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首页> 外文期刊>Journal of nuclear engineering and radiation science >A Study of Acoustic Wave Resonance in Water-Filled Tubes With Different Wall Thicknesses and Materials
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A Study of Acoustic Wave Resonance in Water-Filled Tubes With Different Wall Thicknesses and Materials

机译:具有不同壁厚和材料的水填充管中声波共振的研究

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Acoustic resonance of a fluid-filled tube with closed and open outlet ends for zero and turbulent mean flows is investigated both experimentally and numerically for different wall materials and thicknesses. The main goal is to create a data bank of acoustic wave resonance in fluid-filled tubes at a frequency range of 20-500 Hz to validate and verify numerical prediction models used by the nuclear industry and to determine if there is a better method with existing technology. The experimental results show that there is a strong effect of turbulent flow, wall material, and wall thickness on resonant amplitudes at frequencies above ~250 Hz. A numerical investigation is performed solving the linear wave equation with constant and frequency-dependent damping terms and a computational fluid dynamic (CFD) code. Comparing the one-dimensional (1D) and CFD results shows that CFD solution yields better predictions of both resonant frequency and amplitude than the 1D solution without the need for simplified added damping methods, which are required by the 1D methodology. This finding is valid especially for frequencies higher than ~300 Hz.
机译:具有闭合和开口出口的流体填充管的声谐振,用于在实验和数值上进行零和湍流平均流动,用于不同的壁材料和厚度。主要目标是在20-500Hz的频率范围内在流体填充管中创建声波共振的数据库,以验证和验证核工业使用的数值预测模型,并确定是否存在更好的方法技术。实验结果表明,在〜250Hz以上频率的谐振幅度上存在强烈的湍流,壁材料和壁厚效果。用恒定和频率依赖的阻尼术语和计算流体动态(CFD)代码来执行数值研究和求解线性波方程。比较一维(1D)和CFD结果表明,CFD溶液比1D解决方案产生谐振频率和幅度的更好预测,而无需简化的添加阻尼方法,这是由1D方法所需的。此发现特别适用于高于〜300 Hz的频率。

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