional wells
  10. Calculation of the drill string for drilling vertical wells turbine
  11. Calculation of the drillstring 10 to Turbine drilling directional wells
  12. Calculation of drillstring 11 for rotary drilling of a vertical well
  13. An analysis of the energy characteristics of turbodrills
  14. Calculation of the drilling mode cone bits
  15. Sizing turbodrill
  16. Calculation performance turbodrills
  17. Calculation of the primary mode of penetration of the productive horizon
  18. Dimensioning mode coring
  19. Calculation of the oil and acid baths
  20. Design of the drill string for sinking shallow wells
  21. Calculation of the mode of drilling shallow wells

For applying to study Petroleum Engineering (Oil & Gas Engineering) in one of the leading Russian State Universities go HERE and learn the step-by-step admission process at the end of the page. Then you may fill in all fields in our INFORMATION REQUEST Form and forward it to one of our e-mails: admissions@cferussia.ru or learninginrussia@gmail.com

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Study Petroleum Engineering in Russia with a Bachelors degree in Operation and maintenance of Transport & Storage of oil, gas and derivative productsLNG_blog post_v3 MiRO4 natural-gas-terminal

BACHELORS in Petroleum Engineering in Russia

Come study in Russia in TPU (founded in 1896), Tomsk, Council for Foreign Education in Russia’s official partner.

There are numerous areas for significant professional career growth for petroleum engineers—from drilling technology to the design of exotic fluid systems to inject in reservoirs to increase oil recovery. Salaries for petroleum engineers
are, and will continue to be, among the highest paid of all professionals. Study in Russia with Council for Foreign Education in Russia as it is in a strategically strong position due to its location in Russia and its relationship with top Petroleum Engineering faculties to impart quality education in Petroleum Engineering to international students.

Additionally, more jobs are available than there are professionals to fill them. An education in petroleum engineering has proven to be an excellent foundation for careers in fields such as law, medicine, and business.

In summary, these trends, in combination with others, indicate that both the short and long-term demand for petroleum engineers will be high; PEs will be provided with expensive tools, and they will be expected to design significant projects in a global environment. In many ways, the atmosphere for petroleum engineers today is more exciting and satisfying than ever before..

In this course the student will be getting specialized skills and knowledge in the field of operation and maintenance of the transport and storage of oil, gas and refined products. During the development of this profile bachelors are invited to explore the basic questions concerning the operation of oil pipelines, pump and compressor stations, equipment diagnostics pipelines and storage facilities, technological reliability of pipeline transportation of hydrocarbons, process safety, questions about specific techniques pumping.

Disciplines studied under BACHELORS in Petroleum Engineering in Russia course

  • Economics and Organization of petroleum production (Oil & Gas production)
  • History of Oil and Gas Industry
  • Legal provision of the oil and gas business (mining law)
  • Business Etiquette and Culture of Communication
  • Fundamentals of business ethics and corporate culture
  • Hydraulic machinery and air-oil circuit
  • Logistics of Oil & Gas distribution
  • Treatment facilities of transport and storage of oil and petroleum products
  • Building construction
  • Power drive pumps and compressors
  • Preparation of oil and gas for transportation
  • automated design engineering
  • Applications software products
  • Assessment of the economic efficiency of investments in enterprises of TSOG (Transport and Storage of oil & Gas)
  • Applied combustion  / thermal engineering
  • Fundamental question of Heat-transfer
  • Design and Operation of Gas Oil Pipeline
  • Design and Operation of Oil Gas Storage tanks (depots)
  • Design and operation of pump and compressor stations
  • Diagnostics Equipment Gas Oil pipeline
  • Resource-energy Conservation technologies of transport and storage of oil and gas
  • Transport and Storage of liquefied gases
  • Reliability of oil and gas facilities
  • Design and Operation of Gas Distribution Systems
  • Gas Turbine installations
  • Construction and repair of gas oil pipeline and Oil Gas Storage tanks (depots)
  • Fundamentals of Oil & Gas Industry
  • Foundations of Engineering Geology and Geology Oilfield
  • Engineering surveying (geodesy) and Soil Mechanics
  • Promising projects offshore oil and gas resources ; development of Techniques and Technologies of Transport and Storage of Oil & Gas (TSOG)
  • Petrol Stations and supply of Petroleum Products
  • Descriptive Geometry and Engineering Computer Graphics
  • Theoretical and Applied Mechanics
  • Materials science and Theory of Engineering Materials (TEM)
  • Electrical Engineering
  • Oil and Gas Chemistry
  • Hydraulics and Fluid mechanics of Petroleum
  • Thermodynamics and Heat Transfer
  • Life safety training
  • Meteorology, standardization and qualimetry
  • Fundamentals of automation of technological processes of the oil and gas production
  • Fundamentals of Environmental Safety in Transport and Storage of Oil & Gas (TSOG) companies
  • Mathematical modelling of processes in Transport and Storage of Oil & Gas (TSOG) companies
  • Physico-chemical basis of the Welding process

For applying to study Petroleum Engineering (Oil & Gas Engineering) in one of the leading Russian State Universities go HERE and learn the step-by-step admission process at the end of the page. Then you may fill in all fields in our INFORMATION REQUEST Form and forward it to one of our e-mails: admissions@cferussia.ru or learninginrussia@gmail.com

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Study Petroleum Engineering in Russia with a Bachelors degree in Construction and Repair of Pipeline Transportation Systems image006

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BACHELORS in Petroleum Engineering in Russia

Come study in Russia in TPU (founded in 1896), Tomsk, Council for Foreign education in Russia’s official partner. TPU has set up several centers in cooperation with schools abroad such as Ohio State University, Michigan State University and Goethe-Institut. It is a member of the Top Industrial Managers for Europe network.

