Module Details

GEOLOGICAL, CLIMATIC RISKS AND ENVIRONMENTAL MONITORING

ST0083

Course
GEOLOGICAL, CLIMATIC RISKS AND ENVIRONMENTAL MONITORING
Code
ST0083
Academic Year
2025/2026
Curriculum Year
2024/2025
Degree Programme
DISASTER AND HEALTH CRISIS MANAGEMENT
Curriculum
000 - CORSO GENERICO
Course coordinator
Credits
3
Lecture Hours
24
Scientific Disciplinary Sector (SSD)
GEO/12 - Oceanography and Atmospheric Physics
Course Type
Single-subject learning activity
Course Delivery
OBB - Obbligatoria
Year
2
Teaching period
Secondo Semestre
Campus
VERCELLI
Teaching language
English
Course Contents
Climate change and its consequences. How climate is studied. How weather forecasts are made and who makes them. Mitigation of climate change, examples. Adaptation and resilience, examples. Air pollution, measurements and models
Reference Texts
Notes provided by the lecturer
Learning Outcomes
To provide the student with the basics of methods for studying climate and climate change from a physical point of view. To provide knowledge about air pollution and methodologies to study it.
Prerequisites
Basic concepts of mathematics and physics
Teaching Methods
Lectures, practical exercises, group work and interdisciplinary activity
Additional Information
This course is part of the integrated course on climate change with ECONOMIC POLICIES AND STRATEGIES FOR SUSTAINABILITY and CLIMATE AND HEALTH.
Students with physical disabilities, Learning Disabilities or Special Education Needs can request
specific services and tools via the Staff Sviluppo e Coordinamento Carriere e Servizi alle Studentesse
e agli Studenti, consulting the University webpage: https://www.uniupo.it/en/services/services-
students-physical-or-learning-disabilities
Students with disabilities, learning disabilities or special education needs, once they have contacted the University Staff, can refer to the tutor in charge of the course to define the examination
modalities, concerning academic aspects.
Assessment Methods
The exam is written and in-person, and consists of a quiz with multiple-choice questions. The final grade is expressed in thirtieths, and to pass the exam, a student must achieve at least 18/30. To pass the exam, students must demonstrate knowledge and understanding of at least the fundamental concepts of the subject. To achieve a passing grade, students must be familiar with the context of climate change and be able to demonstrate acquisition of the relevant basic notions of climate To achieve a high grade, students must demonstrate complete mastery of the topics covered.
Detailed Syllabus
Climate change, The anthropogenic effect, Climate action, The planetary boundary layer (PBL), Characteristics of the PBL, The wind in the PBL, The logarithmic profile of the mean wind, Statistical treatment of turbulence, The Turbulence Scales, Atmospheric stability, Definition of atmospheric stability, Other parameters for stability categories, Structure and day-night evolution of the PBL, The Convective Boundary Layer (CBL) Definition and characteristics, The Residual Layer (RL), The Stable Boundary Layer (SBL) Definition and characteristics, The formation of the SBL, The thermal inversion, The height of the SBL, The turbulence in the SBL, The behaviour of pollutants in the SBL, The Urban Boundary Layer (UBL), The Ekman layer, The dispersion of pollutants in the atmosphere, Air quality models.
Expected Learning Outcomes
The expected learning outcomes concern competences on environment and climate with a focus on the effects of climate change on the environment and its causes.
Last update:09-09-2026 00:14:31