Design and simulation of multi-sensor insertion flowmeter adaptive to non-uniform velocity profiles

Quansheng Duan, Renting Ma, Yuting He
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Abstract

Flowrate is one of the significant parameters in energy and resource engineering. This paper presents a multi-sensor insertion flow measurement system and a flow measurement method that includes an integration procedure based on cubic B-spline interpolation. The flow field around measuring section at different straight pipe length in circular conduit was simulated by FLUENT software and a comparative analysis of three measurement methods was presented - (1)single-sensor measurement; (2)multi-sensor measurement based on arithmetic average method; (3)multi-sensor measurement based on cubic B-spline interpolation method. The result of the comparative analysis suggested that the multi-sensor measurement method based on cubic B-spline interpolation could be adaptive to non-uniform velocity profiles and considerably improve the measuring accuracy of fluid flowrate by means of insertion flowmeters for non-fully developed pipe flow.
自适应非均匀流速剖面的多传感器插入式流量计设计与仿真
流量是能源资源工程中的重要参数之一。提出了一种多传感器插入式流量测量系统和一种基于三次b样条插值积分的流量测量方法。利用FLUENT软件对圆形管道内不同直管长度测量段周围的流场进行了模拟,并对三种测量方法进行了对比分析:(1)单传感器测量;(2)基于算术平均法的多传感器测量;(3)基于三次b样条插值法的多传感器测量。对比分析结果表明,基于三次b样条插值的多传感器测量方法能够适应非均匀流速剖面,并能显著提高插入式流量计对非完全发育管道流的流量测量精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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