首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 250 毫秒
1.
浅埋采空区下远距离煤层开采覆岩破坏直接影响本煤层工作面安全开采和上覆采空区稳定性。针对神东矿区大柳塔煤矿开采实际,采用相似模拟试验、数值计算和现场实测方法研究了2-2煤采空区下伏的5-2煤层开采覆岩运动及裂隙发育规律。研究结果表明,大柳塔煤矿5-2煤层一次采全高开采,覆岩裂隙带贯穿层间岩层导通2-2煤采空区,层间岩层的破断会诱发上覆岩层大面积垮落,工作面出现强烈的矿压显现,同时加剧了上覆采空区围岩结构失稳及地表沉陷。现场实测也表明大柳塔煤矿5-2煤层大采高开采覆岩破坏高度137. 32 m,裂采比20. 2,与模拟结果一致。这些成果可以为大柳塔矿5-2煤层工作面安全开采提供理论依据。  相似文献   

2.
组合硬岩层顶板破断规律及导水裂隙带电法探测   总被引:1,自引:0,他引:1       下载免费PDF全文
为分析组合厚硬岩层顶板导水裂隙带发育高度,合理设计区段防水煤柱尺寸参数,文章利用并行电法测试技术探测了两关键层临近赋存顶板破坏特征及其破断规律,结果表明:两关键硬岩层呈现非同步破断特征,当下部关键层出现一个以上破断周期后,引起上部关键层破断;1622(3)工作面组合厚硬岩层顶板导水裂隙带发育高度50 m,为平均采高的12.8倍。研究结果为同类地质条件下采场围岩控制及防水煤柱尺寸设计提供指导依据。  相似文献   

3.
大柳塔煤矿12404工作面煤层埋深浅、上覆基岩薄、松散含水层厚,地表让有母河沟横过。通过对工作面不同采高条件下冒落带、裂隙带的计算及老顶破断岩块形成结构的力学分析,认为工作面涌水灾害不可避免,但岩块只发生切落溃沙;据此提出了采用疏排水与预提高支架的支护阻力来防止工作面涌水、溃沙灾害的发生.为类似条件下煤层的安全开采提供了理论指导。  相似文献   

4.
为了保证坚硬顶板工作面的安全高效生产,根据坚硬顶板初采期间的岩层结构特点,基于断裂力学理论,建立了中部拉槽强制放顶断裂力学模型,推导了基本顶初次破断距的表达式,分析了岩层断裂韧度、裂缝长度等参数对初次破断距的影响规律。研究结果表明:基本顶的初次破断距随断裂韧度的增大而增加,随裂缝长度和基本顶上覆荷载的增大而减小;在基本顶断裂韧度或上覆荷载一定的条件下,人工裂缝长度比达到0.6以后,基本顶初次破断距保持不变。研究结果可为类似工程的设计和施工提供依据。   相似文献   

5.
以工作面进入平行空巷、回撤通道时顶板超前破断、巷道被掩埋、支架压架的事故为研究对象,通过相似模拟试验对比了工作面过不同宽度空巷、充填与否时围岩破坏特征、应力变化和支架载荷变化,展现了工作面过大断面空巷基本顶超前破断及其灾变演化过程。研究表明:超前破断会导致基本顶一次性破断长度增加、上覆亚关键层同时破断。一旦发生超前破断,现有支护技术很难避免压架,故预防出现超前破断最为重要。鉴于此,运用Winkler地基梁理论对基本顶中弯矩和挠度进行了计算,解释了试验中围岩破断特征、支承应力和支架载荷的变化,给出了基本顶超前破断的机制:煤柱失稳是导致出现超前破断的主要因素,提高煤柱强度有利于预防超前破断。据此提出了局部注浆充填技术使煤柱由单轴压缩变为三轴压缩,提高煤柱支撑能力,并在现场实践中得到了验证。  相似文献   

