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首页> 外文期刊>Journal of Fluids and Structures >An investigation into the hydrodynamics of a flexible riser undergoing vortex-induced vibration
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An investigation into the hydrodynamics of a flexible riser undergoing vortex-induced vibration

机译:柔性立管遭受涡激振动的流体力学研究

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In this study, a method to obtain the hydrodynamic forces of a flexible riser undergoing vortex-induced vibration (VIV) based on measured strain is proposed. The tensioned riser is approximated as an Euler-Bernoulli beam, and an inverse method is adopted for the calculation of the hydrodynamic forces in the cross flow (CF) and inline (IL) directions. Based on these hydrodynamic forces, and combined with the VIV velocities and accelerations of the riser, the excitation and added-mass coefficients are obtained through a least-squares method. As an illustration example, the hydrodynamic characteristics of a flexible riser model undergoing VIV in a uniform flow are investigated. Results indicate that VIV leads to non-uniform distribution of the drag coefficient and amplifies the drag coefficient along the riser. Similar distribution of the energy transfer coefficient has been found between the entire riser and that of the CF direction. For synchronized VIV occurring in both CF and IL directions, the energy transferred from the fluid is all dissipated by the structural damping, and hence leads to the energy balance in both CF and IL directions. It further shows that the excitation coefficients on flexible riser undergoing VIV do not agree with those of the forced oscillation tests: excitation coefficients sometimes even become negative within the normally excitation regime, and are related with not only the non-dimensional frequency and amplitude but also the phase angles between the CF and IL vibrations. The added-mass coefficient of flexible risers does not keep a constant value of 1.0 anymore, but depends on the non-dimensional frequency and amplitude of vibration. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,提出了一种基于测量的应变来获得经受涡激振动(VIV)的柔性立管的流体动力的方法。张紧的立管近似为Euler-Bernoulli梁,并且采用了一种反向方法来计算横流(CF)和管道(IL)方向上的流体动力。基于这些流体动力,并结合立管的VIV速度和加速度,通过最小二乘法获得激励系数和附加质量系数。作为说明示例,研究了在均匀流动中经历VIV的柔性立管模型的水动力特性。结果表明,VIV导致阻力系数的不均匀分布,并沿立管放大了阻力系数。已经发现在整个立管和CF方向之间的能量传递系数的相似分布。对于同时在CF和IL方向上发生的VIV,从流体传输的能量都通过结构阻尼消散,因此导致CF和IL方向上的能量平衡。它进一步表明,经受VIV的挠性立管上的激励系数与强制振荡试验的激励系数不一致:在正常激励范围内,激励系数有时甚至变为负值,并且不仅与无量纲的频率和幅度有关,而且与CF和IL振动之间的相位角。柔性立管的附加质量系数不再保持恒定值1.0,而是取决于无量纲的频率和振动幅度。 (C)2016 Elsevier Ltd.保留所有权利。

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