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1.
Gas outburst disasters are becoming more serious as the underground coal mines become deeper in China, and a thick zone of deformed coal provides conditions favorable to coal and gas outbursts. The Daning coal mine’s main mining seam is the No. 3 coal seam with coal and gas outburst hazard, which often contains two normal coal sub-layers and one deformed sub-layer. Considering both the geological conditions of the coal seam and applications of the in-seam directional longhole drilling technology, a new schematic diagram of in-seam directional longholes for gas drainage is developed. The two borehole layout models of longwall panel and main entries for gas outburst disasters control have been successfully applied. The gas drainage rates of both models are >70 %, and the residual gas contents are both <8 m3/t, which can be considered that the gas outburst disasters were effectively controlled. To better guide gas drainage, gas drainage normal and failure modes have been obtained. Although in-seam directional longhole technology has been successfully applied for regional gas drainage with benefits to gas outburst control, there are also some problems that are detrimental to greenhouse gas reductions in gas drainage and gas utilization. The three main problems are air leakage failure in gas drainage, decreasing gas concentration and a low gas utilization ratio. To address the problems mentioned above, five improvements are suggested.  相似文献   

2.
晋煤集团赵庄矿3号煤层为高瓦斯煤层,瓦斯抽采难度大,存在煤与瓦斯突出的安全隐患,防治水方面还存在底板带压开采问题,严重制约了矿井安全高效生产。通过提出保护层开采方案,先期开采下伏8-1号薄煤层,释放3号煤层应力,增加煤层透气性,同时制定8-1号煤带压开采的防治水技术策略,最终实现了3号煤瓦斯安全疏放抽采,防治水工作顺利开展,对同时存在高瓦斯和承压水上采煤问题的类似矿井具有指导意义。   相似文献   

3.
Although it is a well-accepted belief in the petroleum industry that horizontal well productivity can be limited by the pressure drop within the wellbore, little has been reported regarding how this pressure drop affects gas extraction from a coal seam and its further effects on mitigating coal and gas outburst dangers in coal. One of the major reasons for this scarcity is that the pressure-drop distribution in horizontal drainage boreholes is difficult to obtain. In this study, measurements of pressure drops in 54 drainage boreholes were performed in the No. 21 coal seam, which is the primary mining layer of Jiulishan Mine and poses a strong danger of coal and gas outbursts. Next, a coupled governing finite-element model, which includes the pressure drop in the borehole, Darcy flow in fractures, gas diffusion in the matrix blocks, and the dynamic evolution of the permeability of coal, was developed and implemented using a finite-element method to quantify the pressure-drop effects. Field tests of the pressure drops indicate that the pressure increases in a parabolic form with the increasing depth of the borehole, and lower outer end pressure is associated with larger pressure increments. The numerical results indicate that the pressure drop does affect the coal seam gas extraction, the pressure around the borehole increases with increasing borehole depth, and the increment of the pressure becomes larger when the borehole’s drainage effect is enhanced. However, the impact is small and can be ignored in engineering.  相似文献   

4.
针对淮北矿区松软煤巷条带消突采用“底板巷—穿层钻孔”成本高且效率低现状,采用顺层气动定向钻进技术,按钻孔设计精准控制钻孔轨迹于预抽条带煤层中,通过钻孔抽采瓦斯实现煤巷条带消突。根据淮北矿区松软煤层特性,开展煤巷条带预抽瓦斯定向孔设计、气动定向钻进装备选型、软煤定向孔成孔与护孔工艺、抽采效果评价等研究。该技术成功应用于淮北某矿Ⅲ635工作面煤巷条带消突,试验7个孔深均大于300 m钻孔,且全程下筛管,创造两淮软煤矿区顺层钻孔372 m最深记录,成功保障煤巷掘进,减少底板巷和穿层钻孔,为软煤矿区煤巷条带瓦斯高效治理探索出新方法。   相似文献   

5.
地应力是煤与瓦斯突出的重要动力,区域应力场是不同期次构造运动在该区域综合作用的具体体现。结合区域应力场和区域构造断块划分,研究了祁东井田应力场及其对煤与瓦斯突出的影响。结果表明:祁东井田最大、中间、最小主应力与煤层埋深呈正相关关系,且其最大主应力明显比位于华北地区的焦作中马村矿,平顶山一矿、六矿、八矿,以及华东地区的淮南潘一矿、谢一矿都大得多;祁东井田处在高应力区,地应力是9号煤层25次煤与瓦斯突出的主导因素;该井田东部地应力较集中,瓦斯含量大,煤与瓦斯突出危险性较大。   相似文献   

