首页> 外文会议>ASME Pressure Vessels and Piping conference >EXPERIMENTAL DAMPING OF A HEAT EXCHANGE TUBE WITH A LARGE NUMBER OF SUPPORTS IN AIR AND WATER
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EXPERIMENTAL DAMPING OF A HEAT EXCHANGE TUBE WITH A LARGE NUMBER OF SUPPORTS IN AIR AND WATER

机译:空气和水中有大量支持的换热管的实验阻尼

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The flow induced vibration occurs frequently in a steam generator in the nuclear power plant. The large-scale steam generator has a large number of tube supports whose cell has rhombus-type shape, and there is a tiny clearance between tube and its support grid. The damping is very complex because of non-linearity and randomness. The experiment for damping was performed to investigate it with a number of 13 support spans both in air and water environment. The lower part of multi-span fixture was excited by root-mean-square random force with the range of 1-10 newton to get the frequency response function. The half-power bandwidth method was applied to obtain the damping ratio. The sensitivity of a number of spans was investigated in the range of 9 ~ 13. In addition, the damping was reviewed from a comparison with Pettigrew [1~4] and ASME B&PV Code [5].
机译:流动引起的振动经常发生在核电站的蒸汽发生器中。大型蒸汽发生器具有大量的管支架,其单元格呈菱形形状,并且管与其支架网格之间的间隙很小。由于非线性和随机性,阻尼非常复杂。进行了阻尼试验,以研究在空气和水环境中有13个跨度的支撑。用均方根随机力在1-10牛顿的范围内激发多跨夹具的下部,以获得频率响应函数。应用半功率带宽方法获得阻尼比。在9〜13的范围内研究了许多跨度的灵敏度。此外,通过与Pettigrew [1〜4]和ASME B&PV Code [5]的比较对阻尼进行了评估。

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