Application of ultra-high pressure hydraulic slotting technology in medium hardness and low permeability coal seam

In order to improve the gas pre-drainage efficiency of medium hard coal seam with high gas and low permeability, the applicable conditions, advantages and disadvantages of hydraulic piercing, hydraulic fracturing and hydraulic cutting seam anti-permeability technology were discussed. Based on the pr...

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Published in:Meitan kexue jishu
Main Authors: Yongzhi TANG, Ping LI, Guiwang ZHU, Jian CHEN, Dezhong CHEN, Anxiang FENG, Zhihua TANG, Yang YANG, Min YE
Format: Article
Language:Chinese
Published: Editorial Department of Coal Science and Technology 2022-12-01
Subjects:
Online Access:http://www.mtkxjs.com.cn/article/doi/10.13199/j.cnki.cst.mcq22-12
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author Yongzhi TANG
Ping LI
Guiwang ZHU
Jian CHEN
Dezhong CHEN
Anxiang FENG
Zhihua TANG
Yang YANG
Min YE
author_facet Yongzhi TANG
Ping LI
Guiwang ZHU
Jian CHEN
Dezhong CHEN
Anxiang FENG
Zhihua TANG
Yang YANG
Min YE
author_sort Yongzhi TANG
collection DOAJ
container_title Meitan kexue jishu
description In order to improve the gas pre-drainage efficiency of medium hard coal seam with high gas and low permeability, the applicable conditions, advantages and disadvantages of hydraulic piercing, hydraulic fracturing and hydraulic cutting seam anti-permeability technology were discussed. Based on the principle of ultra-high pressure hydraulic slotting technology, a kind of ultra-high pressure hydraulic slotting device for through-layer drilling is developed, it is mainly composed of diamond hydraulic slotting bit, shallow spiral drill pipe, ultra-high pressure rotary joint, ultra-high pressure clean water pump, high-low pressure converter, ultra-high pressure rubber pipe, etc. The water pressure reaches 60−100 MPa, which can realize the integration of drilling and cutting, and is simple and convenient to use. The device was used to carry out field tests in the pre-drainage boreholes of 11-2 coal seam through the floor roadway of 1361(1) haulage gateway in Dingji coal mine. The coal seam gas pressure was 1.43 MPa, the gas content was 8.05 m3/t, and the gas permeability coefficient was 0.013 m2/ (MPa2·d), the coal seam firmness coefficient is 0.79; 1361(1) transportation roadway floor No.11−No.15 drilling area unit length 227 meters, using high-pressure hydraulic slotting anti-permeability measures, 1361(1) transportation roadway floor No.6—No.10 drilling area unit length 213 meters, anti-permeability measures of low-pressure water punching in coal mine. The results show that the average single-knife slitting time of ultra-high pressure hydraulic slitting drilling is 10.7 min, the single-knife coal output is 0.31 t, the equivalent slitting radius is 1.38 m, the slitting density of the coal hole section is 1 knife/m, and the average cutting rate per hole is The average gas drainage concentration of ultra-high pressure hydraulic slotted holes is 56.97%, which is 2.37 times that of low-pressure punching; The time to reach the standard is about 23 days, which is 74.4% and 54.9% shorter than that of ordinary drilling and hydraulic punching technology respectively. Compared with ordinary drilling and hydraulic punching technology, ultra-high pressure hydraulic slotting technology is more ideal for gas drainage in low permeability medium-hard coal seams.
