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Experimental Study of the Eigenfrequency Shift Mechanism in a Blocked Pipe System

机译:阻塞管道系统中本征频移机制的实验研究

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Eigenfrequency shift in a pipe with a blockage is investigated experimentally. The experimental test rig consists of a reservoir-pipe-valve (RPV) system that contains a single partial blockage. Blockages with different lengths are considered. The experiments confirm the existence of certain frequency bands where waves reflect strongly from the blockage and other bands where waves reflect weakly (Bragg-type resonance). These bands agree with the theoretically derived Bragg resonance condition. It is found that the values of the resonant frequencies are highly sensitive to the wave speed. For example, a 4% error in wave speed results in an error in the eigenfrequency estimates that increases almost linearly from approximately 4% for the first mode to 60% for the seventh mode. A direct and efficient approach is proposed for using the Bragg resonance condition to detect blockages in pipes.
机译:实验研究了管道中本征频率的变化。实验测试台由一个包含单个部分堵塞物的储油管阀门(RPV)系统组成。考虑不同长度的阻塞。实验证实存在某些频带,其中波从阻塞处反射强烈,而其他频带中的波反射较弱(布拉格型共振)。这些频带与理论推导的布拉格共振条件一​​致。发现谐振频率的值对波速高度敏感。例如,波速的4%误差会导致本征频率估计中的误差几乎线性地增加,从第一模式的大约4%增加到第七模式的60%。提出了一种直接有效的方法,利用布拉格共振条件检测管道中的堵塞。

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