Weymouth G D, Subramaniam V, Triantafyllou M S
Southampton Marine and Maritime Institute, University of Southampton, Southampton SO17 1BJ, UK.
Bioinspir Biomim. 2015 Feb 2;10(1):016016. doi: 10.1088/1748-3190/10/1/016016.
We design and test an octopus-inspired flexible hull robot that demonstrates outstanding fast-starting performance. The robot is hyper-inflated with water, and then rapidly deflates to expel the fluid so as to power the escape maneuver. Using this robot we verify for the first time in laboratory testing that rapid size-change can substantially reduce separation in bluff bodies traveling several body lengths, and recover fluid energy which can be employed to improve the propulsive performance. The robot is found to experience speeds over ten body lengths per second, exceeding that of a similarly propelled optimally streamlined rigid rocket. The peak net thrust force on the robot is more than 2.6 times that on an optimal rigid body performing the same maneuver, experimentally demonstrating large energy recovery and enabling acceleration greater than 14 body lengths per second squared. Finally, over 53% of the available energy is converted into payload kinetic energy, a performance that exceeds the estimated energy conversion efficiency of fast-starting fish. The Reynolds number based on final speed and robot length is [Formula: see text]. We use the experimental data to establish a fundamental deflation scaling parameter [Formula: see text] which characterizes the mechanisms of flow control via shape change. Based on this scaling parameter, we find that the fast-starting performance improves with increasing size.
我们设计并测试了一种受章鱼启发的柔性外壳机器人,该机器人展现出卓越的快速启动性能。该机器人先用水进行过度充气,然后迅速放气以排出液体,从而为逃生机动提供动力。通过使用这个机器人,我们首次在实验室测试中验证,快速的尺寸变化能够显著减少钝体在行进几个体长距离时的分离,并回收可用于改善推进性能的流体能量。我们发现该机器人的速度超过每秒十个体长,超过了类似推进方式的最优流线型刚性火箭的速度。该机器人上的峰值净推力是执行相同机动的最优刚体上的净推力的2.6倍多,通过实验证明了大量的能量回收,并实现了大于每秒14个体长平方的加速度。最后,超过53%的可用能量被转化为有效载荷动能,这一性能超过了快速启动鱼类的估计能量转换效率。基于最终速度和机器人长度的雷诺数为[公式:见原文]。我们利用实验数据建立了一个基本的放气比例参数[公式:见原文],该参数表征了通过形状变化进行流动控制的机制。基于这个比例参数,我们发现快速启动性能随着尺寸的增加而提高。