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超声密度测量池设计及非理想效应模拟

Ultrasonic density measurement cell design and simulation of non-ideal effects.

作者信息

Higuti Ricardo Tokio, Buiochi Flávio, Adamowski Júlio Cezar, de Espinosa Francisco Montero

机构信息

UNESP - Universidade Estadual Paulista, Departamento de Engenharia Elétrica, Avenida Brasil 56, 15385-000 Ilha Solteira, SP, Brazil.

出版信息

Ultrasonics. 2006 Jul;44(3):302-9. doi: 10.1016/j.ultras.2006.03.003. Epub 2006 Apr 21.

Abstract

This paper presents a theoretical analysis of a density measurement cell using an unidimensional model composed by acoustic and electroacoustic transmission lines in order to simulate non-ideal effects. The model is implemented using matrix operations, and is used to design the cell considering its geometry, materials used in sensor assembly, range of liquid sample properties and signal analysis techniques. The sensor performance in non-ideal conditions is studied, considering the thicknesses of adhesive and metallization layers, and the effect of residue of liquid sample which can impregnate on the sample chamber surfaces. These layers are taken into account in the model, and their effects are compensated to reduce the error on density measurement. The results show the contribution of residue layer thickness to density error and its behavior when two signal analysis methods are used.

摘要

本文提出了一种密度测量单元的理论分析方法,该方法使用由声学和电声传输线组成的一维模型来模拟非理想效应。该模型通过矩阵运算实现,并用于根据其几何形状、传感器组件中使用的材料、液体样品特性范围和信号分析技术来设计测量单元。研究了非理想条件下传感器的性能,考虑了粘合剂层和金属化层的厚度,以及可能浸渍在样品腔表面的液体样品残留物的影响。这些层在模型中被考虑在内,并对其影响进行补偿以减少密度测量的误差。结果显示了残留层厚度对密度误差的影响以及使用两种信号分析方法时的行为。

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