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Self-Monitoring Ultrasonic Gas Flow Meter Based on Vortex and Correlation Method

机译:基于涡旋和相关方法的超声波自监测气体流量计

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Ultrasound is advantageous for gas flow velocity measurements, owing to its high sensitivity to all kinds of turbulences in the streaming fluid. The cross-correlation method and vortex measurement behind a bluff body have been proven to be good. The most important and difficult problem is ultrasound signal processing. A complex modulated signal has be demodulated by undersampling. The real and imaginary parts of the complex signal can be determined by Hilbert transformation. The demodulated phase or amplitude signal can be applied to cross-correlation functions for the detection of flow velocity. The vortex frequency can be detected by a simple analog signal processing device. The combination of vortex and cross-correlation measurements results in a self-monitoring system. The pattern of a group of vortices is used to determine the transition time of the fluid between two sensor pairs. Measurement results show that the relative error of gas flow velocity with the bluff body is evidently smaller than that without the bluff body.
机译:超声波对气体流速的测量是有利的,因为它对流动流体中的各种湍流具有很高的灵敏度。虚张声势体后面的互相关方法和涡流测量被证明是好的。最重要和最困难的问题是超声信号处理。复调制信号已通过欠采样进行解调。复信号的实部和虚部可以通过希尔伯特变换来确定。可以将解调后的相位或幅度信号应用于互相关函数,以检测流速。涡流频率可以通过简单的模拟信号处理设备进行检测。涡旋和互相关测量的组合产生了一个自我监测系统。一组涡旋的模式用于确定两个传感器对之间的流体过渡时间。测量结果表明,带有钝体的气体流速的相对误差明显小于没有钝体的气体流速的相对误差。

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