6.
李定启 《岩土力学》2014,35(Z1):1-7
为深入探讨硬煤的煤与瓦斯突出机制,对深部硬煤掘进工作面煤与瓦斯突出的相关理论和模型试验进行研究。根据断裂力学、岩石力学及煤与瓦斯突出有关理论,提出深部开采过程中硬煤掘进工作面薄板理论假设,并将该理论应用于深部硬煤掘进工作面煤与瓦斯突出模拟试验研究。对硬煤掘进工作面薄板理论分析,认为工作面尺寸、煤的弹性模量、围岩侧压系数、瓦斯压力等因素对硬煤掘进工作面突出具有较大影响。试验结果表明,在围岩应力、煤的坚固性系数较大的情况下,硬煤突出临界条件主要受围岩应力、煤的弹性模量、围岩侧压系数及工作面尺寸等因素影响,而受瓦斯压力影响相对较小;在围岩应力、试样的坚固性系数较大且煤的弹性模量和侧压系数稳定不变的情况下,发生突出的临界轴向应力随模拟工作面尺寸增大而近似呈线性减小。试验结论基本符合本硬煤突出薄板模型理论公式,在一定程度上验证了硬煤掘进工作面煤薄板模型理论及硬煤掘进工作面突出机制假设。  相似文献   

7.
研究煤的吸附和放散特性,对于查明煤与瓦斯突出中甲烷的作用,提高煤层气采收率或矿井抽采率具有重要作用。通过自行研制的实验装置,对河南新安矿和平煤一矿软煤和硬煤甲烷吸附和扩散的性质、相同吸附压力下的吸附量和Langmuir吸附常数的差异进行分析,阐明煤表面能的控制因素,查明煤在初始解吸时刻的扩散系数。结果表明,同一煤层中软煤比共生的硬煤具有更大的Langmuir吸附体积,在同一吸附压力下同阶煤的吸附量与煤的软硬和吸附压力有关,软煤和硬煤的表面能与煤阶有关,短时间解吸时软煤扩散系数大于硬煤,长时间解吸后硬煤的扩散系数大于软煤,且软硬煤的扩散系数均随解吸时间延长和吸附平衡压力的增加而减小。   相似文献   

8.
瓦斯区域超前治理是实现煤矿安全、高效及智能化开采的重要保障,针对碎软煤层区域瓦斯高效抽采难题,以陕西韩城矿区3号煤层为研究对象,提出井下煤层顶板梳状长钻孔水力压裂区域瓦斯抽采模式。采用理论分析、数值模拟和现场试验等多手段相结合的方法,验证模式适用性,阐明紧邻煤层顶板梳状钻孔压裂裂缝延展规律、抽采机理和压裂曲线特征,进而建立适用于500 m孔深的集地质条件动态分析、分段水力压裂、封隔器遇阻解卡和压裂范围连续探查于一体的顶板梳状长钻孔裸眼分段水力压裂关键技术体系,实现煤层顶板梳状钻孔主孔轨迹距离煤层5 m左右、多段均匀压裂、压裂范围全孔监测和孔内事故高效处理。以此为基础,在韩城桑树坪二号井开展2孔次的工程实践:压裂主孔深度588 m、距3号煤层2 m左右,单孔压裂6段,压裂范围探查深度381 m、压裂影响半径20 m以上;压裂后,钻孔抽采瓦斯平均体积分数40%以上、瓦斯抽采量1 m3/min以上,抽采效果是常规钻孔的4倍,120 d瓦斯抽采有效半径可达9 m,实现了碎软煤层瓦斯区域高效抽采。并提出了适用于碎软煤层大区域瓦斯抽采以及高瓦斯压力碎软强突煤层远程区域抽采卸压等规模化应用技术思路。   相似文献   

