Invariant flow rate measurement system for three-component oil-gas-water flow

被引:1
|
作者
Dayev, Zh. A. [1 ]
Kairakbaev, A. A. [1 ]
机构
[1] Baishev Univ, Aktobe, Kazakhstan
关键词
Multicomponent flow; Flow rate; Flow meters; Multichannelling principle;
D O I
10.1016/j.flowmeasinst.2024.102655
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
The paper presents an invariant flow rate measurement system for individual components for a flow that consists of oil, water, and gas. The proposed flow measurement system is a continuation of the work of the authors, which is based on the application of the multichannelling principle of invariance theory. The paper proposes and discusses the structure of the invariant system for measuring the flow rate of oil-water-gas, analytical expressions are obtained for the implementation of algorithms for measuring the flow rate of individual substances that make up the flow. The uncertainty of the flow rate measurement results was assessed separately for oil, water, and gas. In this work, it is shown that by selecting flow meters of the main and additional channels with an uncertainty of less than 0.5 %, for almost any ratio of components in the additional pipeline, it is possible to measure the flow rate of water or oil with an uncertainty of less than 3 %, and the flow rate of the gas fraction in free form can be measured with an uncertainty value of less than 1 %. The paper discusses the practical aspects of the implementation of an industrial prototype of the system and the characteristics that affect its accuracy and efficiency.
引用
收藏
页数:7
相关论文
共 47 条
  • [21] Gas-Liquid Two-Phase Upward Flow through a Vertical Pipe: Influence of Pressure Drop on the Measurement of Fluid Flow Rate
    Ganat, Tarek A.
    Hrairi, Meftah
    ENERGIES, 2018, 11 (11)
  • [22] Evaluating the Selection of the Physical Parameters of the Moisture Content of a Gas to Complement Standard Conditions for the Measurement of Flow Rate
    I. S. Kruk
    Measurement Techniques, 2013, 56 : 635 - 640
  • [23] Evaluating the Selection of the Physical Parameters of the Moisture Content of a Gas to Complement Standard Conditions for the Measurement of Flow Rate
    Kruk, I. S.
    MEASUREMENT TECHNIQUES, 2013, 56 (06) : 635 - 640
  • [24] Gas Flow-Rate Measurement Using A Transit-Time Multi-Path Ultrasonic Flow Meter Based on PSO-SVM
    Tang, Xiaoyu
    Yang, Qinmin
    Sun, Youxian
    2017 IEEE INTERNATIONAL INSTRUMENTATION AND MEASUREMENT TECHNOLOGY CONFERENCE (I2MTC), 2017, : 1794 - 1799
  • [25] A Gas Flow Measurement System Based on Lead Zirconate Titanate Piezoelectric Micromachined Ultrasonic Transducer
    Liu, Tao
    Li, Zhihao
    Zhang, Jiahuan
    Li, Dongxiao
    Dou, Hanjie
    Wu, Pengfan
    Yang, Jiaqian
    Zhang, Wangyang
    Mu, Xiaojing
    MICROMACHINES, 2024, 15 (01)
  • [26] Gas detection strategy to suppress flow rate interference baesd on semiconductor sensor dynamic temperature modulation measurement
    Ji H.
    Zhu H.
    Wang H.
    Kong L.
    Cheng Z.
    Yuan Z.
    Meng F.
    Sensors and Actuators B: Chemical, 2023, 393
  • [27] Gas-Liquid Flow Rate Measurement Using a Twin-Plane Capacitive Sensor and a Venturi Meter
    Wrasse, Aluisio Do N.
    Bertoldi, Dalton
    Dos Santos, Eduardo N.
    Morales, Rigoberto E. M.
    Da Silva, Marco J.
    IEEE ACCESS, 2019, 7 : 135933 - 135941
  • [29] Rapid On-Line and Non-Invasive Flow Rate Measurement of Gas-Liquid Slug Flow Based Only on Basic Differential Pressure Fluctuations
    Guo, Wei
    Wang, Li
    Tong, Lige
    Kong, Fulin
    Liu, Chuanping
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2023, 72
  • [30] Effect of pad water flow rate on evaporative cooling system efficiency in laying hen housing
    Ghoname, Mohamed Saied
    JOURNAL OF AGRICULTURAL ENGINEERING, 2020, 51 (04) : 209 - 219