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Basin Analysis

Code: 101065
Credits: 6
2026/2027
Degree programme Type Course
Geology OP 3

Contact lecturer

Name :
Miquel Poyatos More
Email :
miquel.poyatos@uab.cat

Teaching staff

Sara Tomas Lafaja

Group languages

You can consult this information at the end of the document.

Prerequisites

It is a subject with a marked integrating character and synthesis of all the disciplines involved in sedimentary geology, emphasizing the stratigraphic interpretation of the subsurface. It is aimed at understanding the formation mechanisms of different types of sedimentary basins, as well as the characterization of their infill. It is therefore highly applicable to projects with economic objectives, mainly resource exploration (energy or water), as well as mitigation of the effects of climate change (identification of possible CO2 storage in old reservoirs or saline aquifers).

It is assumed that students have acquired the basic knowledge of various branches of fundamental sedimentary geology in previous courses, and mainly stratigraphy, sedimentology and tectonics.

Objectives

This course aims for students to gain knowledge of the dynamics of sedimentary basin formation and their infill, and to know how to organize their deposits from a sequential stratigraphic point of view. During the course, practical exercises will be carried out to value the integration of different methods of study of surface and subsurface geology. It is therefore a subject in which students are faced with techniques for obtaining data of various types and their geological interpretation. These data and interpretations will be aimed at understanding their application and potential to achieve economic, protection/conservation, or climate change mitigation objectives.

Learning outcomes

  • CM06 (Develop studies on landscape transformation in the context of climate change.) Develop studies on landscape transformation in the context of climate change.
  • CM07 (Evaluate areas with geological risk due to dense transport, through the analysis of maps and terrain data, justifying their assessments with appropriate technical criteria.) Evaluate areas with geological risk due to dense transport, through the analysis of maps and terrain data, justifying their assessments with appropriate technical criteria.
  • KM07 (Explain the processes involved in the formation of sedimentary rocks.) Explain the processes involved in the formation of sedimentary rocks.
  • KM09 (Describe the main sedimentary facies and the processes and environments where they are generated.) Describe the main sedimentary facies and the processes and environments where they are generated.
  • SM06 (Apply the basic principles of stratigraphy in the historical evolution of a sedimentary basin.) Apply the basic principles of stratigraphy in the historical evolution of a sedimentary basin.
  • SM07 (Use specific cartography instruments and techniques to interpret stratigraphic sequences.) Use specific cartography instruments and techniques to interpret stratigraphic sequences.

Contents

Theory program

1. Introduction

2. Type of sedimentary basins:

  • 2.1. Extensional basins
  • 2.2. Compressional basins
  • 2.3. Strike-slip basins
  • 2.4. Basins associated with mobile substrates (salt and clay)

3. Stratigraphy of sedimentary basins:

  • 3.1. Sequence stratigraphy: processes and controls
  • 3.2. Seismic stratigraphy
  • 3.3. Sequence stratigraphy of carbonate systems
  • 3.4. Sequence stratigraphy of clastic systems
  • 3.5. Clinoforms and trajectory analysis

4. Sedimentary routing and source-to-sink systems

5. Subsidence and thermal history of sedimentary basins

6. Application of basin analysis in the exploration, production and storage of energy and water resources


Program of practical exercises

1. Introduction to seismic reflection

2. Seismic extensional basin

3. Modern analogue extensional basin (Death Valley)

4. Seismic compressive basin

5. Modern analogue compressive basin (Zagros)

6. Seismic basin of mobile substrate

7. Wheeler diagram (chronostratigraphic)

8. Seismic stratigraphy

9. Sequence stratigraphy of clastic systems

10. Sequence stratigraphy of carbonate systems

11. Clinoform trajectory analysis

Presentations autonomous work on (1) sequence stratigraphy of a depositional environment or (2) example of sedimentary basin

Learning activities and methodology

Title Hours ECTS Learning outcomes
Study of the theory, completion of practical exercises and report on sequence stratigraphy or basin example 74 2.96
Original synthesis work on a type of basin and mentoring 16 0.64
Theoretical classes and practical exercises 56 2.24

1. Managed activities

Theory sessions

This course consists of a theoretical part, with interactive classes in which the proposed syllabus will be explained and discussed, and guidelines will be given so that students can complete learning independently. The students will have the theory agenda in the form of presentations (in .pdf) and a bibliography recommended by the teaching staff on the Virtual Campus.

Laboratory practices and seminars

They will basically consist of carrying out exercises related to theory classes, and mostly focused on practical work on seismic reflection or satellite images. The exercises will be assisted by the teaching staff, who will solve problems of a general nature that will be discussed among all, as well as specific problems. The basic material is from real cases and the exercises must be delivered at the end of the practice or through the Virtual Campus at the end of the week where each exercise is worked on.

