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11.
陶枣煤田周边分布有丰富的裂隙岩溶水资源,且易于开采,为区内城市生活的主要供水水源。长期以来,受煤炭资源开采影响,岩溶地下水受到了不同程度的污染,供水水质难以保证。本文在对裂隙岩溶地下水水质进行污染评价的基础上,根据污染时空分布特征以及地质、构造条件,分析了区内岩溶地下水的污染机理,并提出了可行的防治措施。  相似文献   
12.
基于褐煤直接液化特性与煤性质的关系,从煤岩组分和煤质基本性质出发,结合前人对与褐煤直接液化相关的煤岩组分和煤质指标研究成果,通过采样测试与收集数据,探讨了胜利煤田东二号露天矿6煤层煤岩组分、灰分、挥发分、H/C原子比对其直接液化的影响,提出了褐煤作为直接液化的指标要求范围。结果表明:该煤层活性组分(腐植组和稳定组)含量较高,挥发分含量大于35%、H/C原子大部分大于0. 70、浮煤灰分大部分小于10%,符合液化指标要求,可作为较理想的直接液化原料煤。  相似文献   
13.
对影响煤层气勘探开发潜力的各种因素进行了综合研究,确定了煤层气勘探开发潜力评价的3个二级指标(生气潜力、储层物性和封盖性能)及对应的三级指标。采用模糊数学方法对各级因素指标赋予权重,建立了用于煤层气勘探开发潜力评价的多层次模糊数学评判模型。利用该模型,对青海木里煤田中低煤阶煤层气资源勘探开发潜力进行了评价,认为江仓矿区是木里煤层气勘探开发的最佳试验区。所建立的评价体系可以作为中低煤阶煤层气资源开发潜力评价的参考体系。  相似文献   
14.
淮南煤田地下水类型及其特征   总被引:2,自引:0,他引:2  
周士荣 《安徽地质》2008,18(3):221-225
淮南煤田为全隐蔽煤田,松散层厚度大,主要含煤地层为二叠系。通过大量的勘探资料及生产矿井的开采成果,对影响煤层开采的地下水进行了分类,并对其水文地质特征进行了阐述,为新区的建井与开采提供了参考资料和决策依据。  相似文献   
15.
基于煤层气解吸和煤层试井等大量的实测数据,对黄陇煤田煤层的气含量、渗透率、储层压力和最小主应力等储层参数进行了研究。结果表明:黄陇煤田煤层气含量、渗透率较高;地应力较低;气含量、储层压力、最小主应力与煤层埋深呈正相关性;渗透率与最小主应力呈负相关性;渗透率与煤层埋深的关系不明显;最小主应力对储层压力影响明显。综合分析认为,煤层气含量和渗透率较高的彬长、焦坪矿区是煤层气开采最具有价值的区块。  相似文献   
16.
为了提高冲击地压矿井大直径卸压钻孔的成孔率和施工效率,通过对冲击地压矿井煤岩体应力特征、卸压孔孔壁扰动动力失稳特性及施工特点的分析,探讨了大直径卸压孔快速施工的关键点在于高效排渣、快速成孔提钻。采用具有1.25 m行程轨道、大通孔动力头的ZDY4000LR型钻机,优化了大直径卸压钻孔施工操作流程,形成了水介质螺旋宽翼片双动力排渣高效成孔工艺方法,并在河南义马矿区和陕西彬长矿区进行了现场试验。结果表明:该工艺技术能够安全、高效地施工大直径卸压钻孔,施工效率较大螺旋钻进技术提高了48.9%,成孔率可达到100%。研究成果对类似冲击地压矿区施工煤层卸压孔提供借鉴。  相似文献   
17.
