首页> 外国专利> Ultrasonic technique for fluid flow speed measurement - using three sound converters fixed to prisms, two on one side of flow tube and electronic circuit to compensate for time delays

Ultrasonic technique for fluid flow speed measurement - using three sound converters fixed to prisms, two on one side of flow tube and electronic circuit to compensate for time delays

机译:用于流体流速测量的超声波技术-使用三个固定在棱镜上的声音转换器,两个在流量管的一侧以及电子电路来补偿时间延迟

摘要

In one example of the ultrasonic pick-up unit, two acoustic converters (1a, 1b) are mounted on an oblique face of a corresponding prism (2a, 2b) on either side of a hollow tube (3). The converters are typically of the Pb-Zr-Ti type. A fluid (4) flowing through the tube with a velocity V at an angle THETA to the normal to the light path, leads to a sound transit time, in addition to the delay time in the prisms, of T1(T2) = D/cost (C+Vsin THETA), where C is the sound velocity and the positive (negative) sign is taken for T1(T2) depending on the direction of fluid flow. Improved accuracy is obtained by adding a third prism abutting against the first (2a) so that an additional signal is obtained from reflection from the internal face of the hollow tube. The compensation signal is fed into the external electronic circuit, with a delay unit, a compensation circuit and an integrator.
机译:在超声拾取单元的一个示例中,两个声转换器(1a,1b)安装在中空管(3)两侧的相应棱镜(2a,2b)的斜面上。转换器通常为Pb-Zr-Ti型。以垂直于光路法线的角度THETA的速度V流过管子的流体(4)导致传声时间(除了棱镜中的延迟时间之外)为T1(T2)= D /成本(C + Vsin THETA),其中C是声速,T1(T2)的正(负)号取决于流体的流动方向。通过增加与第一棱镜(2a)邻接的第三棱镜,可以获得更高的精度,以便从中空管内表面的反射中获得额外的信号。补偿信号通过延迟单元,补偿电路和积分器馈入外部电子电路。

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