The Numerical Stimulation of Methane-Air Mixing Characteristics in Wellbore during the Air Jet Injection

At present, in situ blasting fracturing with formation methane is identified as an effective method for shale gas stimulation. In this paper, based on the in situ temperature and pressure conditions, a horizontal wellbore model filled with methane was established to simulate the methane-air mixing c...

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Main Authors: Zhixiang Tao, Chengzheng Cai, Zengxin Zou, Yugui Yang, Yinrong Feng
Format: Article
Language:English
Published: Wiley 2022-01-01
Series:Geofluids
Online Access:http://dx.doi.org/10.1155/2022/9073442
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author Zhixiang Tao
Chengzheng Cai
Zengxin Zou
Yugui Yang
Yinrong Feng
author_facet Zhixiang Tao
Chengzheng Cai
Zengxin Zou
Yugui Yang
Yinrong Feng
author_sort Zhixiang Tao
collection DOAJ
description At present, in situ blasting fracturing with formation methane is identified as an effective method for shale gas stimulation. In this paper, based on the in situ temperature and pressure conditions, a horizontal wellbore model filled with methane was established to simulate the methane-air mixing characteristics in wellbore during air jet. According to the distributions of the methane concentration and flow field characteristics, methane-air mixing inside the wellbore can be divided into three types: free diffusion mixing, turbulent pulsating mixing, and regenerated vortex mixing. Due to the limitation of fixed jet, the methane concentration beyond the jetting region changed little. In addition, the moving jet was used to realize the mixing of methane and oxidizer in wellbore. The sensitivity of different parameters to the distribution of the methane concentration in wellbore was discussed. The results showed that the methane concentration was more sensitive to the wellbore diameter and nozzle diameter. The moving velocity of nozzle was closely related to the distribution uniformity of the methane concentration in wellbore. The moving velocity of nozzle was selected as a single influence parameter to adjust the uniformity of methane distribution in the wellbore, to ensure that methane concentration was within the explosion limit.
format Article
id doaj-art-eaa7b37fa5d2425e85b0a9645d102309
institution Kabale University
issn 1468-8123
language English
publishDate 2022-01-01
publisher Wiley
record_format Article
series Geofluids
spelling doaj-art-eaa7b37fa5d2425e85b0a9645d1023092025-02-03T01:23:36ZengWileyGeofluids1468-81232022-01-01202210.1155/2022/9073442The Numerical Stimulation of Methane-Air Mixing Characteristics in Wellbore during the Air Jet InjectionZhixiang Tao0Chengzheng Cai1Zengxin Zou2Yugui Yang3Yinrong Feng4State Key Laboratory for Geomechanics and Deep Underground EngineeringState Key Laboratory for Geomechanics and Deep Underground EngineeringState Key Laboratory for Geomechanics and Deep Underground EngineeringState Key Laboratory for Geomechanics and Deep Underground EngineeringState Key Laboratory for Geomechanics and Deep Underground EngineeringAt present, in situ blasting fracturing with formation methane is identified as an effective method for shale gas stimulation. In this paper, based on the in situ temperature and pressure conditions, a horizontal wellbore model filled with methane was established to simulate the methane-air mixing characteristics in wellbore during air jet. According to the distributions of the methane concentration and flow field characteristics, methane-air mixing inside the wellbore can be divided into three types: free diffusion mixing, turbulent pulsating mixing, and regenerated vortex mixing. Due to the limitation of fixed jet, the methane concentration beyond the jetting region changed little. In addition, the moving jet was used to realize the mixing of methane and oxidizer in wellbore. The sensitivity of different parameters to the distribution of the methane concentration in wellbore was discussed. The results showed that the methane concentration was more sensitive to the wellbore diameter and nozzle diameter. The moving velocity of nozzle was closely related to the distribution uniformity of the methane concentration in wellbore. The moving velocity of nozzle was selected as a single influence parameter to adjust the uniformity of methane distribution in the wellbore, to ensure that methane concentration was within the explosion limit.http://dx.doi.org/10.1155/2022/9073442
spellingShingle Zhixiang Tao
Chengzheng Cai
Zengxin Zou
Yugui Yang
Yinrong Feng
The Numerical Stimulation of Methane-Air Mixing Characteristics in Wellbore during the Air Jet Injection
Geofluids
title The Numerical Stimulation of Methane-Air Mixing Characteristics in Wellbore during the Air Jet Injection
title_full The Numerical Stimulation of Methane-Air Mixing Characteristics in Wellbore during the Air Jet Injection
title_fullStr The Numerical Stimulation of Methane-Air Mixing Characteristics in Wellbore during the Air Jet Injection
title_full_unstemmed The Numerical Stimulation of Methane-Air Mixing Characteristics in Wellbore during the Air Jet Injection
title_short The Numerical Stimulation of Methane-Air Mixing Characteristics in Wellbore during the Air Jet Injection
title_sort numerical stimulation of methane air mixing characteristics in wellbore during the air jet injection
url http://dx.doi.org/10.1155/2022/9073442
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