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The Schoch effect to distinguish between different liquids in closed containers

机译:肖克效应可区分密闭容器中的不同液体

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摘要

In different industrial branches, it is necessary to characterize liquids in closed containers. For small cans, accessibility to both sides is almost trivial. However, in industries in which larger containers are used, and especially in the dock industry, only one side is accessible practically; and damping often prevents through-transmission ultrasonic measurements or pulse echo techniques. It is known that built-in sensors can be used to determine density and wave velocity of liquids; but normally containers are not equipped with such sensors. It is also known that differences in the reflection coefficient at a solid-liquid interface can determine the density and sound velocity of liquids, but only if the difference in acoustical impedance between the solid and the liquid is small. For most containers this condition is not provided; therefore, a more sensitive method is needed. This paper reports simulations that show how identical containers, having different liquids inside, can be distinguished from one another by means of differences in the Schoch effect at a Lamb wave angle of incidence for harmonic-bounded ultrasonic beams.
机译:在不同的工业部门中,必须对密闭容器中的液体进行表征。对于小罐头来说,两面都容易接近。但是,在使用较大集装箱的行业中,尤其是在码头行业中,实际上只有一侧是可接近的。阻尼通常会阻止透射式超声波测量或脉冲回波技术。众所周知,可以使用内置传感器来确定液体的密度和波速。但通常情况下,容器没有配备此类传感器。众所周知,固液界面的反射系数差异可以决定液体的密度和声速,但前提是固体和液体之间的声阻抗差异很小。对于大多数容器,没有提供此条件。因此,需要一种更灵敏的方法。本文报道了模拟结果,这些模拟结果显示了如何通过谐波约束的超声波束在兰姆波入射角处的Schoch效应之间的差异来区分内部具有不同液体的相同容器。

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