Introduction and investigation of magnetic location system for steam-assisted gravity drainage dual-horizontal heavy oil wells

Steam-assisted gravity drainage has been proven to be an effective oil recovery method, and the technology of magnetic location is the key to steam-assisted gravity drainage. In view of the rapid development of this technology in China, a new magnetic location system with intellectual property right...

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Main Authors: Yong Chen, Hao Yi, Chuan He
Format: Article
Language:English
Published: SAGE Publishing 2018-09-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/1687814018798978
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spelling doaj-b07a846f347b4267be1879a0e1e4c0c22020-11-25T02:52:40ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402018-09-011010.1177/1687814018798978Introduction and investigation of magnetic location system for steam-assisted gravity drainage dual-horizontal heavy oil wellsYong Chen0Hao Yi1Chuan He2School of Mechatronic Engineering, Southwest Petroleum University, Chengdu, ChinaNorthwest Oilfield Branch, Sinopec, Urumqi, ChinaSchool of Mechatronic Engineering, Southwest Petroleum University, Chengdu, ChinaSteam-assisted gravity drainage has been proven to be an effective oil recovery method, and the technology of magnetic location is the key to steam-assisted gravity drainage. In view of the rapid development of this technology in China, a new magnetic location system with intellectual property rights was developed in this article, including mechanical parts and circuit section of detection system. Specific structure, operating principle, and technical parameters of magnetic source generator and detection system were designed and analyzed. The ground test results show that the source generator is powered by an alternating current of 4–7 A, the detection system can probe the magnetic field signal 25 m away from the magnetic source generator, and the measurement error is less than 3% by comparison of measured with actual spacing distance. The steam-assisted gravity drainage dual-horizontal well group in Zhong 37 Well block in Fengcheng Oilfield is chosen for further experiment with the developed magnetic location technology. The results of field experiment show the trajectories of Wells I (injection well) and P (production well) are basically matched in the horizontal projection, and the measurement error is within the allowable range. The magnetic location system developed in this article can meet the operational requirement in steam-assisted gravity drainage dual-horizontal wells.https://doi.org/10.1177/1687814018798978
collection DOAJ
language English
format Article
sources DOAJ
author Yong Chen
Hao Yi
Chuan He
spellingShingle Yong Chen
Hao Yi
Chuan He
Introduction and investigation of magnetic location system for steam-assisted gravity drainage dual-horizontal heavy oil wells
Advances in Mechanical Engineering
author_facet Yong Chen
Hao Yi
Chuan He
author_sort Yong Chen
title Introduction and investigation of magnetic location system for steam-assisted gravity drainage dual-horizontal heavy oil wells
title_short Introduction and investigation of magnetic location system for steam-assisted gravity drainage dual-horizontal heavy oil wells
title_full Introduction and investigation of magnetic location system for steam-assisted gravity drainage dual-horizontal heavy oil wells
title_fullStr Introduction and investigation of magnetic location system for steam-assisted gravity drainage dual-horizontal heavy oil wells
title_full_unstemmed Introduction and investigation of magnetic location system for steam-assisted gravity drainage dual-horizontal heavy oil wells
title_sort introduction and investigation of magnetic location system for steam-assisted gravity drainage dual-horizontal heavy oil wells
publisher SAGE Publishing
series Advances in Mechanical Engineering
issn 1687-8140
publishDate 2018-09-01
description Steam-assisted gravity drainage has been proven to be an effective oil recovery method, and the technology of magnetic location is the key to steam-assisted gravity drainage. In view of the rapid development of this technology in China, a new magnetic location system with intellectual property rights was developed in this article, including mechanical parts and circuit section of detection system. Specific structure, operating principle, and technical parameters of magnetic source generator and detection system were designed and analyzed. The ground test results show that the source generator is powered by an alternating current of 4–7 A, the detection system can probe the magnetic field signal 25 m away from the magnetic source generator, and the measurement error is less than 3% by comparison of measured with actual spacing distance. The steam-assisted gravity drainage dual-horizontal well group in Zhong 37 Well block in Fengcheng Oilfield is chosen for further experiment with the developed magnetic location technology. The results of field experiment show the trajectories of Wells I (injection well) and P (production well) are basically matched in the horizontal projection, and the measurement error is within the allowable range. The magnetic location system developed in this article can meet the operational requirement in steam-assisted gravity drainage dual-horizontal wells.
url https://doi.org/10.1177/1687814018798978
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AT haoyi introductionandinvestigationofmagneticlocationsystemforsteamassistedgravitydrainagedualhorizontalheavyoilwells
AT chuanhe introductionandinvestigationofmagneticlocationsystemforsteamassistedgravitydrainagedualhorizontalheavyoilwells
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