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不同应力路径下两种典型煤样瓦斯渗透性研究
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作者 孙光中 李建坤 +4 位作者 周英豪 付佳乐 刘荣辉 段雪琪 李泽鹏 《西南大学学报(自然科学版)》 CAS CSCD 北大核心 2019年第12期120-127,共8页
瓦斯渗透率是影响瓦斯抽采效果的重要参数.针对原生结构煤与构造煤两种典型煤样分别进行了常规三轴压缩及增轴压卸围压两种应力路径下的瓦斯渗透性测试,结果表明:构造煤煤样变形能力较大,在常规三轴加载及增轴压卸围压两种应力路径下,应... 瓦斯渗透率是影响瓦斯抽采效果的重要参数.针对原生结构煤与构造煤两种典型煤样分别进行了常规三轴压缩及增轴压卸围压两种应力路径下的瓦斯渗透性测试,结果表明:构造煤煤样变形能力较大,在常规三轴加载及增轴压卸围压两种应力路径下,应变-渗透率曲线变化较为缓和,在峰值应力后出现反转,但增加速率较小.构造煤结构在载荷下的颗粒重组及裂隙揉搓封闭是导致其渗透性变化的主要原因.原生结构煤强度大,变形能力弱,应变-渗透率在屈服应力处出现反转,渗透率猛增.对比两种应力路径发现,增轴压卸围压路径下,渗透率变化更为剧烈,在屈服应力处渗透率增加速率变大,峰值应力处,达到最大值.结合声发射特征,得到了原生结构煤裂隙萌生、发展及贯通的宏观破坏特征是瓦斯渗透性出现渗流突变的主要原因.从构造煤与原生结构煤的对比情况可以发现,渗透率与变形之间并不是一致性关系,构造煤变形大,但渗透率变化较为缓和,原生结构煤变形小,渗透性出现急增现象.同时,应力路径对于构造煤瓦斯渗透性影响较小,对原生结构煤影响较大. 展开更多
关键词 原生结构煤 构造煤 应力路径 瓦斯渗透性 増轴压卸围压
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煤层瓦斯卸压抽放动态过程的气-固耦合模型研究 被引量:57
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作者 杨天鸿 陈仕阔 +3 位作者 朱万成 刘洪磊 霍中刚 姜文忠 《岩土力学》 EI CAS CSCD 北大核心 2010年第7期2247-2252,共6页
根据瓦斯渗流与煤体变形的基本理论,引入煤体孔隙变形与透气性演化的耦合作用方程,建立了考虑煤层吸附、解吸作用的含瓦斯煤岩固-气耦合作用模型。应用该模型模拟研究了不同压力影响下瓦斯抽放过程中煤层透气性的演化和抽放孔周围瓦斯... 根据瓦斯渗流与煤体变形的基本理论,引入煤体孔隙变形与透气性演化的耦合作用方程,建立了考虑煤层吸附、解吸作用的含瓦斯煤岩固-气耦合作用模型。应用该模型模拟研究了不同压力影响下瓦斯抽放过程中煤层透气性的演化和抽放孔周围瓦斯压力的变化规律,其结果对于深入理解瓦斯抽放作用机制并采取相应的瓦斯预防和控制措施等具有重要的理论和实践意义。 展开更多
关键词 瓦斯 瓦斯渗透性 气固耦合模型 数值模拟 卸压抽放
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下保护层开采煤层瓦斯卸压效果分析 被引量:1
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作者 高泽帅 张小龙 金霏阳 《华北科技学院学报》 2023年第1期8-15,共8页
针对山西某矿高瓦斯低渗透性煤层开采难度大,瓦斯抽采效率低等问题,运用数值模拟和现场实测的方法,利用运用PFC^(2D)研究了在下保护层开采过程中,上覆煤岩层的破断与垮落、裂隙发育及煤层孔隙率变化情况,并且结合现场对卸压瓦斯抽采效... 针对山西某矿高瓦斯低渗透性煤层开采难度大,瓦斯抽采效率低等问题,运用数值模拟和现场实测的方法,利用运用PFC^(2D)研究了在下保护层开采过程中,上覆煤岩层的破断与垮落、裂隙发育及煤层孔隙率变化情况,并且结合现场对卸压瓦斯抽采效果以及煤层透气性进行研究。结果表明:在保护层工作面回采120m过程中上覆岩层及被保护层发生4次周期性断裂;被保护层煤层裂隙及覆岩离层裂隙和竖向破断裂隙均已充分发育;保护层回采过程中孔隙率最大达到0.85,明显高于未回采区域;卸压区瓦斯抽采率最高达到82.3%;煤层透气性系数增加到原来的100倍以上。 展开更多
关键词 瓦斯渗透 数值模拟 保护层卸压 煤层透气 抽采效果
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考虑流固耦合的立井揭煤瓦斯抽采模拟研究 被引量:1
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作者 马忠 石必明 +1 位作者 穆朝民 陈思 《煤矿开采》 北大核心 2013年第5期109-111,共3页
瓦斯抽采对于立井揭煤具有重要的作用,传统的瓦斯抽采设计常依据经验或仅靠瓦斯在煤层中流动服从达西定律和质量守恒定律来判断和设计瓦斯抽采工程,没有考虑瓦斯的吸附作用和应力对煤层瓦斯流动的影响。在考虑流固耦合和瓦斯吸附作用的... 瓦斯抽采对于立井揭煤具有重要的作用,传统的瓦斯抽采设计常依据经验或仅靠瓦斯在煤层中流动服从达西定律和质量守恒定律来判断和设计瓦斯抽采工程,没有考虑瓦斯的吸附作用和应力对煤层瓦斯流动的影响。在考虑流固耦合和瓦斯吸附作用的基础上建立了瓦斯流动方程,同时对不同煤层围岩应力下瓦斯流动情况作了分析,指出了围岩应力大小对瓦斯抽采具有重要的影响,围岩压力增大会导致瓦斯难抽出,残余瓦斯压力大;围岩压力越大,煤层渗透率越低。 展开更多
关键词 流固耦合 瓦斯抽采 瓦斯渗透性 COMSOL MULTIPHYSICS
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影响矿井瓦斯涌出量的因素 被引量:7
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作者 杨勇 王乔文 《内蒙古煤炭经济》 2005年第4期93-94,共2页
文章介绍矿井生产过程中,地质因素、开采因素和自然因素对矿井瓦斯涌出量的影响。
关键词 瓦斯涌出量 瓦斯含量 瓦斯渗透性 通风压力 大气压
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云驾岭煤矿2号煤层瓦斯赋存主控地质因素分析 被引量:2
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作者 张明杰 李凯 付帅 《中国煤层气》 2014年第1期20-24,11,共6页
基于云驾岭煤矿瓦斯涌出量异常变化的现象,收集地质勘探和生产期间揭露的地质构造及瓦斯信息,运用瓦斯地质理论和煤层瓦斯赋存与流动理论,从煤层瓦斯生成、运移、储存的角度,研究岩浆岩侵入、煤层埋深和断层等地质因素对2号煤层煤质、... 基于云驾岭煤矿瓦斯涌出量异常变化的现象,收集地质勘探和生产期间揭露的地质构造及瓦斯信息,运用瓦斯地质理论和煤层瓦斯赋存与流动理论,从煤层瓦斯生成、运移、储存的角度,研究岩浆岩侵入、煤层埋深和断层等地质因素对2号煤层煤质、生烃能力、煤层渗透性、瓦斯含量等参数以及煤层瓦斯赋存的影响,研究结果表明岩浆岩侵入是煤层瓦斯赋存的主要控制因素,断层和煤层埋深是煤层瓦斯赋存的一般影响因素。 展开更多
关键词 瓦斯涌出量 瓦斯赋存岩浆岩侵入煤层渗透 瓦斯运移
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Calculation of gas content in coal seam influenced by in-situ stress grads and ground temperature 被引量:1
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作者 王宏图 李时雨 +3 位作者 吴再生 杨晓峰 秦大亮 杜云贵 《Journal of Coal Science & Engineering(China)》 2002年第2期60-64,共5页
