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Experimental investigation on the influence of gap vortex streets on fluid- structure interactions in hexagonal bundle geometries

机译:间隙涡街对六边形束几何中流固耦合影响的实验研究

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Gap vortex streets characterise many industrial applications involving rod bundle flows, such as heat exchangers and nuclear reactors. These structures, known as gap vortex streets, may excite the structural components of the bundle to resonance, leading to fretting and fatigue. This work aims to measure these coherent structures and the resulting displacement and oscillation frequency of the neighbouring rod, to provide unique data for fluid structure interaction studies and to develop a general correlation for estimating the coherent structure's wavelength. A water loop was built to host a hexagonal rod bundle. Fluorinated Ethylene Prophylene (FEP), a refractive index matching (RIM) material, was used to have undisturbed optical access in the area around the central rod. The flow was measured with Laser Doppler Anemometry (LDA) to detect coherent structures, while the vibrations were measured with a high speed camera. A new correlation for estimating the wavelength of the coherent structures is derived with dimensional analysis based on experimental evidence. The correlation is tested on different geometries: rectangular channels with single or half-rods, and two rod bundles, within the pitch-to-diameter ratio (P/D) range 1.02-1.2. Moreover fluctuations in the flow, given by the detected coherent structures, govern the structural response of the rod. The rod is excited to resonance if these fluctuations match twice the natural frequency of the rod.
机译:间隙涡街是许多涉及棒束流的工业应用的特征,例如热交换器和核反应堆。这些被称为间隙涡街的结构可能会激发束的结构成分产生共振,从而导致微动和疲劳。这项工作旨在测量这些相干结构以及相邻杆的位移和振荡频率,为流体结构相互作用研究提供独特的数据,并为估算相干结构的波长建立一般的相关性。建立了一个水环来容纳六角形棒束。氟化乙烯预防剂(FEP)是一种折射率匹配(RIM)材料,用于在中心棒周围区域提供不受干扰的光学通道。用激光多普勒风速仪(LDA)测量流量以检测相干结构,同时用高速摄像机测量振动。通过基于实验证据的尺寸分析,得出了用于估计相干结构波长的新的相关性。在不同的几何形状上测试了相关性:节距/直径比(P / D)范围为1.02-1.2,具有单杆或半杆的矩形通道以及两个杆束。此外,由检测到的相干结构给定的流量波动控制着杆的结构响应。如果这些波动匹配杆的固有频率的两倍,则杆会激发共振。

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