Abstract
The growth of the marine renewable energy sector requires the potential effects on marine wildlife to be considered carefully. For this purpose, utilization distributions derived from animal-borne biologging and telemetry data provide accurate information on individual space use. The degree of spatial overlap between potentially vulnerable wildlife such as seabirds and development areas can subsequently be quantified and incorporated into impact assessments and siting decisions. While rich in information, processing and analyses of animal-borne tracking data are often not trivial. There is therefore a need for straightforward and reproducible workflows for this technique to be useful to marine renewables stakeholders. The aim of this study was to develop an analysis workflow to extract utilization distributions from animal-borne biologging and telemetry data explicitly for use in assessment of animal spatial overlap with marine renewable energy development areas. We applied the method to European shags (Phalacrocorax aristotelis) in relation to tidal stream turbines. While shag occurrence in the tidal development area was high (99.4%), there was no overlap (0.14%) with the smaller tidal lease sites within the development area. The method can be applied to any animal-borne bio-tracking datasets and is relevant to stakeholders aiming to quantify environmental effects of marine renewables.
Funder
Bryden Centre
European Regional Development Fund
Subject
Ocean Engineering,Water Science and Technology,Civil and Structural Engineering
Reference125 articles.
1. Climate Change 2014: Mitigation of Climate Change,2014
2. The European Parliament and the Council of the European Union Directive 2009/ 28/EC of the European parliament and of the council of 23 April on the promotion of the use of energy from renewable sources and amending and subsequently repealing Directives 2001/77/EC and 2003/30/EC;Off. J. Eur. Union I.,2009
3. Risk Retirement—Decreasing Uncertainty and Informing Consenting Processes for Marine Renewable Energy Development
4. Geospatial Technologies for Siting Coastal and Marine Renewable Infrastructures;Green;Geoinform. Mar. Coast. Manag.,2016
5. Potential Environmental Effects of Marine Renewable Energy Development—The State of the Science
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