oceanographer
Role lens
Dive into a career exploring the mysteries of our oceans! As an oceanographer, you’ll contribute to vital research impacting climate change, marine ecosystems, and resource management, playing a crucial role in understanding and protecting our planet’s largest habitat.
Oceanographers are scientists dedicated to studying the sea and oceans. Your daily work might involve fieldwork collecting data from research vessels, analyzing samples in laboratories, or developing computer models to simulate ocean processes. The specific tasks depend on your specialization – whether you’re a physical oceanographer studying currents and waves, a chemical oceanographer analyzing seawater composition, or a geological oceanographer investigating the ocean floor. This career band (5) focuses on leadership and strategic contributions within oceanographic research.
- • Conducting research on various aspects of the ocean, including physical, chemical, and geological processes.
- • Collecting and analyzing data using specialized equipment and techniques.
- • Developing and utilizing computer models to simulate ocean behavior and predict future changes.
Where this occupation is in demand
Reported labour shortages and surpluses, by year. Published for occupation groups, not for individual job titles.
Deeper colour: reported the same way in more consecutive years.
Figures cover Science and engineering professionals — 274 jobs including this one.
In shortage: Belgium, Denmark.
Longest-running shortage: Belgium, 3 years.
Select a place on the map to see its figures.
About this source›
Source: ELA/EURES labour shortages and surpluses. Readings are published at occupation-group level, and cover Europe. Editions differ in annex layout and country coverage, so a change between years does not always mean the labour market changed. Countries in grey were not reported, which is not the same as being in balance.
Explore More
Find your career path and explore the science behind our recommendations.
Could oceanographer fit you?
Answer three quick questions. This is not a full assessment — it is a teaser to help you decide whether to compare your profile.
Do you enjoy tasks that require Integrity?
Do you enjoy tasks that require Analytical Thinking?
Do you enjoy tasks that require Attention to Detail?
Future Outlook for oceanographer
The outlook for oceanographer reflects a balanced mix of automation exposure and durable, human-led work.
How are these scores calculated?
The Resilience Score (0–100) estimates how structurally protected this occupation is from automation and AI disruption, based on task-level analysis. Higher scores mean more human-judgment-intensive tasks. AI Exposure shows the estimated percentage of task hours that current AI capabilities could affect. These are model-derived structural indicators, not predictions about individual job security.
How could oceanographer change as AI adoption grows?
This role is likely to change gradually, with AI supporting selected tasks rather than replacing the whole occupation.
Illustrative scenario based on task automatability — not a forecast. Values are rounded the further ahead you look.
How could oceanographer change as AI adoption grows?
This role is likely to change gradually, with AI supporting selected tasks rather than replacing the whole occupation.
Illustrative scenario based on task automatability — not a forecast. Values are rounded the further ahead you look.
How AI may change this role
Deterministic, model-based interpretation of current role signals — not a guarantee of replacement.
What still depends on people
- interact professionally in research and professional environments
- evaluate research activities
- manage intellectual property rights
Where AI may become a co-pilot
- apply statistical analysis techniques
- manage open publications
- demonstrate disciplinary expertise
Tasks most exposed to automation
- gather experimental data
- synthesise information
- apply for research funding
Vital Signs & AI Vectors
AI Exposure Vectors
0-100%Exposure to AI-assisted analysis, pattern recognition, and predictive modelling tasks
Exposure to content generation, creative augmentation, and large language model tools
Exposure to physical automation, robotics, and sensor-driven task displacement
Exposure to workflow automation, decision-support software, and process digitisation
Technical Details
NexFuture v3.0 estimates automation exposure natively from ESCO essential-skill groups, weighted by skill mass and calibrated against expert anchors. Scores are probabilistic estimates, not guarantees. See the NexFuture Methodology White Paper for full details.
Measures automation exposure. It does not measure pay, demand, or how many jobs exist near you.
What people in this role usually do
Energy & Natural Resources
A typical day as a oceanographer
09 09:00 · Morning apply for research funding
10 10:30 · Mid-morning apply research ethics and scientific integrity principles in research activities
12 12:00 · Midday manage intellectual property rights
14 14:00 · Afternoon operate open source software
15 15:30 · Late afternoon apply scientific methods
17 17:00 · Wrap-up apply statistical analysis techniques
Task order is illustrative. Individual days vary.
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cartography
The study of interpreting the elements depicted in maps, the measures and technical specifications.
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coastal management
The process of reaching and maintaining an equilibrium between natural phaenomena and human activities in coastal areas.