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publisher Editorial Department of Coal Science and Technology
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spelling doaj-art-73a4d3b4e40147f4b0d1f81cb7fc4ca42025-08-20T00:38:38ZzhoEditorial Department of Coal Science and TechnologyMeitan kexue jishu0253-23362022-12-015012434910.13199/j.cnki.cst.mcq22-12mcq22-12Application of ultra-high pressure hydraulic slotting technology in medium hardness and low permeability coal seamYongzhi TANG0Ping LI1Guiwang ZHU2Jian CHEN3Dezhong CHEN4Anxiang FENG5Zhihua TANG6Yang YANG7Min YE8National Engneering Research Center for Coal Gas Control, Huainan 232001, ChinaNational Engneering Research Center for Coal Gas Control, Huainan 232001, ChinaHuainan Mining (Group) Co., Ltd., Huainan 232001, ChinaHuainan Mining (Group) Co., Ltd., Huainan 232001, ChinaHuainan Mining (Group) Co., Ltd., Huainan 232001, ChinaNational Engneering Research Center for Coal Gas Control, Huainan 232001, ChinaHuainan Mining (Group) Co., Ltd., Huainan 232001, ChinaNational Engneering Research Center for Coal Gas Control, Huainan 232001, ChinaHuainan Mining (Group) Co., Ltd., Huainan 232001, ChinaIn order to improve the gas pre-drainage efficiency of medium hard coal seam with high gas and low permeability, the applicable conditions, advantages and disadvantages of hydraulic piercing, hydraulic fracturing and hydraulic cutting seam anti-permeability technology were discussed. Based on the principle of ultra-high pressure hydraulic slotting technology, a kind of ultra-high pressure hydraulic slotting device for through-layer drilling is developed, it is mainly composed of diamond hydraulic slotting bit, shallow spiral drill pipe, ultra-high pressure rotary joint, ultra-high pressure clean water pump, high-low pressure converter, ultra-high pressure rubber pipe, etc. The water pressure reaches 60−100 MPa, which can realize the integration of drilling and cutting, and is simple and convenient to use. The device was used to carry out field tests in the pre-drainage boreholes of 11-2 coal seam through the floor roadway of 1361(1) haulage gateway in Dingji coal mine. The coal seam gas pressure was 1.43 MPa, the gas content was 8.05 m3/t, and the gas permeability coefficient was 0.013 m2/ (MPa2·d), the coal seam firmness coefficient is 0.79; 1361(1) transportation roadway floor No.11−No.15 drilling area unit length 227 meters, using high-pressure hydraulic slotting anti-permeability measures, 1361(1) transportation roadway floor No.6—No.10 drilling area unit length 213 meters, anti-permeability measures of low-pressure water punching in coal mine. The results show that the average single-knife slitting time of ultra-high pressure hydraulic slitting drilling is 10.7 min, the single-knife coal output is 0.31 t, the equivalent slitting radius is 1.38 m, the slitting density of the coal hole section is 1 knife/m, and the average cutting rate per hole is The average gas drainage concentration of ultra-high pressure hydraulic slotted holes is 56.97%, which is 2.37 times that of low-pressure punching; The time to reach the standard is about 23 days, which is 74.4% and 54.9% shorter than that of ordinary drilling and hydraulic punching technology respectively. Compared with ordinary drilling and hydraulic punching technology, ultra-high pressure hydraulic slotting technology is more ideal for gas drainage in low permeability medium-hard coal seams.http://www.mtkxjs.com.cn/article/doi/10.13199/j.cnki.cst.mcq22-12low permeability coal seammedium hard coal seamultra high pressure hydraulic slottinghydraulic punchingextraction effect
spellingShingle Yongzhi TANG
Ping LI
Guiwang ZHU
Jian CHEN
Dezhong CHEN
Anxiang FENG
Zhihua TANG
Yang YANG
Min YE
Application of ultra-high pressure hydraulic slotting technology in medium hardness and low permeability coal seam
low permeability coal seam
medium hard coal seam
ultra high pressure hydraulic slotting
hydraulic punching
extraction effect
title Application of ultra-high pressure hydraulic slotting technology in medium hardness and low permeability coal seam
title_full Application of ultra-high pressure hydraulic slotting technology in medium hardness and low permeability coal seam
title_fullStr Application of ultra-high pressure hydraulic slotting technology in medium hardness and low permeability coal seam
title_full_unstemmed Application of ultra-high pressure hydraulic slotting technology in medium hardness and low permeability coal seam
title_short Application of ultra-high pressure hydraulic slotting technology in medium hardness and low permeability coal seam
title_sort application of ultra high pressure hydraulic slotting technology in medium hardness and low permeability coal seam
topic low permeability coal seam
medium hard coal seam
ultra high pressure hydraulic slotting
hydraulic punching
extraction effect
url http://www.mtkxjs.com.cn/article/doi/10.13199/j.cnki.cst.mcq22-12
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