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张小楼煤矿1.5Mta新井设计.docx

1、摘 要本设计包括三个部分:一般部分、专题部分和翻译部分。一般部分针对张小楼矿井进行了井型为1.5Mt/a的新井设计。张小楼矿位于徐州市西北铜山县柳新镇和刘集镇境内。整个井田东西长约4.80km、南北宽约3.53km,井田面积16.54km2。开采深度为-280m-1250m。主采煤层为7煤和9煤,7煤煤厚6m,9煤煤厚3m,两煤层相距10m左右,为近距离煤层,煤层倾角变化较大,浅部平均20,深部平均5。矿井正常涌水量为76m3/h,最大涌水量为160m3/h;矿井相对瓦斯涌出量为3.35m3/t,属低瓦斯矿井。井田工业储量为205.39Mt,可采储量137Mt,矿井设计井型为1.5Mt/a,矿

2、井服务年限为65.24a。根据井田地质条件,设计采用立井两水平开拓方式,都为上下山准备方式,一水平位于-600m,上山垂高320m,下山垂高250m,二水平位于-1150m,上山垂高300m,下山垂高100m,。井田共分为7个采区和2个带区,轨道大巷和胶带机大巷岩石大巷,布置在9煤层底板岩层中。考虑到本矿井为低瓦斯矿井,矿井通风方式采用中央并列式通风。大巷采用胶带输送机运煤,辅助运输采用架线式电机车牵引固定箱式矿车。主井采用箕斗提煤,副井采用罐笼运料和升降人员。针对东一采区采用了采区联合准备方式,共划分3个区段,并进行了运煤、通风、运料、排矸、供电系统设计。针对7101工作面进行了采煤工艺设计

3、。该工作面煤层平均厚度为6.0m,平均倾角20,直接顶为泥岩,老顶为细砂岩。工作面采用长壁综采放顶煤采煤法。采用双滚筒采煤机割煤,往返一次割两刀。采用“四六制”工作制度,截深0.6m,每天六个循环,循环进尺3.6m,月推进度108m。专题部分题目为张小楼矿微震规律与冲击矿压关系研究,以张小楼矿95206工作面为背景,进行了详实的微震观测数据收集与处理,分析得到张小楼矿微震分布规律与冲击矿压关系,为张小楼矿进行防止冲击矿压提供了有力的技术支持。翻译部分题目为Mine gas drainage and outburst control in Australian underground coal

4、mines,主要介绍了澳大利亚预防煤与瓦斯突出技术。关键词:张小楼矿;立井两水平开拓;采区布置;综采放顶煤;中央并列式通风;微震检测;冲击矿压ABSTRACTThis design includes three parts: the general part, special subject part and translation part.The general design is about a 1.50 Mt/a new underground mine design of zhang xiao lou coal mine. Zhang xiao lou coal mine is lo

5、cated in xuzhou, Jiangsu province. Its about 4.8 km on the strike and 3.53km on the dip, with the 16.54 km2 total horizontal area. The minable coal seam is 7# and 9# with an average thickness of 6.0 m and 3m .The Two layers of coal are 10 m apart.They are very close. The Two layers of coal has a lar

6、ger change dip , shallow average of 20 , deep average of 5. The normal mine inflow is 76 m3/h and the maximum mine inflow is 160 m3/h. The mine gas emission rate is 3.35 m3/t which can be recognized as low gaseous mine. The proved reserves of this coal mine are 205.39 Mt and the minable reserves are

7、 137 Mt, with a mine life of 65.24 a.Based on the geological condition of the mine, this design uses a duel-vertical shaft two-level development method, and full strip preparation ,which divided into seven districts and two strips, The first level is located -600 m ,and rise horizon interval is 320

8、m , and dip horizon interval is 250 The second level is located -1150 m ,and rise horizon interval is 300 m , and dip horizon interval is 100 m. Track roadway, belt conveyor roadway are all rock roadways, arranged in the floor rock of 9# coal seam. Taking into account of the low gaseous emission, mi

9、ne ventilation method use centralized parallel ventilation.Main roadway makes use of belt conveyor to transport coal resource, and battery locomotive to be assistant transport. The main shaft uses skips to lift coal with a balance hammer and the auxiliary shaft uses cage to lift material and personn

10、el transportation.The design applies strip preparation against the first districts of East One which divided into 3 stirps totally, and conducted coal conveyance, ventilation, gangue conveyance and electricity designing.The design conducted coal mining technology design against the 7101 face. The co

11、al seam average thickness of this working face is 6.0 m and the average dip is 20, the immediate roof is mud stone and the main roof is sand stone. The working face applies fully mechanized longwall mining with sublevel caving method, and uses double drum shearer cutting coal which cuts twice each w

12、orking cycle. Four-Six working system has been used in this design and the depth-web is 0.6 m with six working cycles per day, and the advance of a working cycle is 3.6 m and the advance is 108 m per month.The monographic study entitled The relation between rockburst and the law of Microseismic in z

13、hangxiaolou coal mine, the study took 95206 workface as an example, conducted a detailed pressure observation data collection and processing, gave the deformation and convergence law of soft rock roadway, which had significant guidance for practical mine production. The title of the translated acade

14、mic paper is Mine gas drainage and outburst control in Australian underground coal mines ,Used in Australia.Keywords:Zhangxiaolou coal mine; duel-vertical shaft two-level development method; district mode; sublevel caving method; centralized parallel ventilation; Microseismic prosecution techniques;

15、 rockburst目 录普通部分1 矿区概述及井田地质特征11.1 矿区概述11.1.1 矿区地理位置11.1.2 井田范围11.1.3 矿区经济状况及矿区电力供应21.1.4 矿区气候条件21.1.5 矿区水文情况21.1.6 地震31.2 井田地质特征31.2.1 井田的地层总述31.2.2 井田地层31.2.3 井田地质构造71.2.4 区域水文地质71.3 煤层特征91.3.1 煤层赋存情况91.3.2 煤层的围岩性质91.3.3 煤的特征101.3.4 瓦斯突出性121.3.5 煤层及煤层的自燃121.3.6 地温122 井田境界和储量132.1 井田境界132.2 矿井地质储量132.2.1 矿井地质资源量142.2.2 矿井工业储量152.3 矿井可采储量162.3.1 井田边界保护煤柱162.3.2 断层保护煤柱162.3.3 采区及盘区边界保护煤柱162.3.4 井筒保护煤柱162.3.5 大巷保护煤柱162.3.6 工业广场保护煤柱172.3.7 矿井可采储量183 矿井工作制度、设计生产能力及服务年限203.1 矿井工作制度203.1.1 矿井设计生产能力203.1.2 井型校核204 井田开拓224.1 井田开拓的基本问题224.2 井筒形式、位置、数目的确定224.2.1 井筒的形式224.2.2 井筒位置的确定234.2.3 井筒数目244.

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