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This course introduces basic concepts and methods of structural geology to enable cross- disciplinary exchange of ideas and experience. It provides the required input to help you understand questions crucial to the surface and subsurface structures formation and brittle deformation: Why and how these structures have formed over geologic time? What are the factors that controlled their formation and deformation?
What are the impacts of such structures on human activities in civil engineering, mining and oil and gas exploration, production and development? Designed for you, if you are A geoscientist or engineer with little or basic structural geology experience.
How we build your confidence Theoretical concepts illustrated during individual sessions are accompanied by working on practical problems to ensure a thorough understanding of the principles and procedures Hands-on experience by solving classical structural geology tasks on notebook. Topics Introduction to the physics of Earth crust Classification of folds and fractures Fracture types and attributes Fractures and the 3D state of stress Andersonian classification of faults and stress regimes Fundamental rock mechanics - Uniaxial and Triaxial tests, mechanical and elastic properties and other concepts Tectonic regimes and associated structures Implications and case studies.
For more information please click here. To deactivate tracking via Google Analytics: Click here to opt-out.Up to date aspects of structural geology from micro to macro scale. To give insight and understanding of applied aspects of structural geology, including digital techniques of integrated structural data analysis, visualization and interpretation. The aim of the course is to give advanced knowledge in specific topics related to structural geology.
Knowledge: Students will acquire knowledge about up to date aspects of theoretical and experimental structural geology from micro to macro scale. These include: Fabric development mechanisms and rheological properties of rocks, deformation regimes, deformation maps, state of stress in the lithosphere; techniques of experimental rock deformation and flow laws; fault mechanics; brittle and ductile structures analysis and characterization; paleo-stress analysis; direct dating of deformation.
The course will also highlight applied aspects of structural geology, including digital techniques of integrated structural data analysis, visualization and interpretation. Skills: - Students will develop skills in the broad field of structural geology and will learn to examine structures and deformation processes at all scales in a holistic fashion, by integrating their knowledge in different geological fields.
Lectures, practicals and laboratory work, compulsory fieldwork 10 days, including weekend.
The course is evaluated by a reference group. Portfolio assessment is the basis for the grade in the course. For a re-take of an examination, all assessments during the course must be re-taken.
Passing the field course is valid for two years from the first try. Exam registration requires that class registration is approved in the same semester. Compulsory activities from previous semester may be approved by the department.
Fossen: Structural Geology, 1st or 2nd Edition selected parts. Selected parts of other textbooks, articles and handouts. Term no. Location: Trondheim.
Department with academic responsibility Department of Geoscience and Petroleum. For more information regarding registration for examination and examination procedures, see "Innsida - Exams". Course content Up to date aspects of structural geology from micro to macro scale.
Learning outcome The aim of the course is to give advanced knowledge in specific topics related to structural geology. Learning methods and activities Lectures, practicals and laboratory work, compulsory fieldwork 10 days, including weekend. Compulsory assignments Field work. Further on evaluation Portfolio assessment is the basis for the grade in the course.
Specific conditions Limited admission to classes. Recommended previous knowledge Some previous field work and acquaintance with microscopy. Course materials Fossen: Structural Geology, 1st or 2nd Edition selected parts. Engineering Geology Geology Technological subjects.
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ACS Distance Education disclaims liability or responsibility for orders or complaints arising from such errors, including but not limited to : pricing, fees and course requirements. ACS Distance Education reserves the right to decline orders arising from such errors. Geology Learn about geology - rocks, minerals, structural geology, geobiology, geophysics, geochemistry, groundwater hydrology, and applications including geological surveying.
I am studying from All prices in Australian Dollars. Description Meet the Academics What's Next? Lesson Structure There are 9 lessons in this course: Introduction Types of Rocks Structural Geology Types of Minerals Geobiology Geophysics Geochemistry Groundwater Hydrology Applied Geology Each lesson culminates in an assignment which is submitted to the school, marked by the school's tutors and returned to you with any relevant suggestions, comments, and if necessary, extra reading.
