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ACTUAL AND OPTIMUM FLIGHT SPEEDS - FIELD DATA REASSESSED

机译:实际和最佳飞行速度-重新评估现场数据

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摘要

Previously published field observations of the air speeds of 36 species of birds, all observed by the same method (ornithodolite), were compared with estimates of the corresponding minimum power speeds, calculated with a default body drag coefficient of 0.1. This value, which was derived from recent wind tunnel studies, represents a downward revision from default values previously used and leads, in turn, to an upward revision of estimated minimum power speeds. The mean observed air speeds are now distributed around the minimum power speed, rather than in between the speeds for minimum power and maximum range, as they were before. Although the field data do not represent migration, examination of the marginal effects of small changes of speed, on power and lift:drag ratio, indicates that flying at the maximum range speed on migration may not represent an 'optimal' or even a practical strategy and that cruising speeds may be limited by the muscle power available or by aerobic capacity. Caution in constructing 'optimisation' theories is indicated. [References: 17]
机译:将先前发布的对36种鸟类的风速的野外观测结果(均用相同的方法)(经纬铁矿)观测到,并将其与相应的最小功率速度的估算值进行比较,并以默认的身体阻力系数0.1进行计算。该值来自最近的风洞研究,表示从以前使用的默认值开始向下修正,进而导致估计的最小功率速度向上修正。现在,观测到的平均风速分布在最小功率速度附近,而不是像以前那样分布在最小功率和最大范围的速度之间。尽管现场数据不能代表迁移,但检查速度的微小变化对动力和升力/阻力比的边际影响表明,以最大速度飞行对迁移可能并不代表“最佳”甚至是实际策略巡航速度可能会受到可用的肌肉力量或有氧运动能力的限制。在构建“优化”理论时要谨慎。 [参考:17]

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