Active control of the fluid pulse based on the FxLMS

In petroleum engineering, the performance of drilling fluid is the key factor affecting the drilling success. Drilling fluid rheology can be measured by tube measurement. Fluid pulsation will cause measurement deviation of differential pressure and flow velocity data during measurement, and it accum...

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Main Authors: Hai Yang, Jie Liu, Zexing Yang, Haibo Liang, Lizao Zhang, Jialing Zou
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2024-12-01
Series:Petroleum
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S240565612300041X
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author Hai Yang
Jie Liu
Zexing Yang
Haibo Liang
Lizao Zhang
Jialing Zou
author_facet Hai Yang
Jie Liu
Zexing Yang
Haibo Liang
Lizao Zhang
Jialing Zou
author_sort Hai Yang
collection DOAJ
description In petroleum engineering, the performance of drilling fluid is the key factor affecting the drilling success. Drilling fluid rheology can be measured by tube measurement. Fluid pulsation will cause measurement deviation of differential pressure and flow velocity data during measurement, and it accumulates when the flow curve is drawn. Finally, the accuracy of drilling fluid rheological pipe measurement is seriously affected. In view of the problem of fluid pulsation can seriously affect the accuracy of tube measurement. This paper proposed an algorithm based on Filtered-x least mean square (FxLMS). First, the active control strategy is studied, the mathematical model of electric regulating valve control is established, the FxLMS algorithm of variable step length is studied, the simulation model of the control system is established, and the control effect of different algorithms is compared. The dynamic experimental platform of fluid pulse active control for drilling fluid rheological pipe measurement is designed and built. The experimental data show that: after active control, the average relative error of drilling fluid shear force decreased by 179.6%, the average relative error of plastic viscosity decreased by 78.1%, and the average relative error of the apparent viscosity decreased by 25.5%. It proves that the active control algorithm can improve the accuracy of tube measurement more effectively.
format Article
id doaj-art-e69d57f8ea8b4d92976a53a9f3614c23
institution Kabale University
issn 2405-6561
language English
publishDate 2024-12-01
publisher KeAi Communications Co., Ltd.
record_format Article
series Petroleum
spelling doaj-art-e69d57f8ea8b4d92976a53a9f3614c232024-12-21T04:28:40ZengKeAi Communications Co., Ltd.Petroleum2405-65612024-12-01104745758Active control of the fluid pulse based on the FxLMSHai Yang0Jie Liu1Zexing Yang2Haibo Liang3Lizao Zhang4Jialing Zou5School of Mechanical and Electrical Engineering, Southwest Petroleum University, Chengdu, 610500, China; Corresponding author.School of Mechanical and Electrical Engineering, Southwest Petroleum University, Chengdu, 610500, ChinaCNPC Engineering Technology R&D Company Limited, Beijing, 102200, ChinaSchool of Mechanical and Electrical Engineering, Southwest Petroleum University, Chengdu, 610500, ChinaChengdu Drainage Co., Ltd, Chengdu, 610023, ChinaSchool of Mechanical and Electrical Engineering, Southwest Petroleum University, Chengdu, 610500, ChinaIn petroleum engineering, the performance of drilling fluid is the key factor affecting the drilling success. Drilling fluid rheology can be measured by tube measurement. Fluid pulsation will cause measurement deviation of differential pressure and flow velocity data during measurement, and it accumulates when the flow curve is drawn. Finally, the accuracy of drilling fluid rheological pipe measurement is seriously affected. In view of the problem of fluid pulsation can seriously affect the accuracy of tube measurement. This paper proposed an algorithm based on Filtered-x least mean square (FxLMS). First, the active control strategy is studied, the mathematical model of electric regulating valve control is established, the FxLMS algorithm of variable step length is studied, the simulation model of the control system is established, and the control effect of different algorithms is compared. The dynamic experimental platform of fluid pulse active control for drilling fluid rheological pipe measurement is designed and built. The experimental data show that: after active control, the average relative error of drilling fluid shear force decreased by 179.6%, the average relative error of plastic viscosity decreased by 78.1%, and the average relative error of the apparent viscosity decreased by 25.5%. It proves that the active control algorithm can improve the accuracy of tube measurement more effectively.http://www.sciencedirect.com/science/article/pii/S240565612300041XDrilling fluidActive controlFluid pulsationFXLMSRheology
spellingShingle Hai Yang
Jie Liu
Zexing Yang
Haibo Liang
Lizao Zhang
Jialing Zou
Active control of the fluid pulse based on the FxLMS
Petroleum
Drilling fluid
Active control
Fluid pulsation
FXLMS
Rheology
title Active control of the fluid pulse based on the FxLMS
title_full Active control of the fluid pulse based on the FxLMS
title_fullStr Active control of the fluid pulse based on the FxLMS
title_full_unstemmed Active control of the fluid pulse based on the FxLMS
title_short Active control of the fluid pulse based on the FxLMS
title_sort active control of the fluid pulse based on the fxlms
topic Drilling fluid
Active control
Fluid pulsation
FXLMS
Rheology
url http://www.sciencedirect.com/science/article/pii/S240565612300041X
work_keys_str_mv AT haiyang activecontrolofthefluidpulsebasedonthefxlms
AT jieliu activecontrolofthefluidpulsebasedonthefxlms
AT zexingyang activecontrolofthefluidpulsebasedonthefxlms
AT haiboliang activecontrolofthefluidpulsebasedonthefxlms
AT lizaozhang activecontrolofthefluidpulsebasedonthefxlms
AT jialingzou activecontrolofthefluidpulsebasedonthefxlms