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利用多次反射法测定液体的密度、超声速度、声阻抗、反射和吸收系数。

Density, ultrasound velocity, acoustic impedance, reflection and absorption coefficient determination of liquids via multiple reflection method.

机构信息

Technische Universität München, Bio-PAT (Bio-Process Analysis Technology), Freising 85354, Germany.

出版信息

Ultrasonics. 2015 Mar;57:65-71. doi: 10.1016/j.ultras.2014.10.017. Epub 2014 Oct 30.

Abstract

The accuracy of density, reflection coefficient, and acoustic impedance determination via multiple reflection method was validated experimentally. The ternary system water-maltose-ethanol was used to execute a systematic, temperature dependent study over a wide range of densities and viscosities aiming an application as inline sensor in beverage industries. The validation results of the presented method and setup show root mean square errors of: 1.201E-3 g cm(-3) (±0.12%) density, 0.515E-3 (0.15%) reflection coefficient and 1.851E+3 kg s(-1) m(-2) (0.12%) specific acoustic impedance. The results of the diffraction corrected absorption showed an average standard deviation of only 0.12%. It was found that the absorption change shows a good correlation to concentration variations and may be useful for laboratory analysis of sufficiently pure liquids. The main part of the observed errors can be explained by the observed noise, temperature variation and the low signal resolution of 50 MHz. In particular, the poor signal-to-noise ratio of the second reflector echo was found to be a main accuracy limitation. Concerning the investigation of liquids the unstable properties of the reference material PMMA, due to hygroscopicity, were identified to be an additional, unpredictable source of uncertainty. While dimensional changes can be considered by adequate methodology, the impact of the time and temperature dependent water absorption on relevant reference properties like the buffer's sound velocity and density could not be considered and may explain part of the observed deviations.

摘要

通过多次反射法测定密度、反射系数和声阻抗的准确性已通过实验得到验证。使用水-麦芽糖-乙醇三元体系,在宽密度和粘度范围内进行了系统的、依赖温度的研究,旨在将其作为饮料工业中的在线传感器。所提出的方法和设置的验证结果显示均方根误差为:1.201E-3 g cm(-3)(±0.12%)密度、0.515E-3(0.15%)反射系数和 1.851E+3 kg s(-1) m(-2)(0.12%)特定声阻抗。经修正后的衍射吸收结果的平均值标准偏差仅为 0.12%。结果表明,吸收变化与浓度变化具有很好的相关性,可能对足够纯净液体的实验室分析有用。观察到的误差的主要部分可以用观察到的噪声、温度变化和 50 MHz 的低信号分辨率来解释。特别是,发现第二个反射器回波的较差信噪比是主要的精度限制。关于液体的研究,由于吸湿性,发现参考材料 PMMA 的不稳定特性是另一个不可预测的不确定性来源。虽然可以通过适当的方法考虑尺寸变化,但无法考虑水吸收对相关参考特性(如缓冲器声速和密度)的时间和温度依赖性的影响,这可能部分解释了观察到的偏差。

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