煤与瓦斯突出防治工作的实践11625.pptx
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1、Coal Outbursts and Outburst Control in Chinese Coal Mines:PCG Experience中国平煤神马集团中国平煤神马集团煤与瓦斯突出防治工作的实践煤与瓦斯突出防治工作的实践Outline平顶山矿区煤与瓦斯突出情况Coal Outbursts in PCG平顶山矿区煤与瓦斯突出监测预警 Outburst Monitoring平顶山矿区煤与瓦斯突出防治Outburst Control Coal Outbursts in PCG一、平顶山矿区煤与瓦斯突出情况一、平顶山矿区煤与瓦斯突出情况pChina is the worlds most ser
2、ious national gas disaster中国是世界上瓦斯灾害最严重的国家。国有重点煤矿48%以上是高瓦斯和瓦斯突出矿井。pHeavy casualties,suffered serious losses伤亡重大、损失严重伤亡重大、损失严重 建国以来共发生22起死亡百人以上煤矿事故,其中20起是瓦斯灾害事故,死亡3331人。2011年,全国煤矿发生瓦斯事故119起、死亡533人。2011年全国煤矿10人以上事故统计中国煤与瓦斯突出概况Coal Outbursts in China7.6930.7761.54冲击地压Rock burst水害Water disaster瓦斯灾害Gas d
3、isaster 中国平煤神马集团目前共有23个原煤生产单位,36对矿井(不包括整合小煤矿)。其中突出矿井16对,煤与瓦斯突出矿井核定产能3662万吨/年,占全公司产能(5008万吨/年)的73.1%。PCG has 36 coal mines with overall annual coal production capacity 50 million tons.Out of our 36 coal mines,there are 16 coal outburst mines with coal production capacity 36.62 million tons/year,.1、矿区
4、基本情况Introduction 中国平煤神马集团所开采的突出煤层普遍松软、顶板坚硬,煤层渗透率为0.00010.0061mD,属难以抽采煤层。目前,主力生产矿井均已进入深部开采,最大开采深度达1100m以上,生产区域煤层最大瓦斯含量达30.0m3/t,最大瓦斯压力达6.60 MPa,特别是禹州的突出矿井和平顶山矿区东部的八矿、十矿、十二矿、十三矿、平宝公司,瓦斯压力与地应力相互耦合,严重威胁着煤矿的安全生产。Permeability is low,between 0.0001-0.0061mD.Gas pressure is high with maximum pressure 6.6MPa
5、.Gas content is high with maximum value 30m3/t.Coal outburst possibility is large.At the moment,most mining operations are under 800m deep.Some of mines are operated with depth at 1100 m.1、矿区基本情况Introduction矿别矿别Mines突出次数突出次数Number of times突出煤量突出煤量Amount of coal(t)(t)突出瓦斯量突出瓦斯量Amount of gas(m(m3 3)平均
6、突出煤量平均突出煤量Average amount of coal(t)(t)平均突出瓦斯量平均突出瓦斯量Average amount of gas(m(m3 3)占次数比例占次数比例Proportion(%)%)一一矿矿No.11 12 24204202 24204200.64 0.64 二二矿矿No.21 13939290029003939290029000.64 0.64 四四矿矿N No.41313300300118571185723.0823.08912.1912.18.33 8.33 五五矿矿No.51313390390222382223830301710.61710.68.33 8
7、.33 六六矿矿No.63 362621755175520.720.75855851.92 1.92 八八矿矿No.840403957395725160225160298.998.96290.16290.125.64 25.64 十十矿矿No.10504714471416927516927594.394.32285.52285.532.05 32.05 十二十二矿矿No.1227271737173712687412687464.364.34699.04699.017.31 17.31 十三十三矿矿No.134 419411941345524345524485.3485.386381863812
8、.56 2.56 首山一首山一矿矿SY No.11 14040300030004040300030000.64 0.64 白白庙矿庙矿BM1 15 5140014005 5140014000.64 0.64 平禹四平禹四矿矿PY No.42 251025102410000410000255125512050002050001.28 1.28 合合计计Total156156182891828913468451346845117.2117.28633.68633.6/2、矿区煤与瓦斯突出特点及规律Characteristic自1984年发生第一次煤与瓦斯突出以来,累计发生突出156次,平均煤量11
9、7.2t/次,平均瓦斯量8633.6m3/次。Since 1984,occurred the first coal and gas outburst.Accumulative coal and gas outburst 156 times.The average amount of coal 117.2t and gas 8633.6m3.矿井突出次数对比Number of outburst in different mines矿井突出煤量与突出瓦斯量对比Outburst amount of coal and gas in different mines突出类型Outburst types突出
