...
首页> 外文期刊>Journal of Theoretical Biology >Complex behaviour in complex terrain - Modelling bird migration in a high resolution wind field across mountainous terrain to simulate observed patterns
【24h】

Complex behaviour in complex terrain - Modelling bird migration in a high resolution wind field across mountainous terrain to simulate observed patterns

机译:复杂地形中的复杂行为 - 山地地形高分辨率风野中的鸟类迁移模拟观测模式

获取原文
获取原文并翻译 | 示例
           

摘要

Crossing of large ecological barriers, such as mountains, is in terms of energy considered to be a demanding and critical step during bird migration. Besides forming a geographical barrier, mountains have a profound impact on the resulting wind flow. We use a novel framework of mathematical models to investigate the influences of wind and topography on nocturnal passerine bird behaviour, and to assess the energy costs for different flight strategies for crossing the Jura Mountains. The mathematical models include three biological models of bird behaviour: i) wind drift compensation; ii) adaptation of flight height for favourable winds; and, iii) avoidance of obstacles (cross over and/or circumvention of an obstacle following a minimum energy expenditure strategy), which are assessed separately and in combination. Further, we use a mesoscale weather model for high-resolution predictions of the wind fields. We simulate the broad front nocturnal passerine migration for autumn nights with peak migration intensities. The bird densities retrieved from a weather radar are used as the initial intensities and to specify the vertical distributions of the simulated birds. It is shown that migration over complex terrain represents the most expensive flight option in terms of energy expenditure, and wind is seen to be the main factor that influences the energy expenditure in the bird's preferred flight direction. Further, the combined effects of wind and orography lead to a high concentration of migratory birds within the favourable wind conditions of the Swiss lowlands and north of the Jura Mountains.
机译:大型生态壁垒(如山脉)在鸟类迁移期间被认为是苛刻和危急的步伐。除了形成地理障碍之外,山脉对所产生的风流有深远的影响。我们使用新颖的数学模型框架来调查风和地形对夜间雀野鸟类行为的影响,并评估交叉汝拉山脉不同飞行策略的能源成本。数学模型包括鸟类行为的三种生物模型:i)风漂移补偿; ii)适应飞行高度的良好风;并且,iii)避免障碍(在最小能耗战略之后的障碍物上的交叉和/或绕过障碍物),其单独和组合进行分别评估。此外,我们使用Mescle天气模型来进行风场的高分辨率预测。我们模拟了秋季夜晚的广泛夜间雀鸽迁移,普遍存在的迁移强度。从天气雷达检索的鸟密度用作初始强度,并指定模拟鸟类的垂直分布。结果表明,复杂地形的迁移代表了能源支出方面最昂贵的飞行选择,风被认为是影响鸟类首选飞行方向中的能源支出的主要因素。此外,风和形象的组合效果导致瑞士低地和汝拉山脉北部有利风情的高浓度的迁徙鸟类。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号