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629篇 您的检索式:期刊名="Coal Science Technology"
    题名 作者 年代 出处 被引量
1Development and prospect on fully mechanized mining in Chinese coal mines显示文摘Fully mechanized mining(FMM)technology has been applied in Chinese coal mines for more than 40 years.At present,the output of a FMM face has reached 10-million tons with Chinese-made equipment.In this study,the new developments in FMM technology and equipment in Chinese coal mines during past decades are introduced.The automatic FMM technology for thin seams,complete sets of FMM technology with ultra large shear height of 7 m for thick seams,complete sets of fully mechanized top coal caving technology with large shear height for ultra-thick seams of 20 m,complete sets of FMM technology for complex and difficult seams,including steeply inclined seams,soft coal seams with large inclination angle,and the mechanized filling mining technology and equipment are presented.Some typical case studies are also introduced.Finally,the existing problems with the FMM technology are discussed,and prospect of FMM technology and equipment applied in Chinese coal mines is put forward.Jinhua Wang 2014International Journal of Coal Science & Technology2014,1,3:91
2Support technologies for deep and complex roadways in underground coal mines:a review显示文摘Based on geological and mining characteristics,coal mine roadways under complex conditions were divided into five types,for each type the deformation and damage characteristics of rocks surrounding roadways were analyzed.The recent developments of roadway support technologies were introduced abroad,based on the experiences of supports for deep and complex roadways from Germany,the United States and Australia.The history and achievements of roadway support technologies in China were detailed,including rock bolting,steel supports,grouting reinforcement and combined supports.Four typical support and reinforcement case studies were analyzed,including a high stressed roadway 1,000 m below the surface,a roadway surrounded by severely weak and broken rocks,a chamber surrounded by weak and broken rocks,and a roadway with very soft and swelling rocks.Based on studies and practices in many years,rock bolting has become the mainstream roadway support form in China coal mines,and steel supports,grouting reinforcement and combined supports have also been applied at proper occasions,which have provided reliable technical measures for the safe and high effective construction and mining of underground coal mines.Hongpu Kang 2014International Journal of Coal Science & Technology2014,1,3:117
3Theory and practice of integrated coal production and gas extraction显示文摘Liang Yuan 2015International Journal of Coal Science & Technology2015,2,1:63
4Research progress of monitoring, forecasting, and prevention of rockburst in underground coal mining in China显示文摘As one of the dynamic disasters of coal mines,rockburst seriously affects underground safe coal mining.Based on the laboratory test,field test,and theoretical analysis,this study proposed the principle of the rock burst induced by the combination of dynamic and static stresses and divided such rock burst into three types,including induced by primary dynamic stress,mainly induced by dynamic stress,and by dynamic stress in low critical stress state.The expressions of the static stress induced by coal mining and dynamic stress induced by mining tremors were obtained.Moreover,theories and technologies at home and abroad were summarized concerning the monitoring,forecasting,and preventing of rockburst.These mainly include the zoning and leveling forecasting method,electromagnetic radiation technology,elastic wave and seismic wave computed tomography technologies in aspect of rockburst monitoring,as well as the intensity weakening theory,the strong-soft-strong structure effect,the directional hydraulic fracturing technology,the roadway support system in regards of rockburst prevention.The prospect of rockburst development suggested that researches concerning the rockburst mechanism should be quantitatively developed around the roadway and coalface surrounding coal-rock mass.It should be focused on the rockburst mechanism and prevention technology of mining with over 1,000 km deep and mining in large tectonic zone.In addition,the monitoring and prevention of rockburst should be based on rockburst mechanism.Linming Dou Zonglong Mu Zhenlei Li Anye Cao Siyuan Gong 2014International Journal of Coal Science & Technology2014,1,3:64
