Research & Development

Project

IMPALA

Impacts on micro-plankton of artificial upwelling inputs

Context

The principle of ocean thermal energy conversion is based on the use of the temperature difference between the surface and the depths of the ocean to operate a thermal machine. Production is optimal when the temperature difference becomes greater than 20°C, which is the case in tropical areas. The subsurface supply of bottom water of very different temperature and chemical composition, as well as the cooling of the surface water at the exchanger outlet, could locally induce a change in the functioning of the planktonic ecosystem equivalent to the implementation of artificial upwelling.

IMPALA Project

Objective

  • To study the potential impacts of deep-sea subsurface discharges from an ocean thermal energy conversion plant.

Scientific content

Characterisation of the initial state in the Bellefontaine area (Martinique), before the operation of the OTEC pilot plant.

Simulation of the coupled physical/biogeochemical and ecosystem dynamics during the operation phase of the OTEC plant.

Characterisation (composition and productivity) of the planktonic community likely to appear in different mixing scenarios determined from the simulation previously carried out.

Integration of data to validate the coupled physical biogeochemical model to assess the impact of the OEC on biological productivity, environmental conditions and material flows.

Identification of physical and chemical factors playing a key role on the physiology of biogeochemically important species isolated from the environment.

Resources generated

The IMPALA project has helped to clarify the
biogeochemical processes at work in an artificial upwelling associated with the operation of a tidal power station in an oligotrophic environment. It has improved our understanding of tropical environments and their biogeochemical functioning, and has enabled this knowledge to be applied to the study of the impacts of future tidal power station discharges into the sea.

Partners

This project was led by Université de Bretagne occidentale and France Energies Marines.

Logo Université de Bretagne Occidentale
Logo France Energies Marines
Logo LEMAR
Logo LEGOS
Logo CNRS
Logo DCNS

Funding

This project received funding from France Energies Marines and its members and partners.

Accreditation

This project was certified by the maritime clusters Pôle Mer Bretagne Atlantique and le Pôle Méditerranée. 

Logo Pôle Mer Bretagne Atlantique
Logo Pôle Mer Méditerranée

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