Minimizing wildlife impacts for offshore wind energy development: Winning tradeoffs for seabirds in space and cetaceans in time

被引:22
作者
Best, Benjamin D. [1 ,2 ]
Halpin, Patrick N. [2 ]
机构
[1] EcoQuants LLC, Santa Barbara, CA 93103 USA
[2] Duke Univ, Nicholas Sch Environm, Marine Geospatial Ecol Lab, Durham, NC 27708 USA
关键词
ECOSYSTEM SERVICES; HARBOR PORPOISES; MARINE; FARMS; VULNERABILITY; CONSTRUCTION; DISTURBANCE; BIRDS;
D O I
10.1371/journal.pone.0215722
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Although offshore wind energy development (OWED) offers a much-needed renewable energy alternative to fossil fuels, holistic and effective methods for evaluating environmental impacts on wildlife in both space and time have been lacking. The lengthy environmental compliance process, estimated to incur a 7-10 year permitting timeline [1], has been identified as a significant impediment to offshore energy development in U.S. waters. During operation, seabirds can collide and be displaced by turbines. During episodic pre-operation phases, cetaceans are most heavily impacted acoustically by pile driving (and similarly seismic air gun surveys for oil and gas exploration). The varying nature of impacts in space and time leads us to conclude that sites should be selected in space to minimize long-term operational impacts on seabirds, and timing of surveying and construction activities to be conducted in times of the year when sensitive migratory marine mammals are least present. We developed a novel spatiotemporal decision support framework that interactively visualizes tradeoffs between OWED industry profits and wildlife sensitivities, in both space and time. The framework highlights sites on a map that are the most profitable and least sensitive to seabirds. Within the U.S. Mid-Atlantic study area, the New York Call Areas are particularly well optimized for minimal impact on seabirds with maximal profits to OWED. For a given site, pre-operational activities (e.g. pile driving and seismic air gun surveying) are advised by cetacean sensitivity across months of the year that minimize impacts on migratory cetaceans, particularly those of highest conservation concern such as the North Atlantic right whale (Eubalaena Glacialis). For instance, within optimal sites for the New York Call Area the least impacting months are May and June. Other taxa are certainly affected by OWED and should be incorporated into this framework, but data on their distributions and/or sensitivities is currently less well known. Built with open-source software made publicly available, the authors hope this framework will be extended even more comprehensively into the future as our knowledge on species distributions and OWED sensitivities expands for streamlining environmental compliance.
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页数:26
相关论文
共 48 条
[41]   Incorporating data uncertainty when estimating potential vulnerability of Scottish seabirds to marine renewable energy developments [J].
Wade, H. M. ;
Masden, E. A. ;
Jackson, A. C. ;
Furness, R. W. .
MARINE POLICY, 2016, 70 :108-113
[42]  
Watts BD, 2010, CTR CONSERV BIOL TEC, P43
[43]   Ecosystem service tradeoff analysis reveals the value of marine spatial planning for multiple ocean uses [J].
White, Crow ;
Halpern, Benjamin S. ;
Kappel, Carrie V. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (12) :4696-4701
[44]  
Willmot JR, 2013, RELATIVE VULNERABILI, P294
[45]   A spatial conservation prioritization approach for protecting marine birds given proposed offshore wind energy development [J].
Winiarski, Kristopher J. ;
Miller, David L. ;
Paton, Peter W. C. ;
McWilliams, Scott R. .
BIOLOGICAL CONSERVATION, 2014, 169 :79-88
[46]  
Winship AJ, 2018, Modeling at-sea density of marine birds to support Atlantic marine renewable energy planning. OCS Study BOEM 2018-010, V10, P67
[47]  
2006, FRONT ECOL ENVIRON, V4, P525, DOI DOI 10.1890/1540-9295(2006)4[525:MEMFCT]2.0.CO
[48]  
2