首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >USING ULTRASONIC SIGNAL REFLECTION TO CHARACTERIZE THE DENSITY AND VISCOSITY OF FLUIDS AND SLURRIES
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USING ULTRASONIC SIGNAL REFLECTION TO CHARACTERIZE THE DENSITY AND VISCOSITY OF FLUIDS AND SLURRIES

机译:使用超声波信号反射来表征流体和稀浆的密度和粘度

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Ultrasonic signals can be used to interrogate many forms of two-phase systems, dense slurry-laden and three-phase suspensions. This paper describes using ultrasonic signal reflection at a fluid-sensor interface to characterize fluid and slurry density and viscosity. The sensor consists of a series of transducers mounted on a wedge with the base of the wedge in contact with the liquid. Ultrasonic beams, striking the wedge base at several angles, are reflected at the base-liquid interface to the receive transducers. The amount of reflection at this interface depends upon the density of the liquid, the speed of sound in the liquid, and the wedge parameters. The response of a shear wave transducer, in conjunction with a density measurement, is used to determine the viscosity. The sensor can be mounted in a pipeline configuration or submerged in a tank for process control of food products. Novel features include: the small size of the probe and the sensor robustness. Performance is not affected by fluid flow rate, entrained air, or vibration. Experimental measurements of the density and viscosity for fluids and slurries are presented.
机译:超声波信号可用于询问多种形式的两相系统,浓浆液和三相悬浮液。本文介绍了在流体-传感器界面使用超声信号反射来表征流体和浆液的密度和粘度。传感器由安装在楔块上的一系列传感器组成,楔块的底部与液体接触。超声波束以几个角度撞击楔形底座,在底座-液体界面处反射到接收换能器。在该界面处的反射量取决于液体的密度,液体中的声速和楔形参数。剪切波传感器的响应与密度测量值一起用于确定粘度。传感器可以安装在管道中,也可以浸入储罐中,以控制食品的过程。新颖的功能包括:探头的小尺寸和传感器的坚固性。性能不受流体流速,夹带的空气或振动的影响。提出了流体和浆料的密度和粘度的实验测量。

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