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槽道式标准气体实流检定系统设计

崔正智永 禹静 孔明 王鹏 梁晓瑜 张学腾 吴丹

传感技术学报2026,Vol.39Issue(4):693-701,9.
传感技术学报2026,Vol.39Issue(4):693-701,9.DOI:10.3969/j.issn.1004-1699.2026.04.001

槽道式标准气体实流检定系统设计

Research on Channel Type Standard Gas Real Flow Calibration System

崔正智永 1禹静 1孔明 1王鹏 1梁晓瑜 1张学腾 2吴丹2

作者信息

  • 1. 中国计量大学计量测试工程学院,浙江 杭州 310018
  • 2. 大庆油田设计院有限公司,黑龙江 大庆 163712
  • 折叠

摘要

Abstract

In order to solve the problems of long inspection cycle,low inspection efficiency,and poor stability of current gas real flow calibration standard devices,a miniaturized gas real flow calibration system is designed based on the standard meter method using a channel flowmeter as the standard meter.Firstly,the principle of the standard meter gas flow calibration system is explained,the per-formance indicators of commonly used flow meters in the industrial field are compared,and it is proved that the channel flow meter is feasible as the standard meter for gas flow calibration system.Secondly,the overall system pipeline and pipe diameter are designed,the impact of upstream bend pipe distance on the measurement performance of the standard meter is simulated.The system pipeline is opti-mized through overall model simulation,the horizontal velocity distribution of the channel flowmeter section and the vertical velocity dis-tribution of the channel flowmeter inlet/outlet section in numerical simulation are extracted,and the optimal pipeline design model is ul-timately determined.Finally,under the operating conditions of a temperature of 20℃and a pressure of 101.325 kPa,experiment is con-ducted with dry air of ρ0=1.205 kg/m3.Based on the experimental data,the outflow coefficient of the channel standard meter is calcu-lated to be 0.944 5,and the overall system experimental repeatability is 0.048%.

关键词

实流检定系统/槽道式流量计/数值模拟/流出系数/重复性

Key words

real flow calibration system/channel flowmeter/numerical simulation/discharge coefficient/repeatability

分类

机械制造

引用本文复制引用

崔正智永,禹静,孔明,王鹏,梁晓瑜,张学腾,吴丹..槽道式标准气体实流检定系统设计[J].传感技术学报,2026,39(4):693-701,9.

基金项目

中国计量大学基本科研业务项目(2023YW45) (2023YW45)

传感技术学报

1004-1699

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