Borehole Protection Technology of Screen Pipes for Gas Drainage Boreholes in Soft Coal Seams

In this paper, research was carried out on borehole protection technology using screen pipes, aiming to address the problems of gas drainage borehole collapse and low gas drainage efficiency in soft coal seams, which have low gas permeability and high gas content. An experiment was conducted to stud...

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Main Authors: Shengquan He, Shengnan Ou, Fengxiang Huang, Longzhe Jin, Yanran Ma, Tuo Chen
Format: Article
Language:English
Published: MDPI AG 2022-08-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/15/15/5657
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author Shengquan He
Shengnan Ou
Fengxiang Huang
Longzhe Jin
Yanran Ma
Tuo Chen
author_facet Shengquan He
Shengnan Ou
Fengxiang Huang
Longzhe Jin
Yanran Ma
Tuo Chen
author_sort Shengquan He
collection DOAJ
description In this paper, research was carried out on borehole protection technology using screen pipes, aiming to address the problems of gas drainage borehole collapse and low gas drainage efficiency in soft coal seams, which have low gas permeability and high gas content. An experiment was conducted to study the compressive resistance and borehole protection effects of polyvinylchloride (PVC), polypropylene (PP), and acrylonitrile–butadiene–styrene (ABS) screen pipes with different sieve opening spacings. The optimal screen pipe material and sieve opening spacing were determined. The borehole protection effect and gas drainage efficiency using three borehole protection methods, namely, bare boreholes, traditional PVC screen pipes, and new ABS screen pipes, were compared and studied on site, and the influence of pipe diameter on borehole protection efficiency was revealed. The results show that the compressive resistance and borehole protection effects of the three types of screen pipes are in the following order: PVC < PP < ABS. ABS screen pipes can more effectively inhibit boreholes from collapse, and the best borehole protection is achieved with a sieve opening spacing of 50 mm. The field tests showed that the gas drainage concentration of the bare borehole in the creep deceleration stage was 113% higher than that of the borehole protected by the ABS screen pipe and 255% higher than that of the borehole with the PVC screen pipe. The screen pipe began to play a role in borehole protection at the beginning of the stable working stage, as the borehole wall began to deform and collapse. On the 30th day of gas drainage, the gas drainage concentration of the borehole installed with the ABS screen pipe was about 9 times that of the bare borehole due to the collapse and blockage of the bare borehole. The new ABS screen pipe with an outer diameter of 40 mm and a sieve opening spacing of 50 mm had a better borehole protection effect and gas drainage efficiency than the traditional PVC pipe. Proper sizing of the screen pipe diameter can improve borehole service life and gas drainage efficiency. The research results are of great significance for solving the problem of gas drainage borehole instability and for improving gas drainage efficiency in soft coal seams.
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spelling doaj.art-2fa630cfa33b42d39ed85b0c39523b5b2023-12-03T12:36:20ZengMDPI AGEnergies1996-10732022-08-011515565710.3390/en15155657Borehole Protection Technology of Screen Pipes for Gas Drainage Boreholes in Soft Coal SeamsShengquan He0Shengnan Ou1Fengxiang Huang2Longzhe Jin3Yanran Ma4Tuo Chen5School of Civil and Resources Engineering, University of Science & Technology Beijing, Beijing 100083, ChinaSchool of Civil and Resources Engineering, University of Science & Technology Beijing, Beijing 100083, ChinaHefei Industry Investment Group, Hefei 230031, ChinaSchool of Civil and Resources Engineering, University of Science & Technology Beijing, Beijing 100083, ChinaSchool of Civil and Resources Engineering, University of Science & Technology Beijing, Beijing 100083, ChinaDepartment of Mining and Materials Engineering, McGill University, Montreal, QC H3A 0E8, CanadaIn this paper, research was carried out on borehole protection technology using screen pipes, aiming to address the problems of gas drainage borehole collapse and low gas drainage efficiency in soft coal seams, which have low gas permeability and high gas content. An experiment was conducted to study the compressive resistance and borehole protection effects of polyvinylchloride (PVC), polypropylene (PP), and acrylonitrile–butadiene–styrene (ABS) screen pipes with different sieve opening spacings. The optimal screen pipe material and sieve opening spacing were determined. The borehole protection effect and gas drainage efficiency using three borehole protection methods, namely, bare boreholes, traditional PVC screen pipes, and new ABS screen pipes, were compared and studied on site, and the influence of pipe diameter on borehole protection efficiency was revealed. The results show that the compressive resistance and borehole protection effects of the three types of screen pipes are in the following order: PVC < PP < ABS. ABS screen pipes can more effectively inhibit boreholes from collapse, and the best borehole protection is achieved with a sieve opening spacing of 50 mm. The field tests showed that the gas drainage concentration of the bare borehole in the creep deceleration stage was 113% higher than that of the borehole protected by the ABS screen pipe and 255% higher than that of the borehole with the PVC screen pipe. The screen pipe began to play a role in borehole protection at the beginning of the stable working stage, as the borehole wall began to deform and collapse. On the 30th day of gas drainage, the gas drainage concentration of the borehole installed with the ABS screen pipe was about 9 times that of the bare borehole due to the collapse and blockage of the bare borehole. The new ABS screen pipe with an outer diameter of 40 mm and a sieve opening spacing of 50 mm had a better borehole protection effect and gas drainage efficiency than the traditional PVC pipe. Proper sizing of the screen pipe diameter can improve borehole service life and gas drainage efficiency. The research results are of great significance for solving the problem of gas drainage borehole instability and for improving gas drainage efficiency in soft coal seams.https://www.mdpi.com/1996-1073/15/15/5657soft coal seamborehole collapsescreen pipesieve opening spacingcompressive resistancegas drainage efficiency
spellingShingle Shengquan He
Shengnan Ou
Fengxiang Huang
Longzhe Jin
Yanran Ma
Tuo Chen
Borehole Protection Technology of Screen Pipes for Gas Drainage Boreholes in Soft Coal Seams
Energies
soft coal seam
borehole collapse
screen pipe
sieve opening spacing
compressive resistance
gas drainage efficiency
title Borehole Protection Technology of Screen Pipes for Gas Drainage Boreholes in Soft Coal Seams
title_full Borehole Protection Technology of Screen Pipes for Gas Drainage Boreholes in Soft Coal Seams
title_fullStr Borehole Protection Technology of Screen Pipes for Gas Drainage Boreholes in Soft Coal Seams
title_full_unstemmed Borehole Protection Technology of Screen Pipes for Gas Drainage Boreholes in Soft Coal Seams
title_short Borehole Protection Technology of Screen Pipes for Gas Drainage Boreholes in Soft Coal Seams
title_sort borehole protection technology of screen pipes for gas drainage boreholes in soft coal seams
topic soft coal seam
borehole collapse
screen pipe
sieve opening spacing
compressive resistance
gas drainage efficiency
url https://www.mdpi.com/1996-1073/15/15/5657
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AT longzhejin boreholeprotectiontechnologyofscreenpipesforgasdrainageboreholesinsoftcoalseams
AT yanranma boreholeprotectiontechnologyofscreenpipesforgasdrainageboreholesinsoftcoalseams
AT tuochen boreholeprotectiontechnologyofscreenpipesforgasdrainageboreholesinsoftcoalseams