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Axial-flow-induced vibration experiments on cantilevered rods for nuclear reactor applications

机译:核反应堆应用悬臂杆的轴流振动实验

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Axial-flow-induced vibration has been experimentally investigated with clamped-free cantilevered cylindrical rods confined in a tube and subjected to axial water flow directed from the rod free-end towards the clamped end: a simplified configuration relevant for water-cooled nuclear reactor cores. Non-contact optical techniques have been used to simultaneously detect the rods vibration and the flow field around the vibrating rods free-end. The source of excitation is turbulent buffeting at low flow velocity, while a movement induced excitation component is present at large flow velocities. The rods flow-induced vibration consists of a fuzzy period-1 motion: a periodic (period-1) motion with a chaotic component that increases in relative importance as the flow velocity is increased. The experimental data provided here are particularly suited for numerical fluid-structure model development and benchmarking, as they combine a rich fluid-structure multi-physics interaction with a relatively simple configuration and include both the flow field and the mechanical response of the vibrating rods.
机译:轴向流动引起的振动已经用限制在管子中的无夹紧悬臂圆柱杆进行了实验研究,并经受了从杆的自由端朝向夹紧端的轴向水流:与水冷核反应堆芯有关的简化配置。非接触式光学技术已被用于同时检测杆的振动和振动杆自由端周围的流场。激发的来源是在低流速下的湍流抖振,而在大流速下存在运动引起的激发分量。杆流动引起的振动由模糊的1期运动组成:具有周期性成分的周期性(1期)运动随着流速的增加而变得相对重要。这里提供的实验数据特别适合于数值流体结构模型的开发和基准测试,因为它们将丰富的流体结构多物理场相互作用与相对简单的配置结合在一起,并且包括流场和振动棒的机械响应。

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