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Employing controlled vibrations to predict fluid forces on a cylinder undergoing vortex-induced vibration

机译:利用受控振动来预测圆柱体上受到涡流诱导振动的力

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In the present study, we measure the fluid forces on a vertical cylinder that is forced to vibrate transversely to a water channel flow, and compare directly to the forces encountered by freely vibrating cylinders, under conditions where we carefully match the amplitude, frequency, and Reynolds number (Re) of the two cases. A key point is that we use precisely the same cylinder and submerged flow configuration for both the free and controlled cases. Where the free vibration exhibits closely sinusoidal motion, the controlled sinusoidal motion yields forces in close agreement with the free vibration case. Although this result might be expected, previous comparisons have not been uniformly close, which highlights the importance of matching the experimental conditions precisely, and of accurately measuring the phase between the force and body motion. For a lightly damped system, which is perhaps the most significant case to analyze, one typically finds that the maximum response amplitude is quite unsteady. One might conventionally expect prediction of forces to be difficult in such cases. However, it is of practical significance that, even in this case, a quasi-steady approximation is effective. This is a significant point because it suggests that controlled vibration measurements for constant amplitude motion might remain applicable to free vibration systems undergoing even transient or intermittent motions.
机译:在本研究中,我们测量了垂直圆柱体上的流体力,该圆柱体被迫横向于水通道流振动,并在与我们仔细匹配振幅,频率和频率的条件下,直接与自由振动圆柱体所遇到的力进行比较。两种情况的雷诺数(Re)。一个关键点是,对于自由和受控情况,我们都使用完全相同的气瓶和淹没流配置。当自由振动表现出紧密的正弦运动时,受控的正弦运动会产生与自由振动情况非常一致的力。尽管可以预期得到此结果,但以前的比较并没有完全一致,这突出了精确匹配实验条件以及准确测量力与身体运动之间的相位的重要性。对于轻微阻尼的系统,这可能是最重要的分析案例,通常会发现最大响应幅度非常不稳定。传统上,人们可能期望在这种情况下很难预测力。然而,即使在这种情况下,准稳态近似也是有效的,具有实际意义。这是很重要的一点,因为它表明针对恒定振幅运动的受控振动测量可能仍然适用于经历了瞬时或间歇运动的自由振动系统。

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