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Measuring power input, power output and energy conversion efficiency in un-instrumented flying birds

机译:测量电源输入,电力输出和能量转换效率在未驾驶鸟类中

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Cost of flight at various speeds is a crucial determinant of flight behaviour in birds. Aerodynamic models, predicting that mechanical power (P-mech) varies with flight speed in a U-shaped manner, have been used together with an energy conversion factor (efficiency) to estimate metabolic power (P-met). Despite few empirical studies, efficiency has been assumed constant across flight speeds at 23%. Ideally, efficiency should be estimated from measurements of both P-mech and P-met in un-instrumented flight. Until recently, progress has been hampered by methodological constraints. The main aim of this study was to evaluate recently developed techniques and estimate flight efficiency across flight speeds. We used the C-13-labelled sodium bicarbonate method (NaBi) and particle image velocimetry (PIV) to measure P-met and P-mech in blackcaps flying in a wind tunnel. We also cross-validated measurements made by NaBi with quantitative magnetic resonance (QMR) body composition analysis in yellow-rumped warblers. We found that P-met estimated by NaBi was similar to 12% lower than corresponding values estimated by QMR. P-met varied in a U-shaped manner across flight speeds in blackcaps, but the pattern was not statistically significant. P-mech could only be reliably measured for two intermediate speeds and estimated efficiency ranged between 14% and 22% (combining the two speeds for raw and weight/lift-specific power, with and without correction for the similar to 12% difference between NaBi and QMR), which were close to the currently used default value. We conclude that NaBi and PIV are viable techniques, allowing researchers to address some of the outstanding questions regarding bird flight energetics.
机译:以各种速度的飞行成本是鸟类中飞行行为的重要决定因素。空气动力学模型,预测机械功率(P-MECH)以U形方式的飞行速度变化,已经与能量转换因子(效率)一起使用以估计代谢功率(P-MET)。尽管实证研究少,但在飞行速度下持续效率为23%。理想情况下,应估计效率从未仪表飞行中的P-MECH和P-MET测量。直到最近,通过方法的限制,进展被阻碍了。本研究的主要目的是评估最近开发的技术和估算飞行速度的飞行效率。我们使用C-13标记的碳酸氢钠法(NABI)和粒子图像VELOCIMETRY(PIV)来测量在风洞中飞行的Blackcaps的P-Met和P-Mech。我们还通过在黄群鸣鸟的定量磁共振(QMR)体成分分析中交叉验证了Nabi进行的测量。我们发现,NABI估计的P-MET类似于QMR估计的相应值的12%。 P-MET以U形的方式在黑色卡片中的飞行速度变化,但图案没有统计学意义。只能可靠地测量两种中间速度,估计效率范围为14%和22%(将两种速度与原料和重量/提升特定的电源相结合,而没有校正Nabi之间的差异。和QMR),它接近当前使用的默认值。我们得出结论,Nabi和PIV是可行的技术,允许研究人员解决有关鸟飞行能量学的一些未突出的问题。

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