Compensation for wind drift by migrating swifts

被引:25
作者
Karlsson, Hakan [1 ]
Henningsson, Per [2 ]
Backman, Johan [1 ]
Hedenstrom, Anders [2 ]
Alerstam, Thomas [1 ]
机构
[1] Lund Univ, Dept Anim Ecol, SE-22362 Lund, Sweden
[2] Lund Univ, Dept Theoret Ecol, SE-22362 Lund, Sweden
基金
瑞典研究理事会;
关键词
Apus apus; common swift; compensation; drift; migration; orientation; side-wind; tracking radar; wind; NOCTURNAL PASSERINE MIGRANTS; APUS-APUS; BIRD MIGRATION; ORIENTATION; FLIGHT; AIRSPEED; ALTITUDE; RADAR;
D O I
10.1016/j.anbehav.2010.05.023
中图分类号
B84 [心理学]; C [社会科学总论]; Q98 [人类学];
学科分类号
03 ; 0303 ; 030303 ; 04 ; 0402 ;
摘要
We investigated the orientation in relation to wind of common swifts, Apus apus, during nocturnal spring and autumn migration. Swifts are highly adapted to a life in the air, showing wind-dependent orientation during nocturnal roosting flights, and may be expected to be more efficient in their wind drift/compensation behaviour than nocturnal passerine migrants, which are usually subjected to full or partial wind drift. A tracking radar at Lund in southern Sweden was used to record the orientation of common swifts (identified by their characteristic radar echo signature) on nocturnal migration flights and to measure wind conditions at the altitudes at which the birds were flying. Comparing track and heading directions under easterly and westerly winds revealed that the swifts shifted their heading distinctly into the wind, with the result that track directions were similar under the different wind conditions. As this pattern of complete compensation for drift from cross-winds occurred during both spring and autumn migration, there were no indications of differences between age classes. In addition, we found an effect of side-winds on equivalent airspeeds, with swifts increasing their airspeed with increasing wind speed. Such a response has been theoretically predicted as part of an optimal behaviour for counteracting wind drift but has hereto not been empirically demonstrated. There was also a positive correlation between overall wind speed and equivalent airspeed, making it difficult to interpret whether the swifts respond to the total wind speed rather than specifically to the side-wind effect. Our results suggest that important differences may exist between species in their capacities to orient in relation to the wind and that the swift may be particularly efficient in adjusting heading direction and airspeed to obtain complete compensation for wind drift during high-altitude nocturnal migratory flights. (C) 2010 The Association for the Study of Animal Behaviour. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:399 / 404
页数:6
相关论文
共 50 条
[31]   Wind Drift, Breakdown, and Pileup of Ice Field Fragments [J].
Goncharov, V. K. .
OCEANOLOGY, 2024, 64 (06) :773-783
[32]   Wind Drift, Breakdown, and Pile Up of the Ice Field [J].
Goncharov, Vadim K. .
JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2023, 11 (06)
[33]   Generalized motion compensation for drift reduction [J].
Vetro, A ;
Sun, HF .
VISUAL COMMUNICATIONS AND IMAGE PROCESSING '98, PTS 1 AND 2, 1997, 3309 :484-495
[34]   Adaptive variation of airspeed in relation to wind, altitude and climb rate by migrating birds in the Arctic [J].
Hedenström, A ;
Alerstam, T ;
Green, M ;
Gudmundsson, GA .
BEHAVIORAL ECOLOGY AND SOCIOBIOLOGY, 2002, 52 (04) :308-317
[35]   Temperature Drift and Compensation in Stereo Visual Odometry [J].
Wang, Kunfeng ;
Zhao, Kaichun ;
Lu, Wenshuai ;
Wan, Zhenghua ;
Bai, Yang ;
You, Zheng .
IEEE SENSORS JOURNAL, 2024, 24 (23) :39744-39750
[36]   Application of piezoelectric gyro's drift compensation algorithm based on neural network [J].
Liu, Yu ;
Li, Qiujun ;
Liu, Jun ;
Li, Leilei ;
Mao, Youju .
WCICA 2006: SIXTH WORLD CONGRESS ON INTELLIGENT CONTROL AND AUTOMATION, VOLS 1-12, CONFERENCE PROCEEDINGS, 2006, :4823-+
[37]   Landmark-Based Online Drift Compensation Algorithm for Inertial Pedestrian Navigation [J].
Diaz, Estefania Munoz ;
Caamano, Maria .
2017 INTERNATIONAL CONFERENCE ON INDOOR POSITIONING AND INDOOR NAVIGATION (IPIN), 2017,
[38]   High Power Actuator Based on Magnetostrictive Composite Core with Temperature Drift Compensation [J].
Kaleta, Jerzy ;
Kot, Krzysztof ;
Mech, Rafal ;
Wiewiorski, Przemyslaw .
FRACTURE AND FATIGUE OF MATERIALS AND STRUCTURES, 2014, 598 :69-74
[39]   Improving the method of compensation of output signal temperature drift in optical methane concentration measurer [J].
Vovna, Oleksandr V. ;
Zori, Anatolii A. ;
Laktionov, Ivan S. ;
Akhmedov, Ramin N. ;
Sundetov, Samat ;
Harasim, Damian .
PHOTONICS APPLICATIONS IN ASTRONOMY, COMMUNICATIONS, INDUSTRY, AND HIGH-ENERGY PHYSICS EXPERIMENTS 2018, 2018, 10808
[40]   Flight speeds of migrating seabirds in the Strait of Gibraltar and their relation to wind [J].
María Mateos-Rodríguez ;
Bruno Bruderer .
Journal of Ornithology, 2012, 153 :881-889