9.
为了确定顺煤层剪切带的煤与瓦斯突出机理,在对顺煤层剪切带的受力状态进行分析的基础上,应用Mohr-Coulomb理论研究了顺煤层剪切带的形成机制,并探讨了顺煤层剪切带内的煤层变化特征、瓦斯含量和瓦斯压力特征及地应力对煤与瓦斯突出的影响。结果表明:当煤层倾角接近剪切滑动的临界角时,易产生薄煤区,而远离临界角时,煤层厚度增加,煤层厚度剧烈变化部位为应力集中区并具有较高的应力梯度;顺煤层剪切带内的压应力、煤层的面理化结构和煤层厚度的剧烈变化使其在宏观上形成了高瓦斯含量和高瓦斯压力特征,微观上糜棱煤细颈瓶型的孔隙形态为发生煤与瓦斯突出提供了必要的介质条件;在紧闭褶皱区,煤与瓦斯突出类型以突出为主,在宽缓褶皱区和伸展型顺煤层剪切带内,煤与瓦斯突出类型以压出和倾出为主。顺煤层剪切带内的高地应力、高瓦斯压力和发育的构造煤等3个因素是煤与瓦斯突出发生的主要原因。   相似文献   

10.
Coal and gas outburst disasters in coal seams are becoming more serious as coal mines extend deeper underground in China. To aid gas control in high-gas outburst coal seam group, this study performed research based on the geological conditions of the Xinzhuangzi coal mine in the Huainan coalfield. The laws of gas occurrence, the strength of the coal outburst, and the regional partition were studied. Simultaneously, we introduced the key protective seam mining technology and confirmed the mining sequence of coal seam groups. The results indicate that (1) each seam absorbs gas well, and the currently measured gas content is up to 15.0 m3/t. (2) Although some differences about coal seams outburst intensity remain, the differences in the same group are very small. (3) The coal seam B10 was chosen as the key protective seam and was mined first; then adjacent seams were mined from bottom to top by layer within the roof of B10 and from top-to-bottom within the floor of B10 to guarantee each adjacent coal seam received the good effects of pressure-relief and increasing permeability. (4) The main methods of gas extraction in each protected seam are surface boreholes and net-like penetrating boreholes in the floor roadway, and related technical parameters were determined according to the degree of pressure-relief in coal seam. This in situ experiment indicates a method aiding the gas control problem and guaranteeing safe and highly efficient exploitation of high-gas outburst seams.  相似文献   

11.
Control of gas emissions in underground coal mines   总被引:4,自引:0,他引:4  
A high level of knowledge is now available in the extremely relevant field of underground gas emissions from coal mines. However, there are still tasks seeking improved solutions, such as prediction of gas emissions, choice of the most suitable panel design, extension of predrainage systems, further optimization of postdrainage systems, options for the control of gas emissions during retreat mining operations, and prevention of gas outbursts. Research results on these most important topics are presented and critically evaluated. Methods to predict gas emissions for disturbed and undisturbed longwall faces are presented. Prediction of the worked seam gas emission and the gas emission from headings are also mentioned but not examined in detail. The ventilation requirements are derived from the prediction results and in combination with gas drainage the best distribution of available air currents is planned. The drainage of the gas from the worked coal seam, also referred to as predrainage, can be performed without application of suction only by over or underworking the seam. But in cases where this simple method is not applicable or not effective enough, inseam-boreholes are needed to which suction is applied for a relatively long time. The reason for this is the low permeability of deep coal seams in Europe. The main influences on the efficiency of the different degasing methods are explained. Conventional gas drainage employing cross measure boreholes is still capable of improvement, in terms of drilling and equipment as well as the geometrical borehole parameters and the operation of the overall system. Improved control of gas emissions at the return end of retreating faces can be achieved by installation of gas drainage systems based on drainage roadways or with long and large diameter boreholes. The back-return method can be operated safely only with great difficulty, if at all. Another method is lean-gas drainage from the goaf. The gas outburst situation in Germany is characterized by events predominantly in the form of ‘nonclassical' outbursts categorized as ‘sudden liberation of significant quantities of gas'. Recent research results in this field led to a classification of these phenomena into five categories, for which suitable early detection and prevention measures are mentioned.  相似文献   

12.
龚敏  文斌  王德胜 《岩土力学》2012,33(6):1822-1828
穿层抽放是一些高突矿井常用的瓦斯治理手段,在穿层抽放时采用爆破技术已被证明具有良好的抽放效果。以重庆市南桐矿穿层爆破为背景,建立了穿层深孔爆破数学模型;利用数值计算和现场实测抽放数据相结合的方法,分别研究了各爆破孔、控制孔动应力的变化以及爆破应力场强度与抽放效果的关系。研究结果表明,穿层抽放的特点决定了爆破孔与抽放孔的布孔方式。由于炮孔斜穿煤层,煤层各断面动应力场分布极不均匀,药包中心控制孔所受动应力为控制孔中最大。在南桐矿薄煤层试验条件下,药包长度为3.2 m的爆破孔平均破坏半径为0.57 m,较其他两排炮孔大20%以上。炮孔中药包长度是影响瓦斯抽放量的重要因素。爆破孔的平均单孔抽放量较控制孔高55%,爆破钻场较非爆破钻场平均单孔流量大49%。  相似文献   

