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Ultrasonic Density Measurement of Liquids - A Novel Method using a Generalized Singular Value Decomposition based System Identification

机译:超声密度测量液体 - 一种基于广义奇异值分解的新型方法

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Electrical conductance of an ultrasonic transducer depends on the applied acoustic load. Provided one mechanical port charged with known impedance, and the other port exposed to a fluid, the resulting load is determined by the acoustic impedance of the liquid. This work applies Generalized Singular Value Decomposition (GSVD) to determine the transfer function of a pulsed transducer attached to a reference by analyzing the reverberating voltage at the electrical port. The transfer function gives the conductance spectrum as a function of acoustic load. The Butterworth-van-Dyke equivalent circuit is used to derive load impedance from conductance. With acoustic impedance being the product of sound velocity and density, speed of sound recording permits a density measurement of liquids. The proposed method has been successfully tested for water- and oil-based liquids. This work shows experimental results and discusses the influence of temperature and liquid inhomogeneities.
机译:超声换能器的电导取决于所施加的声载荷。提供一种充满了已知阻抗的机械端口,并且暴露于流体的另一个端口,所得到的负载由液体的声阻抗确定。这项工作适用于广义奇异值分解(GSVD)来确定通过分析电端口处的混响电压附着在参考附图的脉冲换能器的传递函数。传递函数作为声载的函数给出电导谱。 Butterworth-Van-Dyke等效电路用于导出导电的负载阻抗。通过声学阻抗是声速和密度的乘积,声音录音速度允许液体的密度测量。所提出的方法已成功测试水和油基液体。这项工作显示了实验结果,并探讨了温度和液体不均匀性的影响。

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