首页> 外文会议>Micro-Nanomechatronics and Human Science, 2004 and The Fourth Symposium Micro-Nanomechatronics for Information-Based Society, 2004 >Numerical analysis for the effect of Reynolds number on propulsive performance of a submerged wiggling micromachine
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Numerical analysis for the effect of Reynolds number on propulsive performance of a submerged wiggling micromachine

机译:雷诺数对水下摆动微机推进性能影响的数值分析

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The effect of the Reynolds number on the propulsive performance of a micromachine wiggling in the water is analyzed numerically. The micromachine, whose geometry is similar to an NACA65-010 hydrofoil, is set in a straight conduit. The wiggling motion is expressed by a progressive wave with reference to the swimming motions of fish. The flow around the micromachine is analyzed by using a two-dimensional finite element method. The Reynolds number Re ranges from 1 to 100. The analysis reveals that the decrement in Re deteriorates the propulsive performance and that the marked deterioration occurs at Re>10. The decrement in the thrust force is caused by the increment in the skin friction, and the increment in the power is attributable to the increase of the work against the pressure around the micromachine. The flow induced by the wiggle motion reduces with decreasing Re.
机译:数值分析了雷诺数对微机在水中摆动的推进性能的影响。微型机器的几何形状类似于NACA65-010水翼型,被放置在直导管中。摆动运动是参照鱼的游泳运动用渐进波表示的。通过使用二维有限元方法分析微机周围的流动。雷诺数Re的范围为1到100。分析表明,Re的降低会降低推进性能,并且在Re> 10时会出现明显的劣化。推力的减小是由皮肤摩擦的增加引起的,而功率的增加归因于抵抗微机械周围压力的功的增加。摆动运动引起的流量随Re的减小而减小。

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