6.
池小楼  杨科  刘文杰  付强  魏祯 《岩土力学》2022,43(5):1391-1400
针对大倾角厚软煤层下分层安全综采问题,结合淮南矿区潘北煤矿1212(3)大倾角厚软煤层分层综采下分层工作面地质与工程条件,综合运用基于数字散斑、声发射监测与分布式光纤传感技术的物理模拟试验、基于煤系地层赋存禀赋建模技术的数值模拟试验相结合的研究手段,开展了下分层开采再生顶板破断倾向分区演化、再生岩体变形声发射能量与光纤应变响应规律及应力分布特征研究。结果表明:再生顶板破断由其破断岩块滑移、低中位悬臂梁和高位铰接岩梁断裂组成,双梁破断是引起下分层支架失稳的关键所在。下分层中上部双梁破断声发射能量呈高度聚集且持续时间短,光纤感知低位悬臂梁破断且中上部光纤应变峰值高,下分层中上部是支架与再生顶板稳定性控制的重点区域。下分层下部再生顶板破断岩块充填密实且粒径小,是架间与架前岩块漏冒多发区域。下分层再生顶板中形成高应力组成的应力拱,距采空区高度约30 m,双梁破断主要发生在拱内,拱中岩体破断对支架具有一定的冲垮作用。  相似文献   

7.
为了研究矿山采空区坡体的应力(裂隙)分布情况,并对崩塌过程分析进行检验,本文采用离散元数值软件(UDEC)对纳雍县张家湾镇普洒煤矿采煤过程中覆岩裂隙发生、发展及其变化过程进行模拟。结果表明:随着煤层开采的推进,覆岩裂隙向上发展且密度逐渐增多;由于采空区范围过大时,部分被重新压实,裂隙发育至地表形成开切眼;最后在外力作用下整条裂缝垂直贯通,形成危岩体的发展规律,可为类似的矿山地质灾害防治提供基础依据。  相似文献   

8.
煤炭开采活动导致的煤层顶板覆岩地质条件变化及采动裂隙发育是损害地下关键含水层的直接原因,也是造成矿区生态环境退化的根源。煤层顶板覆岩结构中发育的厚砂岩作为一种典型的地质条件,其对覆岩采动裂隙的发育规律具有重要的影响。为此,在分析研究区主采煤层赋存地质条件及其分布规律的基础上,选择陕北煤炭开采区曹家滩煤矿主采2?2煤层顶板覆岩为地质原型,采用FLAC3D数值模拟平台模拟分析了厚砂岩不同厚度和位置对覆岩采动裂隙发育形态和发育高度的影响,并以此提出了相应的“采煤保水”建议。结果表明:研究区2?2煤层顶板覆岩中厚砂岩平均厚度25 m,距2?2煤层平均间距76 m;厚砂岩距煤层30 m时,覆岩采动裂隙表现为“矩形—L形—马鞍形”的动态变化特征,距煤层70 m时表现为“L形—倒梯形—马鞍形”变化特征,距煤层大于95 m时全程表现为“马鞍形”特征;覆岩采动裂隙最大发育高度随厚砂岩层位的升高而先减小后增大;厚砂岩厚度H≥30 m、距煤层间距L>95 m,或H≥60 m、L>60 m时,可有效阻挡采动裂隙向上发育贯穿厚砂岩;在充分考虑厚砂岩对覆岩采动裂隙发育规律的影响,选择合适的空间位置和开采阶段进行合理的覆岩减损和保水防治,实现“边采边治、边采边护”的绿色开采模式。该研究成果可为黄河流域中游陕北煤矿区煤炭开采与生态环境保护协调发展提供理论指导。   相似文献   

9.
通过UDEC(Umversal Discrete Element Code)对厚松散层及超薄覆岩条件下某矿工作面4种工况开采防水煤柱覆岩破坏特征的数值模拟以及物理模拟对计算结果的验证,得到了工作面走向中部覆岩冒落带高度随放采比的增大而增大、裂隙带高度随放采比的增大而发展缓慢的结论。覆岩沿高度方向形成“三带”,但不同于其它条件下的放顶煤开采,采空区走向中部覆岩裂隙带高度与冒落带高度基本一致,顶板岩层呈现整体弯曲下沉。当放采比为2:1与2.5:1时,顶板岩层呈现整体弯曲缓慢下沉,裂隙带最大发育高度为20—22m。通过对覆岩破坏规律以及采区水文地质特征的分析,覆岩突水可能性很小。  相似文献   