5Key technologies and equipment for a fully mechanized top-coal caving operation with a large mining height at ultra-thick coal seams显示文摘Jinhua Wang Bin Yu Hongpu Kang Guofa Wang Debing Mao Yuntao Liang Pengfei Jiang 2015International Journal of Coal Science & Technology2015,2,2:57
6Micro-structural evolution and their effects on physical properties in different types of tectonically deformed coals显示文摘The macromolecular structure of tectonically deformed coals(TDC)may be determined by the deformation mechanisms of coal.Alterations of the macromolecular structure change the pore structure of TDC and thereby impact physical properties such as porosity and permeability.This study focuses on structure and properties of TDC from the Huaibei and Huainan coal mining areas of southern North China.Relationships between the macromolecular structure and the pore structure of TDC were analyzed using techniques such as X-ray diffraction,high-resolution transmission electron microcopy,and the low-temperature nitrogen adsorption.The results indicated that the directional stress condition can cause the arrangement of basic structural units(BSU)more serious and closer.And,the orientation is stronger in ductile deformed coal than in brittle deformed coal.Tectonic deformation directly influences the macromolecular structure of coal and consequently results in dynamic metamorphism.Because the size of BSU in brittle deformed coal increases more slowly than in ductile deformed coal,frictional heating and stress-chemistry of shearing areas might play a more important role,locally altering coal structure under stress,in brittle deformed coal.Strain energy is more significant in increasing the ductile deformation of coal.Furthermore,mesopores account for larger percentage of the nano-scale pore volume in brittle deformed coals,while mesopores volume in ductile deformed coal diminishes rapidly along with an increase in the proportion of micropores and sub-micropores.This research also approved that the deformations of macromolecular structures change nano-scale pore structures,which are very important for gas adsorption and pervasion space for gas.Therefore,the exploration and development potential of coal bed methane is promising for reservoirs that are subjected to a certain degree of brittle deformation(such as schistose structure coal,mortar structure coal and cataclastic structure coal).It also holds promise for TDC resulting from wrinkle structure coal of low ductile deformation and later superimposed by brittle deformation.Other kinds of TDC suffering from strong brittle-ductile and ductile deformation,such as scale structure coal and mylonitic structure coal,are difficult problems to resolve.Yiwen Ju Kray Luxbacher Xiaoshi Li Guochang Wang Zhifeng Yan Mingming Wei Liye Yu 2014International Journal of Coal Science & Technology2014,1,3:43
7Definition, theory, methods, and applications of the safe and efficient simultaneous extraction of coal and gas显示文摘Yuanping Cheng Liang Wang Hongyong Liu Shengli Kong Jintuo Zhu Qingyi Tu 2015International Journal of Coal Science & Technology2015,2,1:36
8Mechanical model of water inrush from coal seam floor based on triaxial seepage experiments显示文摘In order to study the mechanism of confined water inrush from coal seam floor,the main influences on permeability in the process of triaxial seepage experiments were analyzed with methods such as laboratory experiments,theoretical analysis and mechanical model calculation.The crack extension rule and the ultimate destruction form of the rock specimens were obtained.The mechanism of water inrush was explained reasonably from mechanical point of view.The practical criterion of water inrush was put forward.The results show that the rock permeability 'mutation' phenomenon reflects the differences of stress state and cracks extension rate when the rock internal crack begins to extend in large-scale.The rock ultimate destruction form is related to the rock lithology and the angle between crack and principal stress.The necessary condition of floor water inrush is that the mining pressure leads to the extension and transfixion of the crack.The sufficient condition of floor water inrush is that the confined water’s expansionary stress in normal direction and shear stress in tangential direction must be larger than the internal stress in the crack.With the two conditions satisfied at the same time,the floor water inrush accident will occur.Yihui Pang Guofa Wang Ziwei Ding 2014International Journal of Coal Science & Technology2014,1,4:35
9Characteristics and applications of gas desorption with excavation disturbances in coal mining显示文摘Jiachen Wang 2015International Journal of Coal Science & Technology2015,2,1:31