On the basis of the analysis of coal bed gas pressure in deep mine, and the coal bed permeability ( k ) and the characteristic of adsorption parameter ( b ) changing with temperature, the author puts forward a new cal... On the basis of the analysis of coal bed gas pressure in deep mine, and the coal bed permeability ( k ) and the characteristic of adsorption parameter ( b ) changing with temperature, the author puts forward a new calculating method of gas content in coal seam influenced by in situ stress grads and ground temperature. At the same time, the contrast of the measuring results of coal bed gas pressure with the computing results of coal bed gas pressure and gas content in coal seam in theory indicate that the computing method can well reflect the authenticity of gas content in coal seam,and will further perfect the computing method of gas content in coal seam in theory,and have important value in theory on analyzing gas content in coal seam and forecasting distribution law of gas content in coal seam in deep mine. 展开更多
关键词 gas content in coal seam coal bed gas in situ stress grads ground temperature
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Pulsating hydraulic fracturing technology in low permeability coal seams 被引量:11
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作者 Wang Wenchao Li Xianzhong +1 位作者 Lin Baiquan Zhai Cheng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第4期681-685,共5页
Based on the difficult situation of gas drainage in a single coal bed of high gas content and low perme- ability, we investigate the technology of pulsating hydraulic pressure relief, the process of crank plunger move... Based on the difficult situation of gas drainage in a single coal bed of high gas content and low perme- ability, we investigate the technology of pulsating hydraulic pressure relief, the process of crank plunger movement and the mechanism of pulsating pressure formation using theoretical research, mathematical modeling and field testing. We analyze the effect of pulsating pressure on the formation and growth of fractures in coal by using the pulsating hydraulic theory in hydraulics. The research results show that the amplitude of fluctuating pressure tends to increase in the case where the exit is blocked, caused by pulsating pressure reflection and frictional resistance superposition, and it contributes to the growth of fractures in coal. The crack initiation pressure of pulsating hydraulic fracturing is 8 MPa, which is half than that of normal hydraulic fracturing; the pulsating hydraulic fracturing influence radius reaches 8 m. The total amount of gas extraction is increased by 3.6 times, and reaches 50 LJmin at the highest point. The extraction flow increases greatly, and is 4 times larger than that of drilling without fracturing and 1.2 times larger than that of normal hydraulic fracturing. The technology provides a technical measure for gas drainage of high gas content and low permeability in the single coal bed. 展开更多
关键词 Gas drainage Pulsating hydraulic fracturing Fatigue damage Permeability improvement
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Safety research in the gasification process of novel multi-thermal-source coal gasifier
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作者 TIAN Yu-xian WU Min-huan WANG Xiao-gang ZHANG Ya-ping, QIANG Jun-feng TIAN Xin-wei WANG Xi-lian 《Mining Science and Technology》 EI CAS 2009年第2期210-215,共6页