10.
预裂强制放顶是一种保障煤矿安全生产的重要技术。为确定初采期间深孔预裂强制放顶的合理参数,根据基本顶岩层的结构特点,基于断裂力学理论,建立含斜裂隙的深孔预裂强制放顶断裂力学模型,推导基本顶初次破断距及支架阻力表达式,对模型参数进行了敏感性分析。分析结果表明:基本顶初次破断距随预裂裂隙倾角或垂深比的增大而减小,随支架阻力的增大而增大;裂隙倾角从10°增加到90°,基本顶初次破断距的最大减幅为83.16%;裂隙垂深比从0.1增加到0.9,基本顶初次破断距的最大减幅为65.84%;支架阻力从3 MN增加到18 MN,基本顶初次破断距的最大增幅为1.4倍;理论计算与现场实测对比,验证了该模型的合理性,研究结果可为坚硬顶板煤层深孔预裂强制放顶参数设计和施工提供指导。   相似文献   

11.
The movement of hard and thick key stratum during underground coal extraction via longwall top coal caving differs from that of other types of overlying strata. Therefore, numerous problems such as roadway instability, rock burst and strong mining-induced mine seismicity will be encountered as a result of the fracture of a hard and thick key stratum. The key to controlling the behavior of strata is to understand the movement and fracture pattern of the hard and thick key stratum. Taking the 103up02 working face of Baodian coal mine as a case study in this study, according to the in situ measured microseismic data, the rule of fracture of overlying hard and thick sandstone caused by working face mining is studied, and the mechanism of dynamic pressure impact induced by hard and thick strata fracture is explained. Finally, the dynamic pressure control technology is put forward. The research results are of great significance for coal mining under hard and thick strata, mastering the fracture rules of hard and thick strata and predicting dynamic disasters.  相似文献   

12.
李杨杨  张士川  高立群  孔德志  孔贺 《岩土力学》2016,37(11):3283-3290
针对阳城煤矿不等长工作面台阶区域发生冲击地压灾害问题,基于工作面特殊布置方式及覆岩赋存特征,采用理论分析、数值模拟和现场实测等方法,分析了台阶区域覆岩结构运动特征和围岩应力演化规律,研究了台阶区域冲击地压诱发机制。研究结果表明:1304工作面台阶区域覆岩经历了“OX-S-C”型较为复杂的结构演变,覆岩空间结构由OX向S型转换时,顶板岩层大面积破断下沉,在台阶区域形成多个悬臂梁结构,越往高位,悬臂梁长度越大;受覆岩运动和采动应力场叠加影响,煤岩体形成高应力集中区,在顶板岩层动载冲击作用下,煤岩体弹性应变能突然释放,诱发冲击地压。采用COMSOL软件对不同卸压钻孔参数下煤体应变能分布特征进行模拟研究,优化了台阶区域卸压钻孔参数。根据模拟结果,随着钻孔孔径、孔深增大及间距减小钻孔卸压效果越明显,考虑工程实际,确定孔径为150 mm、孔深为30 m、间距为1 m为合理有效的卸压钻孔参数,并应用于1302工作面台阶区域的冲击地压防治,取得了较好的防冲效果。  相似文献   

13.
蒙陕深埋矿区属于新开发矿区,煤炭开采扰动下水文地质特征仍不清楚,基建和生产过程中发生了多种类型的水害问题,其中工作面回采过程中和回采结束后的涌水变化特征研究处于空白,给井下排水系统设置和防治水工作开展增加了难度。为查清工作面回采前后的全生命周期涌水量演化规律,开展顶板含水层分布、导水裂隙带发育、涌水量变化等方面的实测研究。结果表明:煤层顶板地层均属于河流/河湖相沉积,空间上呈含隔水层互层状展布,隔水层的主要岩性为泥岩、砂质泥岩;受控于鄂尔多斯盆地伊陕斜坡的单斜构造,含煤地层高程在蒙陕接壤区最低,其顶板侏罗纪煤系含水层属于区域性地下水滞流区。煤层顶板地层在中生代沉积旋回作用下,发育了3层直接充水含水层,其中直罗组七里镇砂岩(Ⅰ号含水层)距离3-1煤层顶板77.4~109.4 m,呈富水强、水压高的特点;导水裂隙带实测高度为103.4 m,裂采比18.8,工作面回采过程中导水裂隙带将发育至Ⅰ号含水层。工作面回采前期,随着导水裂隙带向上发育沟通不同含水层,采空区涌水量呈阶段性增加,工作面回采至300 m左右,采空区涌水出现第一个峰值;工作面回采中后期,导水裂隙带持续周期性发育,导致顶板含水层破坏范围不断扩大,采空区涌水量仍呈台阶式增加;工作面回采结束前后,采空区范围内顶板导水裂隙带发育最强烈、范围最大,出现采空区涌水量最高值;工作面回采结束后,在其顶板隔水层中泥质组分的自弥合作用下,隔水层逐渐再造,导水裂隙宽度变窄、数量变少,采空区涌水量“缓坡式”衰减(每小时几十立方米以内)。对工作面涌水量实现全生命周期演化规律掌握,可以为蒙陕深埋矿区井下工作面防治水工作提供科学依据。   相似文献   

