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Fluid bulk velocity and attenuation measurements in non-Newtonian liquids using a dipstick sensor

机译:使用量油尺传感器测量非牛顿液体中的流体体积速度和衰减

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This paper reports an evaluation of a method to measure acoustic fluid bulk properties in order to characterize the fluid. The method is based on a 'dipstick' that is inserted into the liquid of interest; a propagating interface wave, called the quasi-Scholte mode, is used to extract the necessary information. Quasi-Scholte mode measurements on four different silica-suspensions are compared to experiments in a conventional ultrasonic test cell. The results show that the liquid bulk velocity can accurately be retrieved by means of the new approach and errors range within the uncertainties imposed by the experimental setup (0.5percent). Further bulk velocity measurements on distilled water and a 5percent ethanol-distilled-water mixture over a range of temperatures illustrate that the method can successfully monitor small changes in velocity. The values of fluid attenuation measured by the two techniques agree well in their qualitative trends but quantitative differences of up to 20percent are encountered. Errors in the measurements are believed to be mainly due to geometrical features of the current setup.
机译:本文报告了一种评估声学流体体积特性以表征流体的方法的评估。该方法基于插入到目标液体中的“量油尺”。传播的界面波(称为准舒尔特模式)用于提取必要的信息。将四种不同硅胶悬浮液的准Scholte模式测量结果与常规超声测试池中的实验进行了比较。结果表明,液体体积速度可以通过新方法准确地获得,并且误差范围在实验设置所施加的不确定性范围内(0.5%)。在一定温度范围内对蒸馏水和5%乙醇-蒸馏水混合物进行的进一步整体速度测量表明,该方法可以成功监测速度的微小变化。两种技术测得的流体衰减值在定性趋势上非常吻合,但遇到的定量差异高达20%。据信测量中的误差主要是由于当前设置的几何特征。

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