[1]胡千庭,蒋时才,苏文叔.我国煤矿瓦斯灾害防治对策[J].矿业安全与环
保,2000,27(1):1-4.
HU Qianting, JIANG Shicai, SU Wenshu. Countermeasures for prevention and
control of coal and gas outburst hazard in China's coal mines[J].]Mining
Safety & Environmental Protection, 2000,27(1):1-4.
[2]钱鸣高,缪协兴,许家林.资源与环境协调(绿色)开采[J].煤炭学报,2007,32
(1):1-7.
QIAN Minggao, MIAO Xiexing, XU Jialin. Green mining of coal resources
harmonizing with environment [J]. Journal of China Coal Society, 2007,32
(1):1-7.
[3]周军民.水力压裂增透技术在突出煤层中的试验[J].中国煤层气,2009,6(3):34
-39.
ZHOU Junmin. Trials on hydrofracturing technology for enhancement of
outburst coal seam[J].China Coalbed Methane, 2009,6(3):34-39.
[4]艾灿标,贾献宗,吕涛,等.新义煤矿水力压裂试验与效果分析[J].煤矿开
采,2010,15(4):109-117.
AI Canbiao, JIA Xianzong, LV Tao, et al. Test of hydraulic fracture and its
effect analysis in Xinyi colliery[J]. Coalmining Technology, 2010,15(4):
109-117.
[5]王念红,任培良.单一低透气性煤层水力压裂技术增透效果考察分析[J].煤矿安
全,2011,42(2):109-112.
WANG Nianhong,REN Peiliang. A single low permeability coal seam hydraulic
fracturing technology antireflection effect investigation and analysis
[J].Safety in Coal Mines, 2011,42(2):109-112.
[6]付江伟.井下水力压裂煤层应力场与瓦斯流场模拟研究[D].北京:中国矿业大学
,2013.
[7]唐巨鹏,杨森林,李利萍.多重水力割缝下煤层气储层卸压数值模拟[J].水资源与
水工程学报.2012,23(2):33-36.
TANG Jupeng,YANG Senlin, LI Li-ping. Numerical simulation for methane
store pressure release in coalbed under mult-hydraulic cutting seam
[J].Journal of Water Resources & Water Engineering, 2012,23(2):33-36.
[8]谢和平,高峰,周宏伟,等.煤与瓦斯共采中煤层增透率理论与模型研究[J].煤炭
学报,2013,38(7):1101-1108.
XIE Heping, GAO Feng, ZHOU Hongwei, et al. On theoretical and modeling
approach to mining-enhanced permeability for simultaneous exploitation of
coal and gas[J]. Journal of China Coal Society, 2013,38(7):1101-1108.
[9]陈洋.深孔控制预裂爆破增透试验研究[J].矿业安全与环境,2014,41(5):29-
32.
CHEN Yang. Test study on permeability Enhancement by deep-hole controlled
pre-splitting blasting[J].Mining Safety & Environmental Protection,
2014,41(5):29-32.
[10]周建伟,王晓蕾,李云.深孔控制CO2预裂爆破在煤巷掘进消突中的应用[J].煤炭
技术,2014,33(9):30-32.
ZHOU Jianwei, WANG Xiaolei, LI Yun. Application for CO2 parameter design of
deep-hole controlling presplitting blasting in coalroad driving[J]. Coal
Technology, 2014,33(9):30-32.
[11]赵阳升,杨栋,胡耀青,等.低渗透煤储层煤层气开采有效技术途径的研究[J].煤
炭学报, 2001,26(5)455-458.
ZHAO Yangsheng,YANG Dong,HU Yaoqing, et al. Study on the effect technology
way for mining methane in low permeability coal seam[J].Journal of China
Coal Society, 2001,26(5)455-458.
[12]徐颖,张笑天.气体爆破疏通煤仓堵塞技术[J]. 煤炭科学技术,2001,29(9):9-
11.
XU Ying, ZHANG Xiaotian. Air blasting technology applied to solve coal
bunker jam[J].Coal Science and Technology, 2001,29(9):9-11.
[13]徐颖.高压气体爆破采煤技术的发展及其在我国的应用[J].爆破,1998,15
(1):67-82.
XU Ying. Development of high-pressure gas blasting mining technology and its
application in China[J]. Blasting, 1998,15(1):67-82.
[14]徐颖,程玉生.高压气体爆破破煤机理模型试验研究[J].煤矿爆破,1996(3):1-
4.
XU Ying, CHENG Yusheng. Experimental study on the mechanism model of coal
blasting high-pressure gas break[J]. Coal Mine Blasting,1996(3):1-4.
[15]曾范永.气爆技术提高煤体渗透性规律的研究[D].阜新:辽宁工程技术大
学,2011.
[16]史宁.高压空气冲击煤体增透技术实验研究[D].阜新:辽宁工程技术大
学,2010.
[17]李守国.高压空气爆破煤层增透关键技术与装备研发[J].煤炭科学技
术,2015,43(2):92-95.
LI Shouguo. Key technology and equipment research and development of
improving coal seam permeability by high pressure air blasting[J]. Coal
Science and Technology, 2015,43(2):92-95.
[18]孙可明,李云.低渗煤层预裂爆破裂纹扩展数值模拟研究[J].爆破, 2014,31
(1):31-37.
SUN Keming, Li Yun. Numerical simulation on crack propagation law of pre-
splitting explosion in lowly permeable coal seam[J].Blasting, 2014,31
(1):31-37.
[19]李守国.高压空气爆破致裂煤体数值模拟[J].煤矿安全,2013,44(12):163-165.
LI Shouguo. Numerical simulation of coal fracture caused by high-pressure
air blasting[J]. Safety in Coal Mines, 2013,44(12):163-165.
[20]陈静.高压空气冲击煤体气体压力分布的模拟研究[D].阜新:辽宁工程技术大
学,2009.