首页> 外文期刊>Journal of Sound and Vibration >Predicting phase shift effects for vibrating fluid-conveying pipes due to Coriolis forces and fluid pulsation
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Predicting phase shift effects for vibrating fluid-conveying pipes due to Coriolis forces and fluid pulsation

机译:预测由于科里奥利力和流体脉动而使流体输送管振动的相移效应

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摘要

Knowing the influence of fluid flow perturbations on the dynamic behavior of fluid-conveying pipes is of relevance, e.g., when exploiting flow-induced oscillations of pipes to determine the fluids mass flow or density, as done with Coriolis flow meters (CFM). This could be used in the attempts to improve accuracy, precision, and robustness of CFMs. A simple mathematical model of a fluid-conveying pipe is formulated and the effect of pulsating fluid flow is analyzed using a multiple time scaling perturbation analysis. The results are simple analytical predictions for the transverse pipe displacement and approximate axial shift in vibration phase. The analytical predictions are tested against pure numerical solution using representative examples, showing good agreement. Fluid pulsations are predicted not to influence CFM accuracy, since proper signal filtering is seen to allow the determination of the correct mean phase shift. Large amplitude motions, which could influence CFM robustness, do not appear to be induced by the investigated fluid pulsation. Pulsating fluid of the combination resonance type could, however, influence CFMs robustness, if induced pipe motions go unnoticed and uncontrolled during CFM operation by feedback control. The analytical predictions offer an immediate insight into how fluid pulsation affects phase shift, which is a quantity measured by CFMs to estimate the mass flow, and lead to hypotheses for more complex geometries, i.e. industrial CFMs. The validity of these hypotheses is suggested to be tested using laboratory experiments, or detailed computational models taking fluidstructure interaction into account.
机译:例如,当利用科里奥利流量计(CFM)来利用管道的流致振荡确定流体的质量流量或密度时,了解流体流量扰动对流体输送管道动态行为的影响就很重要。这可用于尝试提高CFM的准确性,精度和鲁棒性。建立了一个简单的流体输送管数学模型,并使用多次标度扰动分析来分析脉动流体流动的影响。结果是对横向管位移和振动相中近似轴向位移的简单分析预测。使用有代表性的示例对纯数值解进行了测试预测,显示出良好的一致性。预测流体脉动不会影响CFM精度,因为可以看到适当的信号滤波可以确定正确的平均相移。可能影响CFM鲁棒性的大振幅运动似乎不是由研究的流体脉动引起的。但是,如果在CFM操作期间通过反馈控制引起的管道运动不被注意和不受控制,则组合共振类型的脉动流体可能会影响CFM的耐用性。分析预测提供了关于流体脉动如何影响相移的直接见解,相移是由CFM测量以估计质量流量的量,并导致对更复杂几何形状(即工业CFM)的假设。建议使用实验室实验或考虑流体结构相互作用的详细计算模型来检验这些假设的有效性。

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