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ZO5518: MARINE SPATIAL MANAGEMENT (2020-2021)

Last modified: 05 Aug 2021 13:04


Course Overview

You develop an appreciation of the level of understanding of the physical and biological oceanography, biodiversity, trophic interactions, species survival and reproduction issues required to implement spatially explicit, sustainable ecosystem-base management, conservation and effective marine spatial planning.

 

Lectures from marine ecologists, industry consultants and government scientists working in applied marine management provide insights into current issues.

 

Practical work provides training in use of R, Excel, data analysis and strengthens your written communication skills.

 

Group and individual working strengthen your critical thinking and problem-solving skills and support the development of strong oral communication.

Course Details

Study Type Postgraduate Level 5
Term Second Term Credit Points 15 credits (7.5 ECTS credits)
Campus Aberdeen Sustained Study No
Co-ordinators
  • Dr Beth Scott

What courses & programmes must have been taken before this course?

What other courses must be taken with this course?

None.

What courses cannot be taken with this course?

Are there a limited number of places available?

No

Course Description

Course Aims:
This course aims to enable students to appreciate the level of understanding of the physical oceanography, trophic interactions, species survival and reproduction that are required to implement spatially explicit, sustainable ecosystem-base management and effective marine spatial planning. This course will explore the driving forces underlying changes in the abundance and distribution of highly mobile marine species and consider how anthrophonic changes (such as addition of MPAs and large scale renewable energy developments) may affect their spatial population densities. The course will provide background on new policy drivers (Marine Strategy Framework Directive, MSFD) and the policy instruments (Good Environmental Status, GES) and through the work on assessments, will provide students with the type of experience with data understanding, , knowledge of management and research planning that many employers from researcher organizations through consultants and government establishments are looking for.

Key concepts covered:
• Marine Ecology: habitats, oceanographic processes, trophic interactions biodiversity spatial conservation options and climate variation
• Current Marine Spatial planning legislation and ecological design of marine protected areas (MPAs).
• Lectures will cover the theory and practice of assessing change in the size, status and distribution of important fish, seabird and marine mammal populations. Our focus will be on UK monitoring and research programmes, but we will draw comparison with similar initiatives in the EU and North America.
• Practical sessions/labs will include an introduction to the equipment, field and analytical techniques social skills used ine the above range of concepts and aims to build on key skills (eg. GIS and R) developed earlier in the degree programme.

Main Learning Outcomes:
Knowledge: by the end of the course students should be able to
• Appreciate the range of diverse marine habitats (landscapes) within the oceans
• Understand the important linkages between habitat and ecological (trophic interactions) and physical forcing (tides / climate)
• Be able to problem-solve in small groups, and integrate diverse data sources and modelling output to define the reasons for specific location and the design of marine protected areas and to determine what factors may drive changes in the abundance and distribution of mobile marine animals (fish, seabirds and mammals).
• Possess an understanding of the techniques available to monitor changes in the abundance, biodiversity and distribution of fish, marine mammals and seabirds.
• Understand the process by which the MSFD, GES and OSPAR policies will be taken up and what the current gaps are in the effectiveness of GES/OSPAR descriptors.
• Understand the range of impacts of marine offshore energy developments and how they can be assessed and mitigated.

Practical and transferable skills leading to greater employability
• Understanding of 1-D biological-physical coupled model
• Understanding of spatially explicit population models
• Understanding of current and European and UK legislation of MSFD and GES and for the creation of MPAs and Marine Spatial Planning process.
• Be familiar with the key UK and International organisations responsible for monitoring and managing fish, marine mammal and seabird populations.
• To build on key skills (eg. GIS and R) offered in the degree programme
• Know where to access data from fisheries, marine mammal and seabird monitoring programmes in UK & European waters, and display the quantitative skills required to evaluate the status of populations and GES descriptors in different regions.


Contact Teaching Time

Information on contact teaching time is available from the course guide.

Teaching Breakdown

More Information about Week Numbers


Details, including assessments, may be subject to change until 30 August 2024 for 1st term courses and 20 December 2024 for 2nd term courses.

Summative Assessments

Report: Individual

Assessment Type Summative Weighting 40
Assessment Weeks Feedback Weeks

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Learning Outcomes
Knowledge LevelThinking SkillOutcome
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Report: Group

Assessment Type Summative Weighting 30
Assessment Weeks Feedback Weeks

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Learning Outcomes
Knowledge LevelThinking SkillOutcome
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Poster Presentation

Assessment Type Summative Weighting 30
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Learning Outcomes
Knowledge LevelThinking SkillOutcome
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Formative Assessment

There are no assessments for this course.

Course Learning Outcomes

Knowledge LevelThinking SkillOutcome
FactualRememberILO’s for this course are available in the course guide.

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