| Course Unit Code | 541-3006/04 |
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| Number of ECTS Credits Allocated | 5 ECTS credits |
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| Type of Course Unit * | Optional |
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| Level of Course Unit * | First Cycle, Second Cycle |
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| Year of Study * | |
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| Semester when the Course Unit is delivered | Winter Semester |
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| Mode of Delivery | Face-to-face |
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| Language of Instruction | English |
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| Prerequisites and Co-Requisites | Course succeeds to compulsory courses of previous semester |
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| Name of Lecturer(s) | Personal ID | Name |
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| KUN109 | doc. Ing. Antonín Kunz, Ph.D. |
| OPL011 | RNDr. Vladimír Opletal, Ph.D. |
| KLE028 | doc. Ing. Martin Klempa, Ph.D. |
| POR041 | Ing. Michal Matloch Porzer, Ph.D. |
| GER0092 | doc. Mgr. Eva Geršlová, Ph.D. |
| Summary |
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The course introduces students to the complete lifecycle of oil and gas reservoirs, through the determination of reserves and recoverability to the actual production of hydrocarbons both onshore and offshore. Emphasis is placed on technological processes, the principles and design of production equipment, including downhole pumps, as well as basic methods for production design and optimization. The course also covers the basic principles of reservoir and production project economic evaluation and production project management, the identification and assessment of safety and environmental risks, and the evaluation of the broader economic, energy-related, and geopolitical implications of hydrocarbon production and use in contemporary society..
Professional Knowledge
Upon completion of the course, the student will be able to explain and critically assess the principles of exploration, evaluation, and production of oil and natural gas reservoirs both onshore and offshore; characterize the individual stages of the reservoir life cycle; describe the design and operating principles of basic production equipment, including downhole pumps; and distinguish between the basic methods for estimating hydrocarbon reserves, recoverability, and reservoir life. The student will also be able to explain the basic principles of the economic evaluation of reservoirs and production projects, characterize the main environmental impacts of hydrocarbon production and methods for their prevention, and explain the role of oil and natural gas in the global energy system, including the key economic, environmental, and geopolitical aspects of hydrocarbon production and use.
Professional Skills
Based on reservoir and operational data, the student applies appropriate reservoir evaluation methods, calculates hydrocarbon reserves, and estimates their recoverability and remaining potential at a given stage of the reservoir life cycle. For specific geological and operational conditions, the student designs an optimized production approach, selects and justifies appropriate production equipment, including its deployment, processes and evaluates operational data, and interprets the results obtained. The student conducts a basic economic evaluation of the proposed production solution and critically assesses its technical, economic, safety, and environmental feasibility, including the main associated risks and options for their mitigation.
General Competencies
The student independently and responsibly selects an appropriate approach and chooses suitable solutions for the design and optimization of production processes under changing geological and operational conditions. The student assesses the quality and limitations of available data and results and considers the technical, economic, safety, environmental, ethical, and social aspects of the proposed solution. The student works effectively in a team, coordinates assigned tasks, communicates results clearly, and defends the selected technical solution to a professional audience. In solving problems, the student follows relevant legislative, safety, and professional requirements and considers the broader role of oil and natural gas production in the global energy system and economy. |
| Learning Outcomes of the Course Unit |
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| The main objective of the subject is to acquire basic knowledge of technical means, technologies and methods of opening, extraction, processing and distribution of oil and gas. The aim is to provide students with an overall overview of the topic, where the individual disciplines will be discussed in detail within the specific subjects of the follow-up study. Introduction to hydrocarbon extraction will also include an elementary gas and oil production project management, including an analysis of safety and environmental risks. |
| Course Contents |
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1.Introduction to the subject, history of oil and gas production, the role of oil and gas exploitation in the state economy.
2.Properties of oil and natural gas, recovery of oil and gas deposits, reservoir deliverability and flow regimes, oil and gas production methods.
3.Overview of technology and processes of the gas and oil production. Offshore and onshore gas and oil exploration.
4.Standard types of gas and oil production, lifetime of the oil and gas deposits, calculation of hydrocarbon reserves.
5.Oil and gas exploration and production borehole design. Borehole execution, commissioning and standard operation.
6.Artificial lift methods, oil and gas production equipment, sucker rod pumping systems, submersible pumps, gas lifts.
7.Oil and gas well workover, sources of well damage, recovery technology and equipment needed for well repair and maintenance.
8.Secondary and enhanced oil and gas recovery methods.
9.Equipment for oil and gas collection, processing, transport and distribution. Pipeline systems, pipes, valves and fittings in the oil and gas industry.
10.Oil and gas production measurement devices and methodology, oil and gas storage facility.
11.Unconventional oil and gas resources. Shale gas, oil sands, coal bed/mine methane, abandoned mine methane, methane hydrates.
12.Environmental impacts of the oil and gas production.
13.Project management and risk management of the gas and oil exploration and exploitation projects. |
| Recommended or Required Reading |
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| Required Reading: |
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COSSÉ, R.: Basics of Reservoir Engineering. Oil and Gas Field Development Techniques. Éditions Technip, Paris, 1993.
GUO,B., LYONS, W.,CHALAMBOR, A.: Petroleum Production Engineering. A computer assisted Approach, Elsevier Inc. 2017.
FANCHI, JOHN R. CHRISTIANSEN, RICHARD L.: Introduction to Petroleum Engineering. John Wiley & Sons, 2017,
DONNEZ, P.: Essentials of Reservoir Engineering. Editions Technip, 2007. |
ZEMAN V., BUJOK P., KLEMPA M., PINKA J.: Technologie těžby – skripta pro střední průmyslovou školu kamenickou a sochařskou, Ostrava, 2011.
COSSÉ, R.: Basics of Reservoir Engineering. Oil and Gas Field Development Techniques. Éditions Technip, Paris, 1993.
GUO,B., LYONS, W.,CHALAMBOR, A.: Petroleum Production Engineering. A computer assisted Approach, Elsevier Inc. 2017.
FANCHI, JOHN R. CHRISTIANSEN, RICHARD L.: Introduction to Petroleum Engineering. John Wiley & Sons, 2017. |
| Recommended Reading: |
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DEVOLD, H.: Oil and gas production handbook. An introduction to oil and gas production, transport, refining and petrochemical industry, Edition 3, Oslo 2013.
ROBELLO S., XIUSHAN, L.: Advanced drilling engineering, Gulf Publishing Company 2009.
EL‐REEDY, M.: Project Management in the Oil and Gas Industry, 2013.
DAKE, L.P.: Practice of Reservoir Engineering (Revised Edition). Elsevier, 2001. Retrieved from
https://app.knovel.com/hotlink/toc/id:kpPRERE003/practice-reservoir-engineering/practice-reservoir-engineering |
ZEMAN, V., PINKA, J., KLEMPA M., STRUNA J.: Technika a technologie vrtných prací, I díl, Ostrava 2014.
ZEMAN, V. PINKA, J., KLEMPA M., STRUNA J.: Technika a technologie vrtných prací, II díl, Ostrava 2014.
DEVOLD, H.: Oil and gas production handbook. An introduction to oil and gas production, transport, refining and petrochemical industry, Edition 3, Oslo 2013.
EL‐REEDY, M.: Project Management in the Oil and Gas Industry, 2013. |
| Planned learning activities and teaching methods |
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| Lectures, Individual consultations, Tutorials, Field trip, Teaching by an expert (lecture or tutorial) |
| Assesment methods and criteria |
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| Tasks are not Defined |