Atlas / Learn / Papers / 17f46b866d634be3024f55c09c16376a59bc0de9
Semantic Scholar · Article (Ambio)
Crowded skies: Conflicts between expanding goose populations and aviation safety
Attribution
This is the abstract and citation. Full text lives at Semantic Scholar — we link out rather than host. All credit to the authors and Ambio.
Abstract
Verbatim from Semantic Scholar. Not paraphrased, not summarized.
We here review the collision risks posed by large-bodied, flocking geese to aircraft, exacerbated by recent major increases in northern hemisphere goose populations and air traffic volume. Mitigation of goose–aircraft strike risks requires knowledge of local goose movements, global goose population dynamics and ecology. Airports can minimise goose strikes by managing habitats within the airport property, applying deterrents to scare geese away and lethal control, but goose migration and movements at greater spatial scales present greater challenges. Habitat management outside of airports can locally reduce goose attractiveness of peripheral areas, but requires stakeholder involvement and coordination. Information on bird strike rates, individual goose movements and goose population dynamics is essential to understand how best to reduce the risk of goose strikes. Avian radar provides tactical information for mitigation measures and strategic data on local patterns of goose migration and habitat use. In the face of expanding air traffic, goose distributions and populations, these threats need to be integrated with other local, national and international stakeholder involvement to secure viable solutions to multiple conflicts.
Authors
- David R. Bradbeer
- C. Rosenquist
- T. Christensen
- A. D. Fox
Keywords
- Geography
- Medicine
- Environmental Science
Citation: David R. Bradbeer, C. Rosenquist, T. Christensen , et al. (2017). Crowded skies: Conflicts between expanding goose populations and aviation safety. Ambio. Semantic Scholar ID 17f46b866d634be3024f55c09c16376a59bc0de9. https://doi.org/10.1007/s13280-017-0901-2 ↗