首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference 2006 vol.4 pt.B: Fluid-Structure Interaction >ON THE PRESSURE AND FORCE FIELD ON A CIRCULAR CYLINDER OSCILLATING IN THE LOCK- IN REGION AT SUB-CRITICAL REYNOLDS NUMBER
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ON THE PRESSURE AND FORCE FIELD ON A CIRCULAR CYLINDER OSCILLATING IN THE LOCK- IN REGION AT SUB-CRITICAL REYNOLDS NUMBER

机译:次临界雷诺数的锁定区域中圆柱圆柱振动的压力和力场

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The vortex induced vibration of a rigid cylinder has been studied in the subcritical Reynolds range in terms of motion parameters and also in terms of instantaneous pressure distribution on the cylinder surface. The resulting force field has been analyzed as a function of the fundamental parameters z~* (non-dimensional amplitude) and U_n (critical velocity ratio) showing a possible systematic modelization of the force component synchronous with the oscillation frequency, responsible for the power input in the lock-in region. The magnitude and the phase of the synchronous force component have been studied analyzing build-up events as well as steady state constant amplitude oscillation events. A very close correspondence has been highlighted among the two different analyzed cases, confirming that a quasi-steady model of the force field is a robust and reliable representation of the flow-cylinder interaction force field. This interaction is responsible for the typical transient build-up oscillations of technical interest. The pressure distribution monitored at different locations along the oscillating cylinder axial coordinate allowed finally to show a direct link between the incoming flow velocity distribution and the correlation characteristics of the vortex shedding force distribution along the cylinder axis.
机译:在亚临界雷诺范围内,已经根据运动参数以及圆柱表面的瞬时压力分布研究了刚性圆柱的涡激振动。已经分析了所得的力场与基本参数z〜*(无量纲的振幅)和U_n(临界速度比)的关系,显示了与振动频率同步的,负责功率输入的力分量的系统建模在锁定区域。研究了同步力分量的大小和相位,分析了累积事件以及稳态恒定振幅振荡事件。在两个不同的分析案例中,非常紧密的对应关系得到了强调,这证实了力场的准稳态模型是流-筒相互作用力场的可靠且可靠的表示。这种相互作用是引起技术关注的典型瞬态累积振荡的原因。沿着摆动的气缸轴向坐标在不同位置处监视的压力分布最终允许显示传入的流速分布与沿着气缸轴线的涡旋脱落力分布的相关特性之间的直接联系。

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