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Geology online courses and MOOCs - student reviews
Provided by Camborne School of Mines Trust. Find out more about contextual offers. View EU and international equivalences. The modules we outline here provide examples of what you can expect to learn on this degree course based on recent academic teaching.Course Tracker. Home Subjects Geology. Geology online courses and MOOCs - student reviews. Filter by Rating 1 2 3 4 5 All. Mark's School St.
Norbert College St. University St. Reservoir Geomechanics. This interdisciplinary course encompasses the fields of rock mechanics, structural geology, earthquake seismology and petroleum engineering to address a wide range of geomechanical problems that ar Free TBA. Embed Course. This course was a great experience, I would recommend this to my colleagues, A good balance of covered material and homework a final would Was this review helpful?
Yes 1. The main objective of this cross-disciplinary course is to understand the historical development and the current status of ideas and models, to present and question the constraints from the differe Free On demand. Field Geology I. The course provides students with 1 an introduction to the geologic history of western North America, with particular emphasis on our field camp location and 2 an introduction to both digital a Join our mailing list for course updates, discounts and more.
Enter your email address here. Groundwater Hydrology. This course covers fundamentals of subsurface flow and transport, emphasizing the role of groundwater in the hydrologic cycle, the relation of groundwater flow to geologic structure, and the manage Phase Transitions in the Earth's Interior. This course discusses phase transitions in Earth's interior. Phase transitions in Earth materials at high pressures and temperatures cause the seismic discontinuities and affect the convections in Surface Processes and Landscape Evolution.
The course offers an introduction to quantitative analysis of geomorphic processes, and examines the interaction of climate, tectonics, and surface processes in the sculpting of Earth's surface.
Introduction to Seismology. This graduate level course presents a basic study in seismology and the utilization of seismic waves for the study of Earth's interior.More background information. Download the course program.
Applied Structural Geology in Hydrocarbon Systems Analysis Overview For this course the participants are expected to have a working knowledge in the field of exploration and production geology. Basic structural geology knowledge is an advantage. Basic structural interpretation skills will be discussed for each tectonic regime. This practically oriented course is intended for geologists, geophysisists, reservoir engineers and petrophysisists working in exploration and production of hydrocarbons.
Having followed the course, the participants will be able to do geomechanically correct structural interpretations, understand natural fracture networks, including the formation of conduits open fractures and seals sealing fractures and faults in different tectonic regimes. The participants will be introduced to the main elements of petroleum systems and geo-mechanics, which will serve as a basis for an integrated geological approach.
Examples can never give a complete picture, whereas a generic geo-mechanical approach is universally applicable. However, case histories still provide good illustration material that helps in understanding the mechanics and will also be used used extensively.
A portable sandbox will be used for demonstration analogue modeling of the main tectonic regimes. The course schedule is tentative and flexible, as interaction and discussion is given a high priority in this workshop.Google drive download not possible at this time
Theory, examples, analogue models, structural geometries and fault properties that are characteristic for extensional tectonic regimes will be treated during the morning session of day Structural reservoir types and fault sealing mechanisms will be part of the material. Strike-slip tectonics Theory, case history, analogue models, seismic interpretation. Structural geometries and fault properties that are characteristic for strike-slip tectonic regimes will be treated during the afternoon of day Structural reservoir types, in-situ stress analysis and fault sealing mechanisms also in sand-sand juxtapositions will be part of the material.
Theory, case histories, analogue models, seismic interpretation exercise. Structural geometries and fault properties that are characteristic for compressional tectonic regimes will be treated during the morning of day During the afternoon session the mechanics of fault reactivation inversion tectonics will be discussed.
Pore pressure prediction and overpressure generation mechanisms. Day 4: Diapirs and associated structures. Fault sealing and top seal integrity. Aspects of salt-tectonics will be discussed during the morning of day Examples from the North Sea and the Gulf of Mexico, including an interpretation exercise. The afternoon session will be used to discuss fault sealing mechanisms and approaches to evaluate top seal integrity in exploration and in production scenarios.
Day 5: Fracture systems: fracture mechanics, reservoir examples and outcrop examples.
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