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Propulsive force measurements and flow behavior of undulatory swimmers at low Reynolds number

机译:低雷诺数下波动性游泳者的推进力测量和流动行为

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摘要

The swimming behavior of the nematode Caenorhabditis elegans is investigated in aqueous solutions of increasing viscosity. Detailed flow dynamics associated with the nematode's swimming motion as well as propulsive force and power are obtained using particle tracking and velocimetry methods. We find that C. elegans delivers propulsive thrusts on the order of a few nanonewtons. Such findings are supported by values obtained using resistive force theory; the ratio of normal to tangential drag coefficients is estimated to be approximately 1.4. Over the range of solutions investigated here, the flow properties remain largely independent of viscosity. Velocity magnitudes of the flow away from the nematode body decay rapidly within less than a body length and collapse onto a single master curve. Overall, our findings support that C. elegans is an attractive living model to study the coupling between small-scale propulsion and low Reynolds number hydrodynamics.
机译:研究线虫秀丽隐杆线虫在增加粘度的水溶液中的游泳行为。使用线虫跟踪和测速法可以获得与线虫游动运动以及推进力和功率相关的详细流动动力学。我们发现秀丽隐杆线虫发出的推进力约为几纳牛顿。这些发现得到了使用阻力理论获得的值的支持。法向和切向阻力系数之比估计约为1.4。在这里研究的溶液范围内,流动性能在很大程度上与粘度无关。离开线虫体的流的速度幅度在小于体长的范围内迅速衰减并塌陷到一条主曲线上。总的来说,我们的发现支持秀丽隐杆线虫是一种有吸引力的生活模型,用于研究小规模推进力和低雷诺数流体动力学之间的耦合。

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