14.
应用覆岩空间结构学术观点对孤岛顶煤综放采场冲击矿压机制及其控制技术进行研究。根据覆岩关键层的岩性、层位、范围等因素,覆岩关键层空间结构分为覆岩空间大结构和基本顶有限矿压结构。孤岛顶煤采场冲击矿压发生机制:①孤岛顶煤综放采场 ? 型空间大结构形成过程是集中压力逐渐增加的过程,是该时间段发生冲击矿压的力源;②采场基本顶形成最下位 ? 型空间结构后,随着工作面推进,基本顶块体产生滑落失稳,造成工作面冲击矿压现象。通过对分段来压理论、基本顶结构失稳理论和坚硬顶板预断裂理论对覆岩关键层空间结构运动的控制作用研究,提出采用覆岩空间结构理论分析、分阶段降低放煤率、坚硬覆岩预爆泄压技术、覆岩坚硬岩层破裂的微地震监测技术等方式方法预防冲击矿压的发生。  相似文献   

15.
In order to master the tendency mining-fracture-evolution characteristics of overlying strata and coal seams above working face with large inclination angle and mining depth in mining process, the 1221 working face in Zhao mine is selected as the engineering background and a mathematical model is established. The displacement variation, stress and strain of overlying strata and coal seams are simulated by using ANSYS software. In the mining process, the movement characteristics, displacement variation laws and fracture evolution characteristics of overlying strata and coal seams above working face with large inclination angle and mining depth along inclination direction are discussed. Simulation results show that with the advance of working face, the fracture development of overlying strata and coal seams is larger and larger; the area of gob is gradually expanding and the transverse stress of overlying strata and coal seams is also expanding. Stress contour of overlying strata and coal seams at both ends of gob becomes denser and denser; the activity of the overlying strata and coal seams near the up-roadway side of the gob is violent. The pressure relief zone is formed in the upper part of the strata and the roof above the gob. Large inclination angle of coal seam results in larger supporting pressure in the underside of the gob and smaller supporting pressure in the upper side of the gob. Along the inclination direction of the working face, the pressure relief zone is mainly concentrated in the outlet roadway of the working face; the fracture development and strata separation are obvious, which offer good passage for gas flow and migration.  相似文献   

16.
陕北榆神矿区煤层开采面临顶板水害防治与水资源协同保护技术需求,根据材料力学、断裂力学相关理论,以及不同覆岩类型的采动裂隙带统计成果,提出基于预裂–注浆改性(P-G)的煤层顶板失水控制技术思路,其基本原理为通过压裂工艺将连续性好的基岩层压裂成非连续性岩层,削弱采动导水裂隙在坚硬岩层中向上扩展的“尖端效应”,抑制导水裂隙发育高度。再采用黏土类软弱注浆材料将岩层改性为相对软弱的岩层,起到抑制导水裂隙带向上发育与降低上覆岩层导水能力的双重作用,从而实现煤层顶板含水层失水控制。本文以陕北能源基地榆神矿区为对象,提出以采煤工作面地质与水文地质条件分析,采煤工作面顶板含水层涌(失)水模式识别,P-G模式、层位与时间确定,顶板岩层水平孔水力压裂与注浆改性为主要思路,对榆神矿区采煤工作面顶板含水层失水控制方法进行了探讨,为我国陕北能源基地榆神矿区顶板水害防治和水资源协同保护技术实践提供一定的借鉴。   相似文献   