13.
地应力和瓦斯压力作用下深部煤与瓦斯突出试验   总被引:1,自引:0,他引:1  
唐巨鹏  杨森林  王亚林  吕家庆 《岩土力学》2014,35(10):2769-2774
基于目前煤与瓦斯突出模拟试验均为人为控制突出口打开的实际情况,自主研制了可改变轴压、围压和孔隙压,实现突出口自行打开的煤与瓦斯突出模拟仪。以典型高瓦斯矿井-阜新孙家湾矿为例,试验模拟了煤层开采深度分别为900、 1 100、1 300 m时,突出煤层临近工作面区域在地应力和瓦斯压力共同作用下诱导发生煤与瓦斯突出全过程。试验利用轴压、围压模拟地应力作用,孔隙压模拟瓦斯压力作用。经相似理论计算确定了3种开采深度下轴压和围压值、孔隙压逐级增加得到了突出时瓦斯压力,并拟合了关系曲线。研究结果表明:开采深度、轴压、围压、瓦斯压力与突出距离、突出强度间均呈幂指数增加规律。随深度增加,地应力与瓦斯压力对突出影响增量逐渐减小。瓦斯压力对突出影响作用存在3阶段特征,分别为急剧影响增加阶段、稳定影响增加阶段和缓慢影响增加阶段,确定了瓦斯压力对突出影响变化率最大值,即瓦斯压力变化异常区与稳定区分界点为0.75 MPa,对应开采深度为350 m,与前人理论分析结果基本吻合。由此可以推断,随深部开采,地应力与瓦斯压力共同作用下煤与瓦斯突出频度将增加,但强度和破坏程度增加率将趋于平缓。所得结论对该矿深部煤与瓦斯突出机制认识和预测防治具有参考意义。  相似文献   

14.
底板岩巷穿层钻孔抽采技术和本煤层定向长钻孔抽采技术是目前高瓦斯和突出矿井回采工作面最为主要的瓦斯治理措施。晋城矿区赵庄矿煤层具松软低透气性特点,主要采用岩巷穿层钻孔消突为主,本煤层顺层钻孔消突为辅的瓦斯治理方法。但底板岩巷穿层钻孔存在工程量大、施工周期长及成本高等缺点,本煤层钻孔存在钻孔抽采不均匀、钻孔覆盖密度不足等技术缺陷。为对比考察底板梳状长钻孔与底板岩巷穿层钻孔的抽采效果,在赵庄矿1307采面开展了2种瓦斯治理方法。结果表明:抽采条件和抽采范围相同条件下,5个底板梳状长钻孔的瓦斯抽采总量占到底板岩巷穿层钻孔瓦斯抽采总量的75.4%,而底板梳状长钻孔的经济投入仅占底板岩巷穿层钻孔经济投入的29.2%。由此得出,研究区梳状长钻孔替代穿层钻孔的瓦斯抽采技术是可行的。该研究为底板梳状长钻孔替代底板岩巷的技术可行性提供了实践参考,为松软低透的高瓦斯和突出矿井的瓦斯治理提供了更为经济可行的治理方案。   相似文献   

15.
Based on the new viewpoint of interaction mechanics for solid and gas, gas leakage in parallel deformable coal seams can be understood. That is, under the action of varied geophysical fields, the methane gas flow in a double deformable coal seam can be essentially considered to be compressible with time-dependent and mixed permeation and diffusion through a pore-cleat deformable, heterogeneous and anisotropic medium. From this new viewpoint, coupled mathematical models for coal seam deformation and gas leak flow in parallel coal seams were formulated and the numerical simulations for slow gas emission from the parallel coal seams are presented. It is found that coupled models might be close to reality. Meanwhile, a coupled model for solid deformation and gas leak flow can be applied to the problems of gas leak flow including mining engineering, gas drainage engineering and mining safety engineering in particular the prediction of the safe range using protective layer mining where coal and gas outbursts can efficiently be prevented. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

