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NONLINEAR VIBRATIONS OF MODEL PWR FUEL ASSEMBLIES, PART 2: INTERPRETATION OF RESULTS USING BILINEAR STIFFNESS MODEL

机译:模型PWR燃料组件的非线性振动,第2部分:使用BILINEAR刚度模型解释结果

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The experimental response of fuel rods with spacer grids was interpreted using a bilinear hysteresis model. Nonlinear experimental responses of two configurations of rods made out of Zirconium alloy tubes were considered in this paper: one configuration with a single beam and the second configuration with a cluster of beams (stacked in a 3x3 matrix formulation). These two configurations were designed to emulate part of the nuclear fuel assembly in Pressurized Water Reactors (PWR). Both configurations were supported by spacer girds at their extremities and were immersed in still water. Spacer grids are grid-like structures made out of thin Zirconium alloy sheets with 17x17 cells arranged in a square pattern. Spacer grids provide mechanical support and reduce flow-induced vibration of nuclear fuel rods. They also improve the heat transfer between nuclear fuel rods and the surrounding coolant. The spacer grids impose nonlinear boundary conditions to the beams at the contact points/surface. Specifically, spacer grids present bilinear hysteresis due to their inherent complexity. The bilinear hysteresis shown by spacer grids was measured in terms of force-displacement loops by testing rigid rod inserted in one of its cells. The rigid rod was then excited by external harmonic excitation with excitation frequencies ranging from 5 Hz to 50 Hz in steps of 5 Hz. The bilinear hysteresis model, first studied by Caughey, was modified to include viscous damping and was used to interpret the experimental results. The method of slowly varying parameters was used to solve the equation of motion. First, the measured force-displacement loops of spacer grids were fitted with the numerical model described in the current analysis. Good agreement between the model response and measured loops was found, and the identified parameters allowed the characterization of the nonlinear boundary conditions imposed by spacer grids. Finally, the nonlinear responses of the two configurations under study were interpreted using the bilinear hysteresis model. Excellent agreement between numerical and experimental results was obtained for both configurations.
机译:使用双线性滞后模型解释具有间隔栅格的燃料棒的实验响应。本文考虑了由锆合金管制成的两种杆配置的非线性实验响应:一种具有单梁的一种配置和具有束簇的第二构型(堆叠在3×3矩阵配方中)。设计这两种配置被设计为在加压水反应器(PWR)中的一部分核燃料组件。两种配置都是通过它们四肢的间隔纹纹身支撑,并浸入水中。间隔栅格是用薄锆合金板制成的网格状结构,其具有以方形图案布置的17x17细胞。间隔栅格提供机械支撑并减少核燃料棒的流量诱导的振动。他们还提高了核燃料棒和周围冷却剂之间的传热。间隔栅格将非线性边界条件施加到接触点/表面处的梁。具体地,由于其固有的复杂性,间隔栅极存在双线性滞后。通过测试插入其中一个细胞中的刚性杆来测量间隔栅格所示的双线性滞后。然后通过外部谐波激发激发刚性杆,其激发频率在5Hz的步骤中的5Hz至50Hz范围内。首先由Caughey研究的Bilinear滞后模型被修饰,包括粘性阻尼,并用于解释实验结果。使用缓慢变化参数的方法来解决运动方程。首先,将间隔物栅格的测量力 - 位移环配有当前分析中描述的数值模型。找到模型响应和测量环之间的良好一致性,并且所识别的参数允许表征间隔网格施加的非线性边界条件。最后,使用Bilinear滞后模型解释了在研究下的两种配置的非线性响应。为两种配置获得了数值和实验结果之间的良好一致性。

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