Advanced Digital Geomorphological Mapping Techniques

Course Information
TitleΠροηγμένες Τεχνικές Ψηφιακής Γεωμορφολογικής Χαρτογράφησης / Advanced Digital Geomorphological Mapping Techniques
CodeEPGO103
FacultySciences
SchoolGeology
Cycle / Level2nd / Postgraduate
Teaching PeriodWinter/Spring
CoordinatorChristos Pennos
CommonNo
StatusActive
Course ID600023248

Class Information
Academic Year2026 – 2027
Class PeriodWinter
Instructors from Other Categories
Weekly Hours3
Total Hours39
Class ID
600304326
Course Type 2021
Skills Development
Mode of Delivery
  • Face to face
Digital Course Content
Erasmus
The course is also offered to exchange programme students.
Language of Instruction
  • Greek (Instruction, Examination)
  • English (Instruction, Examination)
Learning Outcomes
-Understand the fundamental principles and concepts of digital geomorphological mapping. -Utilize various software and tools to apply advanced geomorphological mapping techniques. -Interpret the results of digital mapping to comprehend the formation and evolution of landforms. -Evaluate the reliability of contemporary technologies for constructing geomorphological maps. -Communicate research findings effectively through written and oral presentations.
General Competences
  • Apply knowledge in practice
  • Retrieve, analyse and synthesise data and information, with the use of necessary technologies
  • Work autonomously
  • Work in an interdisciplinary team
Course Content (Syllabus)
Introduction to Digital Geomorphological Mapping: -Basic principles and concepts -Historical development -Symbolism - Legends -Examples of geomorphological maps -Applications Digital Mapping Data: -Types of data (e.g., lidar, aerial photographs, satellite images, drones) -Data sources -Data processing and analysis Digital Mapping Software and Tools: -Introduction to popular software (e.g., ArcGIS, QGIS, Agisoft Metashape) -Use of tools for digital mapping (e.g., creation of digital elevation models, extraction of geomorphological features) Advanced Techniques in Digital Mapping: -Three-dimensional visualization of relief -Modeling for digital geomorphological mapping Interpretation and Communication of Results: -Data analysis and interpretation of results -Creation of reports and presentations -Communication of results to scientific and non-scientific audiences
Keywords
Digital geomorphological mapping, GIS, Digital data, Geomorphological analysis, Digital mapping techniques
Educational Material Types
  • Notes
  • Slide presentations
Use of Information and Communication Technologies
Use of ICT
  • Use of ICT in Course Teaching
  • Use of ICT in Laboratory Teaching
  • Use of ICT in Communication with Students
  • Use of ICT in Student Assessment
Description
1) All class material is available in electronic form to all students through the course web page, as well within the E-Learning platforms of the Aristotle Univ. Thessaloniki 2) The teacher communicates with students through email and Facebook 3) The teacher/class evaluation is performed by the students through the Quality Assurance Unit (MO.DI.P.)
Course Organization
ActivitiesWorkloadECTSIndividualTeamworkErasmus
Lectures20✓✓
Laboratory Work20✓✓✓
Reading Assigment15✓✓
Project45✓✓✓
Total100
Student Assessment
Description
Oral examination in the laboratory on topics related on technical skills required for laboratory analysis practice, in combination to a given laboratory project and a written report. It does not require written examination, therefore is already adapted for students with learning disabilities.
Student Assessment methods
  • Oral Exams (Formative, Summative)
Bibliography
Additional bibliography for study
- Προτεινόμενη Βιβλιογραφία: - Επιπρόσθετη βιβλιογραφία για μελέτη: •Smith, M. J. (2006). Geomorphological Mapping: a professional handbook of techniques and applications. Academic Press. •Goudie, A. S., & Entwistle, D. C. (2004). Geomorphological mapping: methods and applications. Elsevier. •Dent, D., & Young, A. (1981). The measurement of catchment area by remote sensing techniques. International Journal of Remote Sensing, 2(3), 219-231. •Woodget, J., Carbonneau, P. E., & Visser, F. (2015). Remote sensing and geomorphological mapping: A review. Geomorphology, 248, 184-208. •Harmon, R. S. (1992). The application of geographical information systems (GIS) in geomorphology. Progress in Physical Geography, 16(3), 326-341. •Howarth, P. J., Wadham, J. L., et al. (2013). Glacial geomorphological mapping: A review of approaches and frameworks. Earth-Science Reviews, 125, 59-84. •Moore, J. M., et al. (2019). Mapping geomorphic diversity and stratigraphic complexity in the Martian northern plains with Mars Reconnaissance Orbiter Context Camera images. Geomorphology, 332, 111-123. •Gutiérrez, J., & Poljak, B. (2010). Karst geomorphology: Mapping, assessment, and conservation. Earth-Science Reviews, 102(1-2), 1-18.
Last Update
16-10-2025