17.
In the coal measure strata, igneous rocks are often invaded, and their occurrence, size, and distribution form play an important role in mining safety. The breakage of hard and thick igneous rocks easily induces dynamic disasters, such as rock burst, mine seismicity, gas outburst, and surface subsidence, which seriously threaten mine safety production. In view of the working face with overlying hard and thick igneous rocks, the evolution characteristics of mining stress and energy distribution under hard and thick igneous rocks were investigated. Furthermore, the influence law of different horizons and thicknesses of igneous rock on overlying strata movement law, stress distribution, and energy distribution was analyzed based on FLAC3D numerical simulation. Results show that no evident subsidence of the overlying strata exists before the igneous rock is broken. Additionally, the subsidence amount of the overburden is suddenly increased after the igneous rock is broken, thereby showing significant mutability. Before the igneous rock breaks, a high stress area is formed around the goaf, and the stress concentration gradually increases with the increase of the mining scope. After the igneous rock breaks, the coal under high stress is prone to induce dynamic disasters under the action of strong dynamic load. However, the advanced abutment pressure and stored energy rapidly decreased. The accuracy of the numerical simulation is verified by field monitoring. Results of the study are of considerable significance for safe mining of working face under similar geological conditions.  相似文献   

18.
Based on the analysis of dynamic phenomena under the condition of high-located hard-thick (HLHT) stratum of one coal mine, along with the similar material simulation and theoretical analysis, the characteristics of bed separation development and cracks distribution under the HLHT stratum are studied. This paper proposes a discriminating method for overlying strata Three Zones considering the influence of HLHT stratum. The development laws of cracks and disaster-causing mechanism of hard-thick magmatic rock in different strata are respectively analyzed. The studies show that in line with the working face advancing direction, the height of bed separation under the magmatic rock increases in the trend of “Increase–Stability–Decrease”, and the width of bed separation increases linearly. The width of bed separation reaches the maximum before the first breaking of magmatic rock, the bed separation completely closes after the breaking. There are no obvious bed separations during the period migration of magmatic rock. Along the direction of the height of roof, the development of bed separation is characterized by bottom-up jump based on the key strata. The analyzed results of “Three zone” height obtained by the discriminate method of overlying strata Three Zones which is based on the key strata theory and the S–R instability theory are in line with the actual facts. When the hard-thick magmatic rock is in the fractured zone, large amounts of gas and water are easy to accumulate in the bed separation space and “O” ring space around the gob. The first breaking of magmatic rock may induce bed separation gas outburst and water inrush. When the hard-thick magmatic rock is in the sagging zone, the long-term stability of magmatic rock will not cause serious disasters. But with the adjacent working face mining, bed separation gas and water often become a safety hazard.  相似文献   

19.
随着煤矿开采强度的不断增大,矿井逐渐向深部转移,冲击地压灾害日益严峻。而深部冲击地压矿井往往存在一层或多层坚硬厚岩层,这些坚硬顶板厚度较大,整体性强,突然断裂时会释放大量弹性能,易引发冲击地压事故,严重制约矿井安全生产。以陕西彬长矿区孟村矿为例,针对矿区内煤层埋藏深、普遍存在多种坚硬厚岩层的特殊情况,提出针对性治理措施:对顶板上方0~80 m范围内厚度超过10 m的坚硬厚岩层进行破断、弱化处理,对煤层上方0~30 m范围的低位岩层采取顶板深孔爆破预裂措施,对煤层上方30~60 m范围内的中位坚硬岩层采取顶板定向长钻孔水力压裂措施,对煤层60 m以上高位坚硬岩层采取地面水平井分段压裂措施;使高、中、低位顶板产生的裂缝在垂向上实现贯穿,将顶板“切割”成相对规则的“块状”结构,使上覆岩层应力由“硬传递”转化为“软传递”;并结合煤层大直径孔卸压、煤层爆破等煤层卸压措施,形成了区域与局部相结合、煤层与岩层全覆盖的“井上下”立体防治模式。工程实践证明:采用“井上下”立体防治模式后,工作面103 J以上微震事件降低88%,周期来压强度降低23%,来压持续时间缩短61%,防冲效果良好。该技术模式的成功...  相似文献   

20.
针对神东矿区煤层埋深浅、上覆基岩薄、厚松散含水层的地质条件,在回采期间,尤其是在第一次老顶断裂后,极易发生溃水溃沙。为了实现安全回采,研究了极具代表性的上湾煤矿12207工作面切眼区域,通过对该区域冒落带和导水裂隙高度,防水、防砂煤岩柱高度的研究,预测了矿井涌水量。依此为依据,采取了水文地质补勘、施工直通泄水孔、井下探放水、地面注浆等工程措施和井下工作面排水系统的建设等措施,实现了安全回采。   相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号