SUMMER TRANINING
- Course
- PNGE300 - SUMMER TRANINING
- Department
- Petroleum and Natural Gas Engineering - English - Undergraduate
- Course Type
- Internship
- Status
- Required
- Language
- English
- Credit
- 0
- ECTS
- 2
- T+P+L
- 0 + 0 + 0
- Course Coordinator(s)
- Asst. Prof. Dr. Hilmi DİNDAR
- Prerequisite
- -
- Keywords
Course Description
A minimum of four weeks (20 working days) training preferable in drilling operations. The main objective of this training is to observe and discuss the various aspects of drilling operations and inspection of drilling systems. The summer training should definitely be carried out at a site where drilling operations either for petroleum or natural gas are carried out. For this purpose, sites in Turkey or abroad will be organized for the students by the Department. At the end of the summer training, the students must be able to write a report summarizing the experience they earned in 20 days, with respect to: drilling site/location preparations, transportation routes conveniently designed to be adequate for the weight and width of rigs and equipment, preparation of mud pits, their design, depth and connection between pits, design of equipment for recycling of mud (sand shaing table etc.), necessary well logs to be filled, how to fill, core and sludge measurements and details, drill bit (core and rock bits) data.
SUMMER TRANINING
Evaluation Tools (Active Term)
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Course outcomes
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Course Syllabus
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Reference Books & Course Materials
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Learning Outcomes
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Program Outcomes
- Knowledge of mathematics, natural sciences, basic engineering, computer-based computation, and topics specific to the relevant engineering discipline.
- Ability to apply knowledge of mathematics, natural sciences, basic engineering, computer-based computation, and topics specific to the relevant engineering discipline to the solution of complex engineering problems.
- Ability to define complex engineering problems by using knowledge of basic sciences, mathematics, and engineering, while considering the relevant United Nations Sustainable Development Goals (SDGs) related to the problem addressed.
- Ability to formulate complex engineering problems using knowledge of basic sciences, mathematics, and engineering, while considering the relevant United Nations Sustainable Development Goals (SDGs) associated with the problem addressed.
- Ability to analyse and solve complex engineering problems using knowledge of basic sciences, mathematics, and engineering, while considering the relevant United Nations Sustainable Development Goals (SDGs) associated with the problem addressed.
- Ability to design creative solutions to complex engineering problems.
- Ability to design complex systems, processes, devices, or products in a way that meets present and future needs while considering realistic constraints and conditions.
- Ability to select and use appropriate techniques and resources—including estimation and modelling—for the analysis and solution of complex engineering problems, while being aware of their limitations.
- Ability to select and use modern engineering and computational tools—including estimation and modelling—for the analysis and solution of complex engineering problems, while being aware of their limitations.
- Ability to conduct literature research and use appropriate research methods for the investigation of complex engineering problems.
- Ability to design experiments for the investigation of complex engineering problems.
- Ability to conduct experiments, collect data, analyse results, and interpret findings for the investigation of complex engineering problems.
- Knowledge of the impacts of engineering practices on society, health and safety, the economy, sustainability, and the environment within the framework of the United Nations Sustainable
- Awareness of the legal implications of engineering solutions within the framework of the United Nations Sustainable Development Goals (SDGs).
- Knowledge of ethical responsibility and adherence to the principles of professional engineering conduct.
- Awareness of acting impartially without discrimination in any matter and of being inclusive of diversity.
- Ability to work effectively as an individual.
- Ability to work effectively as a team member or leader in intra-disciplinary teams (face-to-face, remote, or hybrid).
- Ability to work effectively as a team member or leader in multidisciplinary teams (face-to-face, remote, or hybrid).
- Ability to communicate effectively in spoken form on technical matters, taking into account the diverse characteristics of the target audience (such as education, language, and profession).
- Ability to communicate effectively in written form on technical matters, taking into account the diverse characteristics of the target audience (such as education, language, and profession).
- Knowledge of professional practices such as project management and economic feasibility analysis.
- Awareness of entrepreneurship and innovation.
- Ability for independent and lifelong learning.
- Ability to adapt to new and emerging technologies.
- Lifelong learning ability that includes the capacity to think critically about technological changes.
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