A proposed NMR solution for multi-phase flow fluid detection

Abstract In the petroleum industry, detection of multi-phase fluid flow is very important in both surface and down-hole measurements. Accurate measurement of high rate of water or gas multi-phase flow has always been an academic and industrial focus. NMR is an efficient and accurate technique for th...

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Autores principales: Jun-Feng Shi, Feng Deng, Li-Zhi Xiao, Hua-Bing Liu, Feng-Qin Ma, Meng-Ying Wang, Rui-Dong Zhao, Shi-Wen Chen, Jian-Jun Zhang, Chun-Ming Xiong
Formato: article
Lenguaje:EN
Publicado: KeAi Communications Co., Ltd. 2019
Materias:
NMR
Q
Acceso en línea:https://doaj.org/article/a45d3485947b40a1a2767895cc4d4c2d
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spelling oai:doaj.org-article:a45d3485947b40a1a2767895cc4d4c2d2021-12-02T10:22:49ZA proposed NMR solution for multi-phase flow fluid detection10.1007/s12182-019-00367-31672-51071995-8226https://doaj.org/article/a45d3485947b40a1a2767895cc4d4c2d2019-09-01T00:00:00Zhttp://link.springer.com/article/10.1007/s12182-019-00367-3https://doaj.org/toc/1672-5107https://doaj.org/toc/1995-8226Abstract In the petroleum industry, detection of multi-phase fluid flow is very important in both surface and down-hole measurements. Accurate measurement of high rate of water or gas multi-phase flow has always been an academic and industrial focus. NMR is an efficient and accurate technique for the detection of fluids; it is widely used in the determination of fluid compositions and properties. This paper is aimed to quantitatively detect multi-phase flow in oil and gas wells and pipelines and to propose an innovative method for online nuclear magnetic resonance (NMR) detection. The online NMR data acquisition, processing and interpretation methods are proposed to fill the blank of traditional methods. A full-bore straight tube design without pressure drop, a Halbach magnet structure design with zero magnetic leakage outside the probe, a separate antenna structure design without flowing effects on NMR measurement and automatic control technology will achieve unattended operation. Through the innovation of this work, the application of NMR for the real-time and quantitative detection of multi-phase flow in oil and gas wells and pipelines can be implemented.Jun-Feng ShiFeng DengLi-Zhi XiaoHua-Bing LiuFeng-Qin MaMeng-Ying WangRui-Dong ZhaoShi-Wen ChenJian-Jun ZhangChun-Ming XiongKeAi Communications Co., Ltd.articleOil and gas wellsMulti-phase flowNMROnline detectionScienceQPetrologyQE420-499ENPetroleum Science, Vol 16, Iss 5, Pp 1148-1158 (2019)
institution DOAJ
collection DOAJ
language EN
topic Oil and gas wells
Multi-phase flow
NMR
Online detection
Science
Q
Petrology
QE420-499
spellingShingle Oil and gas wells
Multi-phase flow
NMR
Online detection
Science
Q
Petrology
QE420-499
Jun-Feng Shi
Feng Deng
Li-Zhi Xiao
Hua-Bing Liu
Feng-Qin Ma
Meng-Ying Wang
Rui-Dong Zhao
Shi-Wen Chen
Jian-Jun Zhang
Chun-Ming Xiong
A proposed NMR solution for multi-phase flow fluid detection
description Abstract In the petroleum industry, detection of multi-phase fluid flow is very important in both surface and down-hole measurements. Accurate measurement of high rate of water or gas multi-phase flow has always been an academic and industrial focus. NMR is an efficient and accurate technique for the detection of fluids; it is widely used in the determination of fluid compositions and properties. This paper is aimed to quantitatively detect multi-phase flow in oil and gas wells and pipelines and to propose an innovative method for online nuclear magnetic resonance (NMR) detection. The online NMR data acquisition, processing and interpretation methods are proposed to fill the blank of traditional methods. A full-bore straight tube design without pressure drop, a Halbach magnet structure design with zero magnetic leakage outside the probe, a separate antenna structure design without flowing effects on NMR measurement and automatic control technology will achieve unattended operation. Through the innovation of this work, the application of NMR for the real-time and quantitative detection of multi-phase flow in oil and gas wells and pipelines can be implemented.
format article
author Jun-Feng Shi
Feng Deng
Li-Zhi Xiao
Hua-Bing Liu
Feng-Qin Ma
Meng-Ying Wang
Rui-Dong Zhao
Shi-Wen Chen
Jian-Jun Zhang
Chun-Ming Xiong
author_facet Jun-Feng Shi
Feng Deng
Li-Zhi Xiao
Hua-Bing Liu
Feng-Qin Ma
Meng-Ying Wang
Rui-Dong Zhao
Shi-Wen Chen
Jian-Jun Zhang
Chun-Ming Xiong
author_sort Jun-Feng Shi
title A proposed NMR solution for multi-phase flow fluid detection
title_short A proposed NMR solution for multi-phase flow fluid detection
title_full A proposed NMR solution for multi-phase flow fluid detection
title_fullStr A proposed NMR solution for multi-phase flow fluid detection
title_full_unstemmed A proposed NMR solution for multi-phase flow fluid detection
title_sort proposed nmr solution for multi-phase flow fluid detection
publisher KeAi Communications Co., Ltd.
publishDate 2019
url https://doaj.org/article/a45d3485947b40a1a2767895cc4d4c2d
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