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Experimental investigation of zero phase shift effects for Coriolis flowmeters due to pipe imperfections

机译:管道缺陷对科里奥利流量计的零相移影响的实验研究

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Theoretical investigations of a single, straight, vibrating, fluid-conveying pipe have resulted in simple analytical expressions for the approximate prediction of the spatial shift in vibration phase. The expressions have lead to hypotheses for real Coriolis flowmeters (CFMs). To test these, the flexural vibrations of two bent, parallel, non-fluid-conveying pipes are studied experimentally, employing an industrial CFM. Special attention has been paid on the phase shift in the case of zero mass flow, i.e. the zero shift, caused by various imperfections to the "perfect" CFM, i.e. non-uniform pipe damping and mass, and on ambient temperature changes. Experimental observations confirm the hypothesis that asymmetry in the axial distribution of damping will induce zero shifts similar to the phase shifts due to fluid flow. Axially symmetrically distributed damping was observed to influence phase shift at an order of magnitude smaller than the primary effect of mass flow, while small added mass and ambient temperature changes induced zero shifts two orders of magnitude smaller than the phase shifts due to mass flow. The order of magnitude of the induced zero shifts indicates that non-uniform damping, added mass as well as temperature changes could be causes contributing to a time-varying measured zero shift, as observed with some commercial CFMs. The conducted experimental tests of the theoretically based hypotheses have shown that simple mathematical models and approximate analysis allow general conclusions, that may provide a direct insight, and help increasing the benefit of time consuming numerical simulations and laboratory experiments.
机译:对单个直的,振动的,流体输送管的理论研究得出了简单的分析表达式,用于近似预测振动相中的空间位移。这些表达式导致了真正的科里奥利流量计(CFM)的假设。为了测试这些,使用工业CFM对两条弯曲的,平行的,非流体输送管道的弯曲振动进行了实验研究。对于零质量流量情况下的相移,即由于“完美” CFM的各种缺陷(即,不均匀的管道阻尼和质量)引起的零偏移,以及环境温度变化,已经给予了特别的关注。实验观察证实了这样的假设,即阻尼轴向分布中的不对称会引起零位移,类似于由于流体流动引起的相位移。观察到轴向对称分布的阻尼对相移的影响比质量流量的主要影响小一个数量级,而较小的附加质量和环境温度变化引起的零位移比由于质量流引起的相移小两个数量级。感应零位移的数量级表明,某些商用CFM观察到,不均匀的阻尼,增加的质量以及温度变化可能是导致随时间变化的零位移的原因。对基于理论的假设进行的实验测试表明,简单的数学模型和近似分析可以得出一般性结论,这些结论可能会提供直接的见解,并有助于增加耗时的数值模拟和实验室实验的收益。

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