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首页> 外文期刊>Journal of Fluids and Structures >The dynamic response of Coriolis mass flow meters
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The dynamic response of Coriolis mass flow meters

机译:科里奥利质量流量计的动态响应

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摘要

The speed of response of commercial Coriolis meters to a step change in mass flow rate corresponds to a time constant which may range from 0.1 s to several seconds. This response is a result both of the dynamic response of the physical components of the meter and of the electronics and the computational algorithms used to convert that dynamic response into an estimate of the mass flow rate. A comprehensive investigation of the dynamic response is presented with a view to establishing the ultimate limits of the overall meter response. Attention is initially concentrated on a simple straight tube meter and analytical solutions are presented for the response to a step change in flow rate both for an undamped meter and for a meter with internal damping. These results are compared with results from a finite element model of the same meter and then the finite element modelling is extended to geometries typical of commercial meters. Finally, representative results are presented from an experimental study of the response of commercial meters to step changes in flow rate. A study of the essential components of the algorithm used in a meter leads to the conclusion that the time constant cannot be less than the period of one cycle of the meter drive. The analytical, finite element and experimental results all combine to show that the meters all respond in the period of one drive cycle but that the flow step induces fluctuations in the meter output which decay under the influence of the flow tube damping. It is the additional damping introduced in the signal processing to overcome these fluctuations which is responsible for the large observed time constants. Possible alternative approaches are discussed.
机译:商业科里奥利仪表对质量流量阶跃变化的响应速度对应于时间常数,其范围可能为0.1 s至几秒钟。该响应是仪表物理部件和电子设备的动态响应以及用于将该动态响应转换为质量流量估算值的计算算法的结果。提出了对动态响应的全面研究,以期确定仪表总响应的极限。最初,注意力集中在简单的直管流量计上,并针对无阻尼流量计和带内部阻尼的流量计,提出了对流量阶跃变化的响应的分析解决方案。将这些结果与相同电表的有限元模型的结果进行比较,然后将有限元建模扩展到商用电表的典型几何形状。最后,从对商用仪表对流量阶跃变化的响应的实验研究中得出了代表性的结果。对电表中使用的算法的基本组成部分的研究得出的结论是,时间常数不能小于电表驱动器的一个周期的周期。分析,有限元和实验结果共同表明,仪表都在一个驱动周期内响应,但流量阶跃引起仪表输出波动,并在流量管阻尼的影响下衰减。克服这些波动的是信号处理中引入的附加阻尼,这导致了较大的观测时间常数。讨论了可能的替代方法。

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