 

2. Supervised activities

Original work of synthesis on (1) sequence stratigraphy of a type of depositional environment or (2) an example of sedimentary basin

2a) Elaboration in groups of two students of an original work of synthesis on (1) sequence stratigraphy of a type of depositional environment or (2) a real example of a sedimentary basin. There will be a series of topics proposed by the teaching staff and they will be decided by draw.

Each work must deliver a broad summary, with the key figures (maximum 10 pages, including figures), which must be delivered in a .pdf file, in the space provided on the Virtual Campus, as well as the slides of the oral presentation that each group must perform during a time not exceeding 15'. Summaries and presentations should be studied by students as they can lead to exam questions.

2b) Group and individual tutorials
They are aimed at supporting the previous training activities and will be carried out in theory or practice hours, with prior announcement by the teacher and acceptance of the date by the students. Additionally, individualized tutoring has been provided in the teacher's office according to the schedule and order that will be indicated on the first day of class.

 

3. Autonomous activities

This section includes the study, the preparation of the papers and the study of the bibliography of recommended articles.

Annotation: within the schedule set by the centre or degree programme, 15 minutes of one class will be reserved for students to evaluate their lecturers and their courses or modules through questionnaires.

Assessment

Continuous assessment activities

Title Weight Hours ECTS Learning outcomes
Individual written tests 80 4 0.16 CM06, CM07, KM07, KM09, SM06, SM07
Practical exercises dossier 10 0 0 SM06
Original synthesis work on sequence stratigraphy of a depositional environment or an example of sedimentary basin and mentoring 10 0 0 SM06

The assessment will be carried out on a continuous basis, and will be based on a minimum of 2 written partial tests, which constitute 80% of the final grade.


The original synthesis work on the application of sequence stratigraphy in a particular type of depositional environment will be also evaluated (accounting 10% of the final mark); the dossier with the practical exercises will also be evaluated and should contain the overall exercises (accounting 10% of the final mark). All deliveries must be made in the corresponding available space in the Virtual Campus and strictly following instructions (index where appropriate, maximum number of Mb of the document, appointment of the documents, etc.).

In the partial written tests, the data will be determined by the teacher in agreement with the students. The questions may include practical aspects although what is mainly evaluated is the achievement of the theoretical aspects, and in the cases of include practical questions, the degree for solution of problems.


In the work on the application of sequence stratigraphy in a particular type of depositional environment, the scientific content, the ordered workflow, the writing and presentation will be evalued, as well as the correct treatment of stratigraphic and sedimentological data from bibliographic sources to produce new synthesis data and documents. A summary of the work, of a maximum of 5 pages including figures, will be deposited in the corresponding Virtual Campus' space for delivery, as well as the ppt of the oral presentation that each student will have to do according to a maximum time no higher than 10'. This activity assigns a value of 10% of the final mark.

The dossier of practical exercises will also be evaluated with all the finished practices, ordered chronologically, and this dossier must clearly reflect personal work. The verification of a copy of an exercise implies to fail the subject. This activity assigns you a value of 10% of the final mark.


Its is necessary to remark that the subject contemplates a degree of obligatory attendance to the sessions of practical exercises.


The directed activities mean a substantial part of the learning activities of the subject. In order for student to be evaluated by continuous assessment, they must attend at least 80% of the practical sessions with delivery of the dossier within the fixed time period and before deadline (day and hour determined by agreement between the teacher and the students).


Recovery tests

Students not passing the subject through continuous assessment may have a final oportunity. The subject of examination in the final exam is the full content of the course. In case of not having submitted the final dossier of the practical exercises and/or the work on a type of basin, the student who wants a recovery exam will have to deliver these works at the time of the final test for recovery. For the final note, the same percentages are maintained than in the case of continuous evaluation (80% for the written test, 10% for the seminar of sequence stratigraphy and 10% corresponding to the practice dossier). The note of this last test fully replaces the note previously obtained by continuous evaluation.

Bibliography

- Allen, P. A., & Allen, J. R. (2013). Basin analysis: Principles and application to petroleum play assessment. John Wiley & Sons.

- Catuneanu, O. (2022). Principles of sequence stratigraphy. Newnes.

- Coe, A. L. (Ed.). (2003). The sedimentary record of sea-level change. Cambridge University Press.

- Emery, D., & Myers, K. (2009). Sequence stratigraphy. John Wiley & Sons.

- Miall, A. D. (2013). Principles of sedimentary basin analysis. Springer Science & Business Media.

- Schlager, W. (2005). Carbonate sedimentology and sequence stratigraphy (No. 8). SEPM Soc for Sed Geology.

Software

- Google Earth

- MS Word

- MS PowerPoint

Course groups and languages

The information provided is provisional until November 30. After this date, you will be able to consult the language of each group through this link. To access the information, you will need to enter the course CODE

Type of teaching Group Language Semester Shift
(TE) Theory 1 Catalan second semester morning-mixed
(PLAB) Practical laboratories 1 Catalan second semester afternoon