10、与采掘工艺关系Outburst and mining technology突出与构造关系Outburst and tectonic2、矿区煤与瓦斯突出特点及规律Characteristic(t)(m3)一矿二矿四矿五矿六矿八矿十矿十二矿十三矿白庙矿首山一矿平禹四矿0500001000001500002000002500003000003500004000004500000100020003000400050006000突出瓦斯量Gas突出煤量Coal1113133405027411250454035302520151050一矿二矿四矿五矿六矿八矿十矿十二矿十三矿白庙矿首山一矿平禹四矿断层Fau
11、lt,56褶皱Fold,10产状变化Occurrence change,21压出Press out,114突出Outburst,26倾出Pour out,16放炮作业Blasting,72采煤机割煤Shearer cutting coal,42综掘机割煤Comprehensive Digging,16打钻Drilling,9其他Others,17不同煤层煤与瓦斯突出强度不同。其中己组煤层突出次数最多、突出煤量和瓦斯涌出量最大,戊组次之,丁组最小。Different coal seams of varying intensity of coal and gas outburst.Which gr
12、oup B has most number of outburst,and the largest amount of coal and gas,followed by group C,group D Min.煤层煤层Coal seam次数次数Number of times平均突出煤平均突出煤量量Average amount of coal(t)最大突出煤量最大突出煤量Largest amount of coal(t)平均突出平均突出瓦斯量瓦斯量Average amount of gas(m3)丁组D4012.748567.8戊组戊组C4147.75512860.3己组己组B74144.325
13、55107102、矿区煤与瓦斯突出特点及规律DCBOutburst Monitoring二、平顶山矿区煤与瓦斯突出监测预警二、平顶山矿区煤与瓦斯突出监测预警动力系统采动应力外界扰动系统失稳能量释放非稳定瓦斯积聚裂缝形成冲击倾向性开采深度瓦斯构造煤个性因素构造结构应力能量共性因素非稳定区域稳定区域All kinds of dynamic disasters have unified power source,the mechanical process that dynamic disasters occur from birth is very complex.Once we master t
14、he main factors and their mutual coupling relationship,it is possible to reveal the deep mine dynamic disasters mechanism.1、动力灾害多因素耦合统一灾变机理Multi-factors Coupling Unified Disaster Mechanism of Dynamic Disasters矿井各类动力灾害都具有统一的动力源,动力灾害从孕育到发生的力学过程十分复杂,受到多种因素的影响,只要掌握了主要影响因素及其相互耦合关系,就有可能揭示深部动力灾害的灾变机理。在此基础上
15、我们提出了以平顶山东三矿为试验矿井构建统一预测与防治技术体系的总体思路.On this basis,we propose east three mine for the trial to build an unified system of prediction and prevention technology.实施统一防治实现统一监测预警实行统一预测建立统一理论试验矿井八矿十矿十二矿动力灾害2、动力灾害统一防治技术体系Dynamic disasters unified prevention technology system八矿戊9-10煤层动力灾害分级预测图Dynamic disaste
16、rs prediction map of C9-10 in Mine No.8等级:按作业规程进行。等级:单一局部解危,加强检测。等级:局部解危,加强检测。等级:综合解危,加强检测。等级:综合解危,加强检测,效果检验。3、动力灾害统一预测Dynamic disasters unified prediction如何实现复合动力灾害监测预警?How to monitoring?应力监测Stress monitoring统一监测预警unified monitoring基于统一机理Based on the unified theory电荷法The Electric Charge Method钻屑温度法
17、The Cuttings Temperature Method4、动力灾害统一监测预警 Dynamic disasters unified monitoring5、煤与瓦斯突出预测Outburst prediction区域突出危险性预测、区域防突措施、区域措施效果检验、区域验证Regional outburst prediction,regional outburst prevention measures,regional test the effectiveness of measures,regional verification工作面突出危险性预测、工作面防突措施、工作面措施效果检验、
18、安全防护措施Workface outburst prediction,workface outburst prevention measures,workface test the effectiveness of measures,security measures两个“四位一体”综合防突措施Two of four in one“integrated outburst control measures瓦斯压力瓦斯压力P/MpaGas pressure瓦斯含量瓦斯含量W/(m3/t)Gas content区域类别区域类别Type of area0.748无突出危险区No dangerous除上
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