In order to collect the gas safely produced in the gasification process of the novel multi-thermal-source coal gasifier,based on its gasification skill and the characteristics of the products,this paper analyzes the p... In order to collect the gas safely produced in the gasification process of the novel multi-thermal-source coal gasifier,based on its gasification skill and the characteristics of the products,this paper analyzes the possible dangers in the gasification process,devises the gasifier eruption and explosion experiments,explores the conditions of gasifier eruption and gas explosion,studies their effects on the gasification process and establishes safe operation measures.Gasifier eruption hazard occurs easily in the gasification process of one-thermal-source coal gasifier when MSiO2 is far higher than that in the normal adjuvant.The gas permeability in the gasifier is not the same and the power supply is too large.However,similar conditions in the gasification of multi-thermal-source coal gasifier do not produce a gasifier eruption accident so easily.When it erupts,the gasifier should be stopped and then cooled down naturally or inert gas can be sprayed on the gasifier to cool it off,and thus gas explosion can be avoided.There is a possibility of direct gas explosion,but it can be avoided when the gas in the gas collecting space is replaced slowly by supplying a small amount of power or the inert gas fills the space in the previous gasification.The time a fire is lit is strictly controlled,the gas is drawn in by using the aspirator pump,and the gasifier pressure is kept in the state of micro-positive pressure in the middle and later gasification process.The conclusion is that the gasification process of the novel multi-thermalsource coal gasifier is safe according to normal operation rules. 展开更多
关键词 coal gasification novel multi-thermal-source coal gasifier gas explosion gasifier eruption
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Possibilities of Increasing the Effectiveness of Mining Methane Drainage in Conditions of Low Permeability of Coal Seams
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作者 Nikodem Szlazak Dariusz Obracaj Justyna Swolkien 《Journal of Energy and Power Engineering》 2014年第7期1167-1176,共10页
There is very low permeability of coal seams in Polish coal mines. For this reason, pre-mining methane drainage is conducted to a small extent, which rarely brings expected results. Methane emission from roof and floo... There is very low permeability of coal seams in Polish coal mines. For this reason, pre-mining methane drainage is conducted to a small extent, which rarely brings expected results. Methane emission from roof and floor sub-economic seams has the greatest share in total methane emission to workings. Effective CMM (coal mine methane) capture is used from goaf in advance or after mining. However, due to longwall mining and ventilation systems, it is not always possible to capture methane from strata. This paper presents a method of increasing the permeability of coal seams and a method of drilling boreholes towards goaf. Initial results of the effectiveness of methane capture after applying these methods are presented. 展开更多
关键词 Drainage effectiveness coal mine methane drainage methane emission permeability of coal seams.
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