A model for multiphase flow velocity calculation in pipelines based on ultrasonic sensors

被引:2
|
作者
Liang, Haibo [1 ]
Song, Chuanhao [1 ]
Wang, Ren [2 ]
Yang, Hai [1 ]
机构
[1] Southwest Petr Univ, Sch Mechatron Engn, Chengdu 610500, Sichuan, Peoples R China
[2] CNPC Engn Technol R&D Co Ltd, Beijing 102206, Peoples R China
基金
中国国家自然科学基金;
关键词
GAS; VORTEX;
D O I
10.1063/5.0165640
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In the petroleum and natural gas industry, a wide variety of multiphase fluids are prevalent, and precise measurement of their flow velocity in pipelines holds significant importance for different stages of well drilling and construction. However, due to the presence of large solid particles and the corrosive nature of the liquid phase in multiphase fluids within the petroleum industry, invasive measurement methods struggle to maintain long-term acceptable detection accuracy. Therefore, the non-contact fluid flow velocity measurement method based on ultrasonic sensors exhibits substantial research value. Nonetheless, when employing this approach for pipeline multiphase fluid flow velocity measurement, the abundance of background interference noise at the site poses challenges in Doppler echo signal reconstruction and results in lower precision for frequency shift extraction, leading to considerable errors in flow velocity calculation results. To address this issue, the present study utilizes a transmit-receive separated continuous wave ultrasonic sensor. First, a mathematical model is developed for the superimposed signal of ultrasonic Doppler echoes within the pipeline. Next, a novel signal reconstruction method is proposed by employing Chebyshev polynomials for interpolation computation of the sampled discrete signals. Subsequently, a Doppler shift model is introduced, leading to the formulation of a new model for multiphase flow velocity calculation in pipelines based on ultrasonic sensors. Finally, a comparison experiment for full-pipe multiphase flow velocity detection is conducted to validate the computational performance of the new model. The experimental results show that, compared with the FFT model and the conventional cross correlation model, the comprehensive meter factor of the ultrasonic flow measurement system with the new model is reduced by 0.024 445, the accuracy is reduced by 2.98%, the nonlinear error is reduced by 2.4405%, the average relative error is reduced by 0.646%, the standard deviation is reduced by 0.045 175, and the root mean squared error is reduced by 0.029 615.
引用
收藏
页数:13
相关论文
共 50 条
  • [41] Wax deposition law and OLGA-Based prediction method for multiphase flow in submarine pipelines
    Xie, Ying
    Meng, Jin
    Chen, Diwen
    PETROLEUM, 2022, 8 (01) : 110 - 117
  • [42] CALCULATION OF FREE VOLUME FROM ULTRASONIC VELOCITY
    ALWAN, S
    RAMAMOORTHY, K
    CURRENT SCIENCE, 1978, 47 (10): : 334 - 335
  • [43] Wax deposition law and OLGA-Based prediction method for multiphase flow in submarine pipelines
    Ying Xie
    Jin Meng
    Diwen Chen
    Petroleum, 2022, (01) : 110 - 117
  • [44] The Flow Field Analysis and Flow Calculation of Ultrasonic Flowmeter Based on the Fluent Software
    Guo, Ling
    Sun, Yue
    Liu, Ling
    Shen, Zhixi
    Gao, Ruizhen
    Zhao, Kai
    ABSTRACT AND APPLIED ANALYSIS, 2014,
  • [45] Calculation of the flow velocity of a siphon
    Zheng, Jun
    Guo, Jichao
    Wang, Jiongchao
    Zhang, Yingqiu
    Lue, Qing
    Sun, Hongyue
    PHYSICS OF FLUIDS, 2021, 33 (01)
  • [46] Investigation on detonation velocity of aluminized explosives based on disequilibrium multiphase model
    Pei, Hong-Bo
    Nie, Jian-Xin
    Qin, Jian-Feng
    Baozha Yu Chongji/Explosion and Shock Waves, 2013, 33 (03): : 311 - 314
  • [47] A New Non-Darcy Flow Model for Low-Velocity Multiphase Flow in Tight Reservoirs
    Yi Xiong
    Jinbiao Yu
    Hongxia Sun
    Jiangru Yuan
    Zhaoqin Huang
    Yu-shu Wu
    Transport in Porous Media, 2017, 117 : 367 - 383
  • [48] A New Non-Darcy Flow Model for Low-Velocity Multiphase Flow in Tight Reservoirs
    Xiong, Yi
    Yu, Jinbiao
    Sun, Hongxia
    Yuan, Jiangru
    Huang, Zhaoqin
    Wu, Yu-shu
    TRANSPORT IN POROUS MEDIA, 2017, 117 (03) : 367 - 383
  • [49] Experimental Determination Influence of Flow Disturbances behind the Knife Gate Valve on the Indications of the Ultrasonic Flow Meter with Clamp-On Sensors on Pipelines
    Piechota, Piotr
    Synowiec, Piotr
    Andruszkiewicz, Artur
    Wedrychowicz, Wieslaw
    Wroblewska, Elzbieta
    Mrowiec, Andrzej
    SENSORS, 2023, 23 (10)
  • [50] Continuous ultrasonic flow measurement for aerospace small pipelines
    Chen, Yong
    Chen, Yi
    Hu, Shengchao
    Ni, Zhangsong
    ULTRASONICS, 2021, 109