Abstract

The transit-time ultrasonic gas flowmeter plays a vital part in the measurement field with its unique advantages. In recent years, it has developed into a research hotspot in the field of gas flow measurement. However, while the ultrasonic signal propagates in gas, the amplitude fluctuation of the ultrasonic signal is produced under the condition of energy attenuation and unstable flow field. This leads to inaccurate transit time of ultrasonic signal that causes flow calculation errors. Aiming at this problem, a signal processing method is proposed in this paper for the transit-time ultrasonic gas flowmeter based on the peak ratio characteristic value sequence (PRCVS). Through the research on the mathematical model of ultrasonic signal, the ratio of the amplitude of adjacent peaks is defined as the peak ratio characteristic value (PRCV) of the peak. According to the corresponding relationship between the PRCV and the peak serial number, a set of reference PRCVS is established. By matching the characteristic value of the ultrasonic signal with the reference characteristic value sequence, the peak serial number can be determined. In this research, the PRCVS-based signal processing method is applied to the gas flow measurement system based on time-to-digital converter (TDC) that has strict requirements on the peak serial number which can verify the validity of the method. The calibration experiment of basic measurement performance test and the unstable flow field experiment of the curved pipe were performed on the gas flow standard device, which verified the stability and validity of the method proposed in this paper.

Highlights

  • The aim of this work is to solve the problem of amplitude fluctuation of the ultrasonic signal when it propagates in gas

  • This paper defines the ratio of adjacent peak amplitude in the ultrasonic signal as the peak ratio characteristic value (PRCV) of the peak by analyzing the mathematical model of ultrasonic signal

  • When the transducer is unchanged, the PRCV of the ultrasonic signal of any amplitude is only related to the peak serial number

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Summary

Introduction

Gas flow measurement and monitoring plays a vital part in effectively managing and saving energy and natural resources [1]. Ultrasonic gas flowmeter is currently one of the fastest developing flowmeter technologies [2], which measures the one-way flow through a closed pipe system under normal conditions. As a gas flow measurement device, it plays a progressively vital part in natural gas trade, chemical industry, metallurgy, etc., in the field of gas transportation and energy saving. Because of the serious energy attenuation of ultrasonic signal in gas, the amplitude of the ultrasonic signal fluctuates [5,6]. High accuracy and stability should be haven in the signal processing method

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