Approach Distances of Scottish Golden Eagles Aquila chrysaetos to Wind Turbines According to Blade Motion Status, Wind Speed, and Preferred Habitat

被引:0
作者
Fielding, Alan H. [1 ]
Anderson, David [2 ]
Benn, Stuart [3 ]
Taylor, John [4 ]
Tingay, Ruth [5 ]
Weston, Ewan D. [1 ]
Whitfield, D. Philip [1 ]
机构
[1] Nat Res Ltd, Brathens AB31 4BY, Scotland
[2] Dave Anderson Ecol Ltd, Callander FK17 8EU, Scotland
[3] RSPB Scotland, Inverness IV2 3BW, Scotland
[4] Forestry & Land Scotland, Lochgilphead PA31 8RS, Scotland
[5] Wild Justice, 9 Lawson St, Raunds NN9 6NG, England
来源
DIVERSITY-BASEL | 2024年 / 16卷 / 01期
关键词
renewable energy; wind farm; raptor; GPS-telemetry; turbine curtailment; risk assessment; WHITE-TAILED EAGLES; RAPTORS; FARMS; DISPLACEMENT; BEHAVIOR; NORWAY; BIRD;
D O I
10.3390/d16010071
中图分类号
X176 [生物多样性保护];
学科分类号
090705 ;
摘要
Understanding drivers underlying birds' responses to operational wind turbines is essential for robust wind farm proposal assessments, especially for large raptors with life history traits engendering sensitivity to impacts from two potential adverse effects: fatality through collision with rotating turbine blades and functional habitat loss through avoidance of turbines. The balance between these two potential effects represents opposing extremes on a continuum and is influenced by several factors. Collisions have an obvious impact on survival, but the impacts of avoidance may be more insidious and potentially more significant for a population. It is reasonable to conclude that collisions are less likely when blades are motionless. Consequently, turbine shutdown systems (TSSs, "shutdown on demand" or "curtailment"), instigated as raptors approach operational turbines, may provide mitigation against collisions. By contrast, if avoidance is most likely, this could be independent of blade motion, and TSSs/curtailment would provide no mitigation against habitat loss. For birds tending to wariness of turbines, therefore, it is important to understand if it is conditional on blade motion. Scottish golden eagles show a strong propensity to avoid (be wary of) turbines, subject largely to the suitability of habitat at and surrounding turbine locations. A previous Scottish study found that approach distances to turbines by non-territorial eagles were unaffected by blade motion but were closer at higher wind speed. Here, we analyse movement data from a GPS-tagged territorial eagle and non-territorial eagles responding to the motion status (and wind speed) of turbines at another Scottish wind farm. Eagles' approach distances to turbines were only weakly affected by blade motion but were closer at higher wind speed. We again found that habitat suitability in and around turbine locations was strongly influential on eagles' approach distance to turbines. Our confirmation that blade motion had little effect on Scottish golden eagles' wariness of turbines suggests that for eagles that are prone to avoid turbines, their wariness is a response to turbines per se, and not blades' movement. In our study system, and others where avoidance is the predominant response, curtailment of turbines' operation on birds' close approaches, or making turbine blades more obvious, should, therefore, have little material influence on functional habitat loss impacts. If true, this has important implications for wind farm designs and any proposed mitigation.
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页数:14
相关论文
共 84 条
[41]   Wind turbines cause functional habitat loss for migratory soaring birds [J].
Marques, Ana T. ;
Santos, Carlos D. ;
Hanssen, Frank ;
Munoz, Antonio-Roman ;
Onrubia, Alejandro ;
Wikelski, Martin ;
Moreira, Francisco ;
Palmeirim, Jorge Manuel ;
Silva, Joao P. .
JOURNAL OF ANIMAL ECOLOGY, 2020, 89 (01) :93-103
[42]   Understanding bird collisions at wind farms: An updated review on the causes and possible mitigation strategies [J].
Marques, Ana Teresa ;
Batalha, Helena ;
Rodrigues, Sandra ;
Costa, Hugo ;
Ramos Pereira, Maria Joao ;
Fonseca, Carlos ;
Mascarenhas, Miguel ;
Bernardino, Joana .
BIOLOGICAL CONSERVATION, 2014, 179 :40-52
[43]  
May R, 2011, NINA Report 692
[44]   Paint it black: Efficacy of increased wind turbine rotor blade visibility to reduce avian fatalities [J].
May, Roel ;
Nygard, Torgeir ;
Falkdalen, Ulla ;
Astrom, Jens ;
Hamre, Oyvind ;
Stokke, Bard G. .
ECOLOGY AND EVOLUTION, 2020, 10 (16) :8927-8935
[45]   A unifying framework for the underlying mechanisms of avian avoidance of wind turbines [J].
May, Roel F. .
BIOLOGICAL CONSERVATION, 2015, 190 :179-187
[46]  
Mazerolle M. J., 2023, Package "AICcmodavg
[47]   Reanalysis ignores pertinent data, includes inappropriate observations, and disregards realities of applied ecology: Response to Huso and Dalthorp (2023) [J].
Mcclure, Christopher J. W. ;
Rolek, Brian W. ;
Dunn, Leah ;
Mccabe, Jennifer D. ;
Martinson, Luke ;
Katzner, Todd E. .
JOURNAL OF APPLIED ECOLOGY, 2023, 60 (10) :2289-2294
[48]   Confirmation that eagle fatalities can be reduced by automated curtailment of wind turbines [J].
McClure, Christopher J. W. ;
Rolek, Brian W. ;
Dunn, Leah ;
McCabe, Jennifer D. ;
Martinson, Luke ;
Katzner, Todd E. .
ECOLOGICAL SOLUTIONS AND EVIDENCE, 2022, 3 (03)
[49]   Eagles enter rotor-swept zones of wind turbines at rates that vary per turbine [J].
McClure, Christopher J. W. ;
Rolek, Brian W. ;
Braham, Melissa A. ;
Miller, Tricia A. ;
Duerr, Adam E. ;
McCabe, Jennifer D. ;
Dunn, Leah ;
Katzner, Todd E. .
ECOLOGY AND EVOLUTION, 2021, 11 (16) :11267-11274
[50]   Eagle fatalities are reduced by automated curtailment of wind turbines [J].
McClure, Christopher J. W. ;
Rolek, Brian W. ;
Dunn, Leah ;
McCabe, Jennifer D. ;
Martinson, Luke ;
Katzner, Todd .
JOURNAL OF APPLIED ECOLOGY, 2021, 58 (03) :446-452