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首页> 外文期刊>The Journal of Experimental Biology >Limits to vertical force and power production in bumblebees (Hymenoptera: Bombus impatiens)
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Limits to vertical force and power production in bumblebees (Hymenoptera: Bombus impatiens)

机译:限制大黄蜂的垂直力和动力产生(膜翅目:Bombus impatiens)

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Maximum vertical forces produced by flying animals can be difficult to identify unequivocally, but potentially indicate general limits to aerodynamic force and muscle power output. We used two methods (i.e. incremental addition of supplemental mass and asymptotic load lifting) to determine both the intraspecific allometry of and methodological differences in estimates of maximum flight performance for the bumblebee Bombus impatiens. We found that incremental mass addition underestimated maximum lifting capacity by approximately 18% relative to values obtained by asymptotically increasing the applied load during a lifting bout. In asymptotic loading, bumblebees lifted on average 53% of their body weight, and demonstrated a significantly negative allometry of maximum aerodynamic force production relative to thoracic muscle mass. Estimates of maximum body mass-specific mechanical power output increased intraspecifically with body mass to the 0.38-0.50 power, depending on values assumed for the profile drag coefficient. We also found a significant reduction in vertical force production when both hindwings were removed. Limits to load-lifting capacity ultimately co-occur with an upper bound on stroke amplitude (similar to 145 deg.). Although thoracic muscle mass showed positive allometry, overall load-lifting performance exhibited significant size-dependent degradation.
机译:飞行动物产生的最大垂直力可能很难一目了然,但可能表明对空气动力和肌肉力量输出的一般限制。我们使用两种方法(即增加补充质量和渐近式负载提升)确定大黄蜂Bombus impatiens的种内变种和方法学差异,以估计其最大飞行性能。我们发现,相对于通过在举重比赛中渐近增加施加的载荷而获得的值,增加的质量添加低估了最大举升能力约18%。在渐近负荷下,大黄蜂平均举起其体重的53%,并表现出相对于胸肌质量的最大空气动力产生显着负异形。特定于最大体重的机械功率输出的估计值随着体重在体内增加至0.38-0.50功率,具体取决于轮廓阻力系数的假定值。当两个后翼都被移走时,我们还发现垂直力的产生显着减少。负载提升能力的极限最终与冲程幅度的上限(类似于145度)同时出现。尽管胸肌质量呈正变态,但整体举重表现出明显的尺寸依赖性退化。

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