Here the student will be getting specialized skills and knowledge in the construction and repair of pipeline transportation of oil and gas. During the development of this profile bachelors are invited to explore the main issues on the building structure, construction and repair of tank farms, monitoring and diagnostics of pipelines, Pipeline construction materials, construction and repair of pump and compressor stations, welding and assembly work designs oil and gas facilities.

Disciplines studied under BACHELORS in Petroleum Engineering in Russia course

  • Economics and Organization of petroleum production (Oil & Gas production)
  • History of Oil and Gas Industry
    Legal provision of the oil and gas business (mining law)
  • Business Etiquette and Culture of Communication
  • Fundamentals of business ethics and corporate culture
  • Communication technology
  • Corrosion and Corrosion Protection
  • Geology and lithology
  • Software in mathematical modelling
  • Statistical analysis
  • Electrochemistry
  • Geodesy
  • Petrophysics
  • Soil mechanics (Soil engineering)
  • Fundamentals of Geochemistry
  • Fundamentals of Geophysics
  • Descriptive Geometry and Engineering Computer Graphics
  • Theoretical and Applied Mechanics
  • Oil and Gas Chemistry
  • Hydraulics and Fluid Petroleum
  • Meteorology, standardization and qualimetry
  • Fundamentals of automation of technological processes of the oil and gas production
  • Pipeline transportation of crude oil and gas
  • Pumps and compressor
  • Power drive pumps and compressors
  • Supply of Petroleum Products
  • Continuum mechanics
  • Pipeline construction materials
  • Applied Fluid Mechanics
  • Energotechnological equipment
  • Basics of diagnostics
  • Applications software products
  • Petrol pumps (Gas stations)
  • Engineering surveys in pipeline construction
  • Nanotechnology in the oil and gas business
  • Treatment facilities of transport and storage of oil and petroleum products
  • Fundamentals of Budgeting in Pipeline Construction
  • Preparation of oil and gas for transportation
  • Fundamentals of design and construction of pipeline systems
  • Construction and repair of main pipelines
  • Construction and repair of reservoir  parks, terminals and gas stroage depots.
  • Construction and maintenance of Oil Pipeline System and Gas Compressor station
  • Construction and repair of gas distribution network (Gas Grid)
  • Construction and repair of subsea pipelines
  • Building construction
  • Construction of surface field facilities
  • Welding and assembly work in the construction of pipelines and structures
  • Building control and the diagnostics of main pipelines
  • Machinery and equipment for the construction of oil pipelines

Activities of Pipeline construction

  1. Right of Way clearing and grading
  2. Delivery, Transportation, Handling, Hauling, Stringing of pipes
  3. Trenching Normal & Rock
  4. Bending
  5. Lining up and Welding
  6. Radiographic Inspection
  7. Application of Joint Coating
  8. Lowering & back filling
  9. Tie-ins
  10. River and Road crossings
  11. Cleanup and Restoration of ROW
  12. Air Pigging cleaning and Gauging
  13. Hydrostatic testing
  14. De watering cleaning and Swabbing
  15. Golden Tie ins
  16. Valve installation
  17. Caliper survey and dent repairs
  18. Line Preservation

For applying to study Petroleum Engineering (Oil & Gas Engineering) in one of the leading Russian State Universities go here and learn the step-by-step admission process at the end of the page. Then you may fill in all fields in our Information Request Form and forward it to one of our e-mails: admissions@cferussia.ru or learninginrussia@gmail.com

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Why study Petroleum Engineering in Russia?

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  • Companies such as Gazprom, Rosneft, the Russian government’s Education Ministry and numerous others support the petroleum engineering program at leading Russian State Universities and provide graduates with employment opportunities beyond their studies.
  • The faculty of Petroleum Engineering in the leading Russian State Universities are the the largest an oldest in Asia and one of the best in the world.
  • You will spend a large amount of time applying the course material to real oil and gas field data.
  • Research is integrated into learning
  • Bilingual diploma: in Russian and English languages
  • Enhanced opportunities for career development
  • European Credit Transfer System (ECTS)
  • Access to excellent research and technological resources
  • Modern educational technologies
  • low Professor: student ratios
  • Russian State Universities have a reputation for high quality research

As a petroleum engineer you will be responsible for the identification and production of hydrocarbons, requiring a range of skills in engineering and geoscience disciplines.  You may work on a drilling rig, as part of a multi-disciplinary team for an energy company or as one of a diverse range of service contractors who support the extraction of hydrocarbons.