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geographic information systems
The tools involved in geographical mapping and positioning, such as GPS (global positioning systems), GIS (geographical information systems), and RS (remote sensing).
- geology
- mathematics
- oceanography
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manage findable accessible interoperable and reusable data
Produce, describe, store, preserve and (re) use scientific data based on FAIR (Findable, Accessible, Interoperable, and Reusable) principles, making data as open as possible, and as closed as necessary.
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perform scientific research
Gain, correct or improve knowledge about phenomena by using scientific methods and techniques, based on empirical or measurable observations.
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apply scientific methods
Apply scientific methods and techniques to investigate phenomena, by acquiring new knowledge or correcting and integrating previous knowledge.
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apply research ethics and scientific integrity principles in research activities
Apply fundamental ethical principles and legislation to scientific research, including issues of research integrity. Perform, review, or report research avoiding misconducts such as fabrication, falsification, and plagiarism.
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promote open innovation in research
Apply techniques, models, methods and strategies which contribute to the promotion of steps towards innovation through collaboration with people and organizations outside the organisation.
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integrate gender dimension in research
Take into account in the whole research process the biological characteristics and the evolving social and cultural features of women and men (gender).
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draft scientific or academic papers and technical documentation
Draft and edit scientific, academic or technical texts on different subjects.
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disseminate results to the scientific community
Publicly disclose scientific results by any appropriate means, including conferences, workshops, colloquia and scientific publications.
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publish academic research
Conduct academic research, in universities and research institutions, or on a personal account, publish it in books or academic journals with the aim of contributing to a field of expertise and achieving personal academic accreditation.
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write scientific publications
Present the hypothesis, findings, and conclusions of your scientific research in your field of expertise in a professional publication.
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gather experimental data
Collect data resulting from the application of scientific methods such as test methods, experimental design or measurements.
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synthesise information
Critically read, interpret, and summarise new and complex information from diverse sources.
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use measurement instruments
Use different measurement instruments depending on the property to be measured. Utilise various instruments to measure length, area, volume, speed, energy, force, and others.
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operate scientific measuring equipment
Operate devices, machinery, and equipment designed for scientific measurement. Scientific equipment consists of specialised measuring instruments refined to facilitate the acquisition of data.
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manage research data
Produce and analyse scientific data originating from qualitative and quantitative research methods. Store and maintain the data in research databases. Support the re-use of scientific data and be familiar with open data management principles.
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interact professionally in research and professional environments
Show consideration to others as well as collegiality. Listen, give and receive feedback and respond perceptively to others, also involving staff supervision and leadership in a professional setting.
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operate open source software
Operate Open Source software, knowing the main Open Source models, licensing schemes, and the coding practices commonly adopted in the production of Open Source software.
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speak different languages
Master foreign languages to be able to communicate in one or more foreign languages.
Skill DNA
Work personality traits and values that define this role
See whether this role fits your Career DNA
Take the free Career DNA assessment to see how oceanographer aligns with your interests, work style, and future path. In less than 10 minutes, you will get a personalized fit signal and a roadmap for what to do next.
Growth Pathways & Similar Roles
Explore typical career progression paths, adjacent skills, and similar roles to plan your next transition.
Where does oceanographer fit?
Similarity scores based on skill overlap from ESCO data.
Frequently asked questions
- What kind of education is required to become an oceanographer?
- Typically, a bachelor’s degree in oceanography, marine science, or a related field is a starting point. However, advanced research and leadership roles, fitting this Career Band 5 level, generally require a master’s degree or a doctorate (PhD).
- What are the different specializations within oceanography?
- Oceanography is a broad field with several specializations. Common areas include physical oceanography (waves, tides, currents), chemical oceanography (seawater chemistry), geological oceanography (ocean floor and sediments), and biological oceanography (marine life).
- What are the typical work conditions for an oceanographer?
- Work conditions vary. Some oceanographers spend significant time at sea on research vessels, while others work primarily in laboratories or offices. Fieldwork can involve challenging weather conditions and remote locations. This occupation is mostly employment-based.
- Oceanographer — is there a shortage in Europe?
- No. In the 2025 ELA/EURES edition, a surplus was reported in 6 of the 8 European countries that assessed this occupation group: Austria, Czechia, Germany, Greece and 2 more. 2 countries reported a shortage. These assessments are published per occupation group rather than per job title.
- Oceanographer — what does it pay in the United States?
- $99,240 a year at the median, as of 2025-05. State medians run from $61,810 to $145,220. Source: US Bureau of Labor Statistics. This is a United States figure and not a projection for Europe.