10Surface movement and deformation characteristics due to high- intensive coal mining in the windy and sandy region显示文摘Zhenqi Hu Chao Chen Wu Xiao Xinjing Wang Mingjie Gao 2016International Journal of Coal Science & Technology2016,3,3:34
11Effects of coal rank on physicochemical properties of coal and on methane adsorption显示文摘Yuanping Cheng Haina Jiang Xiaolei Zhang Jiaqing Cui Cheng Song Xuanliang Li 2017International Journal of Coal Science & Technology2017,4,2:31
12Mechanical properties and acoustic emission characteristics of thick hard roof sandstone in Shendong coal field显示文摘Huigui Li Huamin Li 2017International Journal of Coal Science & Technology2017,4,2:32
13Influence of pore structures on the mechanical behavior of low-permeability sandstones:numerical reconstruction and analysis显示文摘The research of rock properties based on its inherent microscopic to mesoscopic porous structure has drawn great attention for its potential in predicting the macroscopic behavior of rocks.An accurate reconstruction of the threedimensional porous structure is a premise for the related studies of hydraulic and mechanical properties of rocks,such as the transport properties and mechanical responses under pressures.In this paper,we present a computer procedure for reconstructing the 3D porous structure of low-permeability sandstone.Two large-size 3D models are reconstructed based on the information of a reference model which is established from computed tomography(CT)images.A self-developed finite element method is applied to analyze the nonlinear mechanical behavior of the sandstone based on its reconstructed model and to compare the results with those based on the reference model.The good consistency of the obtained mechanical responses indicates the potential of using reconstruction models to predict the influences of porous structure on the mechanical properties of low-permeability sandstone.Jiangtao Zheng Yang Ju Xi Zhao 2014International Journal of Coal Science & Technology2014,1,3:34
14Support failure of a high-stress soft-rock roadway in deep coal mine and the equalized yielding support technology: a case study显示文摘Lihui Sun 2015International Journal of Coal Science & Technology2015,2,4:29
15Comparison of pore characteristics in the coal and shale reservoirs of Taiyuan Formation, Qinshui Basin, China显示文摘Yu Liu Yanming Zhu 2016International Journal of Coal Science & Technology2016,3,3:30
16Infrastructure-based localisation of automated coal mining equipment显示文摘Chad O. Hargrave Craig A. James Jonathon C. Ralston 2017International Journal of Coal Science & Technology2017,4,3:30
17Surrounding rock control theory and longwall mining technology innovation显示文摘Guofa Wang Yihui Pang 2017International Journal of Coal Science & Technology2017,4,4:30
18An integrated approach to study of strata behaviour and gas flow dynamics and its application显示文摘Hua Guo Liang Yuan 2015International Journal of Coal Science & Technology2015,2,1:28
19Development and application of an efficient gas extraction model for low-rank high-gas coal beds显示文摘Baiquan Lin 2015International Journal of Coal Science & Technology2015,2,1:27
20Zoning of land reclamation in coal mining area and new progresses for the past 10 years显示文摘Coal mining disturbed land is the main sources of land reclamation in China.With the rapid increase of economy and coal production,more and more land has been disturbed by construction and coal mining;thus,land reclamation has become highlights in the past 10 years,and China is boosting land reclamation in mining areas.Disturbance characteristics vary from region to region,according to natural and geological conditions,coal mining area land reclamation was divided into 3 zones,which are eastern,western and southern.Reclamation strategies are focused on prime farmland protection in eastern and ecological restoration in western and southern zones,respectively.Several innovative reclamation technologies and theories for the past 10 years were introduced in this paper,including concurrent mining and reclamation,Yellow river sediments backfilling,self-reclamation,and topsoil alternatives in opencast mines.Besides,in the government regulation and legal system building respect,several important laws and regulations were issued and implemented in the past 5 years,promoting land reclamation management and supervision greatly.Land reclamation is and will still be one of the most important parts of coal industry in the future,and more efforts and funds are expected to get involved.Wu Xiao Zhenqi Hu Yanhua Fu 2014International Journal of Coal Science & Technology2014,1,2:28
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