16.
利用灰色关联分析法确定控制矿井煤与瓦斯突出的主导因素,根据人工神经网络建立煤与瓦斯突出危险性预测的系统结构,在此基础上,选用突出矿井的15个煤与瓦斯突出实例作为学习样本对网络进行训练,最后运用3个煤与瓦斯突出实例作为预测样本对所建模型进行验证。结果表明利用灰色理论—神经网络方法建立的预测模型能够满足煤与瓦斯突出预测的要求。通过分析和计算安阳矿区煤层的开采深度、地质构造(尤其是断层)与突出危险程度关系密切,在煤与瓦斯突出的预测、防治工作中可以作为首选指标来考虑。  相似文献   

17.
我国煤矿煤与瓦斯突出灾害严重影响煤矿安全生产。尽管近10年来这一灾害事故大幅度减少,但恶性事故依然发生,给矿工生命和煤矿安全生产造成严重损失。国内外现阶段的防治瓦斯突出技术,如水力压裂、水力割缝、水力冲孔、深孔爆破、密集钻孔等,不同程度地解决了防突安全掘进,但对于一些高瓦斯低渗透突出煤层,上述技术还难以从根本上解决消突安全快速掘进。所以,防突技术仍然是我国煤炭领域亟待攻关的重大科技难题。选取山西寿阳县新元煤矿31002工作面为试验案例,介绍CO2气相压裂技术方法,并探讨其防突掘进效果。新元煤矿开采的山西组3号煤层为低渗透突出煤层,前期主要采用密集钻孔预抽瓦斯防突措施,抽采达标时间长,掘进速度慢。高效抽采瓦斯,防止煤与瓦斯突出,保障煤巷安全快速掘进,是新元煤矿安全高效生产的重大技术难题。在新元矿采取的气相压裂措施概况如下:在掘进工作面前方实施双钻孔气相压裂;完成9个瓦斯抽采钻孔以覆盖巷道两侧各15 m安全范围;全部11个钻孔联网抽采3~5 d,防突参数K1值达标后恢复掘进。试验数据表明,气相压裂抽采防突技术措施的强化抽采效果显著,抽采效率大幅度提高,煤炮等动力现象减少,K1值降低,掘进割煤时巷道瓦斯浓度得以降低和均化,保障了连续安全掘进。实践证明,CO2气相压裂技术能够实现连续安全快速掘进理技术,在全国类似瓦斯地质条件煤矿中具有推广应用意义。   相似文献   

18.
煤体结构是煤与瓦斯突出的主要因素之一。利用钻孔测井曲线特征并结合矿井地质构造成果,对淮南潘一矿8煤层煤体结构特征及其构造煤发育规律进行了研究。研究表明该矿区8煤层构造煤发育,其厚度大于该煤层厚度20%的点数占一半以上,因其顶、底板围岩封闭性良好,有利于瓦斯聚集,易在采动条件下发生煤与瓦斯突出,确认为该区煤与瓦斯突出的重点煤层。依据瓦斯始突深度、构造煤分层厚度大于0.5m的分布范围、大中型断层位置及矿井突出资料,在F4断层组的两侧分别圈出了煤与瓦斯突出的危险区和威胁区。  相似文献   

19.
An instantaneous coal outburst is a sudden and violent simultaneous ejection of large amounts of coal and gas (methane, carbon dioxide) from the working coalface during underground mining. The occurrence of such an outburst usually leads to a gas explosion and pollution of the mine. Despite extensive research efforts in the past 150 years, the physical mechanisms causing coal outbursts are still poorly understood. Here we present a new model combining fracture mechanics, gas dynamics and rock mechanics to elucidate the physical mechanisms leading to instantaneous outbursts. This model suggests a domino effect that leads to a catastrophic failure of the coal and an instantaneous outburst. The model identifies a critical condition for the onset of instantaneous outbursts, and it successfully predicts all of the observed phenomena preceding outbursts, most of which are explained for the first time. The model also predicts a fracture aperture size effect which is confirmed by the existing observation-based fracture classification scheme used to assess outburst proneness.  相似文献   

20.
High gas pressure gradients in coal seams play an important role in the occurrence of outbursts during underground coal mining. Excess stress resulting from body forces due to high pressure gradients contributes to the structural failure of coal. We present a one-dimensional model of a dry, rigid coal seam with a moving mine face and determine gas pressures by solving the nonlinear equation for gas flow in a porous medium. An implicit finite difference scheme is used. Since the structure of coal has a dual porosity nature, we consider flow through both the macropores and the micropores. We investigate the effect of changes in mining velocity, idle mining periods and coal properties on the pressure profile in the coal seam. When the yield zone behind the moving mine face is taken into account, the greatest body force occurs on the least competent section of the coal seam.  相似文献   

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