Modelling marine connectivity in the Great Barrier Reef and exploring its ecological implications

Thomas, Christopher
(2015)

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Authors
  • Thomas, ChristopherUCLouvain
    author
Supervisors
Hanert, Emmanuel
;
Deleersnijder, Eric
Abstract
The dispersal of coral larvae away from their natal habitats is an important process for coral reef ecosystems, but remains poorly understood and hard to gauge. This thesis presents a spatially explicit numerical modelling approach to simulate larval dispersal in Australia's Great Barrier Reef (GBR), and in doing so to estimate connectivity between the thousands of reefs that comprise it. A high resolution, finite element ocean model, SLIM, is used to build a biophysical model of larval dispersal capable of estimating larval exchange between reefs in large sections of the the GBR. Tools from network science are employed to investigate the community structure of the GBR's connectivity network, and these tools are used to reveal the presence of clusters of highly inter-connected reefs. Subsequently, the model is used to estimate the extent of connectivity between reefs of different morphologies and depths in the GBR. Finally, the possible impacts of climate change on connectivity in the GBR are assessed, and estimates are made of the likely changes to coral larval dispersal patterns over the coming century.
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Citations

Thomas, C. (2015). Modelling marine connectivity in the Great Barrier Reef and exploring its ecological implications. https://hdl.handle.net/2078.5/187931