Exploration and exploitation of coal seams is one of the major resources for the energy sector in any country but at the same time water filled voids/water logged areas in the old workings of these seams are very critical problems for the coal mining industry. In such situations, disasters like inundation, landslides, collapsing of the old seams may occur. In this regard, it is necessary to find out the water saturated/water filled voids and zones in the mining areas. Since no established technique is available to find such zones, an experimental study using Electrical Resistivity Imaging (ERI) has been carried out in one of the coal mining areas near Dhanbad, to find out the feasibility of finding the barrier thickness and the water logged area in underground coal mines. The area under study forms part of Jharia coalfield in Dhanbad district, Jharkhand state. The coal bearing rocks of Barakar Formation of Lower Permian age (Gondwana period) occur in the area under a thin cover (10 m to15 m) of soil and or alluvium. Coal bearing Barakar Formations consist mainly of sandstone of varying grain size, intercalation of shale and sandstone, grey and carbonaceous-shale and coal seams. Since the water saturation reduces the resistivity of a formation to a large extent, water filled voids and old coal workings are expected to have significant resistivity contrast with the surrounding host rock. Hence, ERI technique was applied in such an environment as this technique uses high-density data acquisition both laterally and vertically by using multiple number of electrodes. Along with ERI, mise-à-la-masse (also called charged body) technique was also employed at one of the promising sites to find out the connectivity of water logged areas and also detection of these old workings from the surface measurements was analyzed. The interpreted 2D resistivity sections have clearly indicated the water bearing zone(s) along the profile which was well confirmed with the existing water level in the nearby borewells. On the other hand, this technique did not identify the size of the coal pillar and gallery (air filled voids), which might be due to the small size of the voids (i.e. about 2 m × 2 m) below a depth of 15m and more but have indicated altogether as a high resistive zone ranging from 600–1000 Ohm-m.  相似文献   
18.
There were three landforms (i.e. desert, bedrock platform and loess gully) in deep-buried coalfield of northern Ordos Basin. Water inflow of working face in desert area was 1~2 orders of magnitude larger than that in other landform areas. In order to find out the key controlling factors of the directly water filled aquifers on the roof of the coal seam, we carried out research from the aspects of topography, landform and geological sedimentation. The results showed that desert landform provides abundant recharge water for underlying aquifers because of gentle topography, large precipitation infiltration coefficient, thick and water-rich quaternary system. While bedrock platform and loess gully landform were the water sources with weak recharge capacity of underlying aquifers. The sandstone-mudstone interbedding structure formed by continental deposits resulted in the absence of regional stable aquifers in Jurassic and Cretaceous strata on the roof of coal seams. Pumping tests of boreholes showed that all strata belong to weak to medium water-rich aquifers. The groundwater level of Cretaceous aquifer decreased by 20~130 m in three mines. There was a close hydraulic relationship between shallow and deep aquifers. The Mesozoic strata belonged to fluvial deposits. Qilizhen sandstone and Zhenwudong sandstone aquifers were mainly developed on the roof of the coal seam, which were characterized by thick medium-coarse sandstone sections. The geological and sedimentary conditions of direct water-filled aquifer were similar, but the amount of borehole water, cumulative pre-drainage water and water inflow from goaf in desert geomorphic area were much larger than those in bedrock platform and loess gully geomorphic area. The water-rich of the aquifer was mainly controlled by geomorphology, and the water sources of the deep aquifers were meteoric precipitation and Quaternary aquifer. In different mines with similar Quaternary conditions in Mu Us Desert, there were also great differences in the amount of borehole water, cumulative pre-drainage water and water inflow from goafs. The difference was related to the thickness and lithology of the aquifers. It reflected that the geological sedimentary conditions of the coal seam roof were also important factors to control the water-rich of the aquifers. Topography, landform and geological sedimentation were the key factors to control the water-rich of the aquifer directly and the water inflow from the working face.  相似文献   
19.
扬子地台西北缘前陆逆冲带(即龙门山逆冲带)的形成和演化控制着扬子地台内部及其西北缘煤炭资源的聚积和赋存。它可分为根带、中带、锋带三部分。根带无煤聚积,工业煤炭资源赋存在中带,锋带的煤系埋藏过深。前陆逆冲带内的煤田构造变形是适应前陆逆冲挤压应力作用的结果,以发育有冲断叠瓦扇、双冲构造、平行褶皱、斜歪褶皱、飞来峰、逆冲岩席、断夹块等构造样式为特征。前陆逆冲带的形成是特提斯构造域长期演化、沿三条缝合带发生三次碰撞的结果。   相似文献   
20.
发展中的中国煤田地质学   总被引:4,自引:3,他引:4  
中国的煤和煤田地质特征具有鲜明的地域特色和独特的地质问题。煤炭是中国主要的一次能源。本文概要评述了近年来我国煤田地质学科的显著进展,认为未来的发展将取决于,引入新理论、新方法和广泛应用高新技术,强化与其他一些地学分支的交叉和渗透,今后将更突出研究煤的地球化学、支撑洁净煤技术和煤基材料利用技术的地质基础、煤层气,和高产、高效、安全开采煤炭生产的地质保障体系。  相似文献   
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