Ocean models combine observations, science and forecasting outputs.

Supporting confident marine decisions

Forecasting that turns observations into practical decision support

The Marine Institute combines real-time observations with scientific models to support planning, incident response, performance and regulatory decisions in the marine environment.

What we provide

Services can be tailored to different sectors and decision contexts.

Ocean conditions

Sea level, currents, temperature and salinity forecasts and analysis.

Wave conditions

Wave height, period and direction information to support operations and planning.

Ecosystem and water quality

Nutrients, oxygen, plankton and related environmental indicators.

Shellfish growth forecasting

Model outputs to support shellfish growth and aquaculture planning.

Drift and dispersion

Forecasting for pollutants, marine litter and biological material.

Tailored services

Services for marine users

Bespoke modelling can support a wide range of marine sectors, operational needs and planning decisions.

Aquaculture

Site selection, carrying capacity, HAB forecasting and disease risk modelling.

Offshore operations

Weather-window and metocean information for safe and efficient operations.

Fisheries

Habitat mapping and long-term environmental analysis.

Pollution response

Drift and dispersion outputs for incident response and planning.

Storm surge forecasting

Forecasting to support preparedness and coastal risk awareness.

Renewable energy

Marine conditions and environmental insight for offshore renewable energy planning.

Why it matters

Forecasting services help users move from raw observations to practical decisions.

Reduce risk

Use forecast evidence to plan around marine conditions and operational constraints.

Improve planning

Support efficient use of vessels, sites, infrastructure and response resources.

Meet requirements

Use scientific evidence to support regulatory and environmental assessments.

Respond to incidents

Apply drift, dispersion and condition forecasts during time-critical events.