This is an exciting and technically challenging programme that will equip you for a range of careers in the petroleum industry.

Ongoing growth in worldwide energy consumption means demand for petroleum engineers is high. Countries like China, India, Russia, Nigeria, Ghana, the US, UK, Netherlands, Iraq, Iran, Saudi Arabia, Kuwait, Qatar, Egypt, Algeria etc. are always in need of good specialists and this need is only poised to grow. Studying Petroleum Engineering in Russia under Council for Foreign Education’s guidance seems a good bet.

Petroleum engineers are at the forefront of ensuring that we have a continued supply of this most important commodity on the planet today. With continued worldwide demand for energy, there is no better time to be a Petroleum Engineer.

Petroleum Engineering is an interdisciplinary subject, so you will study a broad range of subjects including geology, fluid mechanics, thermodynamics, chemistry and mathematics. You will be taught how hydrocarbon is generated, stored and produced in the subsurface. On completion of the programme you will understand the life-cycle development of oil and gas fields, and how petroleum engineers operate them effectively.

Petroleum Engineering is concerned with the exploration for and extraction of hydrocarbons, eg. crude oil and natural gas. Petroleum Engineers use creative and imaginative knowledge of petroleum geology, reservoir behaviour, as well as fundamental engineering principles to develop effective and safe solutions for the exploration, recovery and transportation of hydrocarbon products trapped underground, onshore or offshore, and in very challenging environments.

Virtually every product in modern life has probably been manufactured using energy generated by oil or gas.

If you are interested in applying the knowledge of geology and physics, in creating engineering systems for safe and sustainable harnessing of the primary source of energy used by the modern society, then you should consider Petroleum Engineering as a career choice.

To view degree programs in Petroleum Engineering in Russia offered by CFER, click here.

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Study PhD in Russia in English

Studying in English language will help you think, analyze, ascertain and reach at a conclusion the topics and issues that interest you in a language comfortable to you and native to many of our international students. It will also give you the added benefit of understanding the Russia perspective, “Russian way of doing things”, without learning the Russian language.

Come do your PhD with Council for Foreign Education in Russia, official International Education partner of leading Russian State Universities, under the Learning in Russia™ program for international students! Our partner Universities are located in Moscow, St. Petersburg, Tomsk, Petrozavodsk, Saratov, Ekaterinburg etc.

The following subjects are available in English for PhD students

  1. Mathematics and Mechanics
  2. Physics and Astronomy
  3. Machinery
  4. Psychological Science
  5. Computer Science and Engineering
  6. Economy
  7. Legal
  8. Education and pedagogical sciences

Specific specializations for each of the above mentioned subjects you must ask and confirm by e-mailing admissions@cferussia.ru / learninginrussia@gmail.com

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We give scholarship in non-medicine subjects if the student has a GPA of 3 or above i.e more than 85% subject to availability of seats.

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In late 1945 and early 1946, a group of prominent Soviet scientists, including in particular the future Nobel Prize winner Pyotr Kapitsa, lobbied the government for the creation of a higher educational institution radically different from the type established in the Soviet system of higher education. Applicants, carefully selected by challenging examinations and personal interviews, would be taught by, and work together with, prominent scientists. Each student would follow a personalized curriculum created to match his or her particular areas of interest and specialization. This system would later become known as the Phystech System.

The Phystech System

The following is a summary of the key principles of the Phystech System, as outlined by Kapitsa in his 1946 letter arguing for the founding of MIPT:

  • Rigorous selection of gifted and creative young individuals.
  • Involving leading scientists in student education, in close contact with them in their creative environment.
  • An individualized approach to encourage the cultivation of students’ creative drive, and to avoid overloading them with unnecessary subjects and rote learning common in other schools and necessitated by mass education.
  • Conducting their education in an atmosphere of research and creative engineering, using the best existing laboratories in the country.

In its implementation, the Phystech System combines highly competitive admissions, extensive fundamental education in mathematics, as well as theoretical and experimental physics in the undergraduate years, and immersion in research work at leading research institutions of the Russian Academy of Sciences starting as early as the second or third year.

The institute has eleven departments, ten of them with an average of 80 students admitted annually into each. Now, the very best of international stduents are also admitted here.

  1. Radio Engineering and Cybernetics
  2. General and Applied Physics
  3. Aerophysics and Space Research
  4. Molecular and Biological Physics
  5. Physical and Quantum Electronics
  6. Aeromechanics and Flight Engineering
  7. Applied Mathematics and Control
  8. Problems of Physics and Power Engineering
  9. Innovation and High Technology
  10. Nano-, Bio-, Information and Cognitive Technologies

The eleventh faculty, Information Business Systems, offers only a Master’s programme and accepts students with Bachelor’s degrees from other faculties or other institutes.

In addition, a number of Russian and Western companies act as base organizations of MIPT. These include:

Do you want to know who studied under the Phystech System?

Famous faculty and alumni

How do you like that!?

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