1、摘 要本此设计包括两个部分:设计部分和加深部分。设计部分为冯家塔现代化集中生产矿井。冯家塔井田位于陕西省府谷县城北北东方向15km处,交通便利。井田走向(东西)长约8.2km,倾向(南北)长约6.5km,井田总面积为49km2。主采煤层为4、8、9-2煤,平均倾角为3 5,煤层平均总厚为3.1m。井田地质条件简单。井田工业储量为364.51Mt,可采储量为244.86Mt,设计年生产能力3.0Mt,矿井服务年限为62.8a。矿井涌水量不大,正常涌水量为140m3/h,最大涌水量为224m3/h。井田内各煤层瓦斯含量低,变化在0.020.18ml/gr之间,属于低瓦斯矿井。矿井设计为一个综采工作
2、面和三个掘进工作面。井田采用三条斜开拓方式,主副井布置在冯家塔场地,回风斜井位于井田中西部。矿井一水平开采4号煤,二水平开采8、9-2煤。通过矿井困难时期计算,风井设计在中西部可以满足二水平通风要求,只需在困难时期加大风机矿井功率,通风方式为中央边界式。主运输采用胶带运输机运煤,辅助运输采用无轨胶轮车。矿井年工作日为330d,工作制度为“四六”制,三班半采煤,半班检修。设计部分共包括7章:(1)矿井地质概况;(2)井田开拓;(3)大巷运输及设备;(4)采区布置及装备;(5)井通风与安全;(6)矿井提升、运输、排水、压缩空气设备选型;(7)环境保护。加深部分是矿井提升设备选型。VIABSTRAC
3、TThe design includes two parts: design part and deepen part.The design part is focused on the production of Fengjiata mine modernization. Fengjiata mine is located in the north of the City of Fugu County of Shaanxi Province, 15km North-East away to the city. The transportation there is very convenie
4、nt. The length of the minefield from orebody direction (E-W) is about 8.2km, and from orbody tendency (N-S) is is about 6.5km. The total area of the minefield is about 49km2, and the main coal seam was 4, 8, 9-2, the average angle of the orebody is 3 5, the average thickness of coal seam is 3.1m. Ge
5、ological conditions of mining field is relatively simple.The mining industrial reserves of the Fengjiata is 364.51Mt, and the recoverable reserves is about 244.86Mt, the design annual production capacity is 3.0Mt, the service life of mine is 62.8a. Mining inflow is not so serious, and normal dischar
6、ge is about 140m3/h, the maximum inflow is 224m3/h. The coal seam gas content in the minefield is changed between 0.02 0.18ml/gr, which belongs to the low gas mine. The design contend includes one fully mechanized coal face and three heading faces.The minefield adopts three inclined shaft developmen
7、t ways, the main auxiliary shaft arranged in Fengjiata mine site, and return air slope located in the Midwest of the minefield. The first level mainly explores No. 4 seam, and the second level maily explores 8, 9-2 coal mining seams. Through the difficult period calculation, shaft design can meet th
8、e two level ventilation requirements in the Midwest, only in the difficult period of wind power machine with mine, ventilation for the boundary type. The main transport using belt conveyor of coal, the use of auxiliary transport trackless rubber tyred vehicle.Mine site works for 330 days one year, t
9、he work system is four six(i.e., three and harf teams work for the mine exploring, and another harf team works for maintenance.Design part including 7 chapters: 1. Mine geology survey; 2. Field development; 3. DaHang transportation and equipment; 4. The arrangement and the mining equipment; 5. The w
10、ell ventilated and security; 6. Mine ascension, transportation, water drainage, compressed air equipment selection; 7. To the protection of the environment.Deepen part is mine ascension equipment selection.目 录摘 要IABSTRACTII第1章 矿井田地质概况11.1 矿(井)田位置及交通11.1.1 交通位置11.1.2 地形地貌21.1.3 气象及水文情况21.1.4 矿区概况21.2
11、 矿(井)田地层及地质构造31.2.1 地层31.2.2 构造61.3 矿体赋存特征及开采技术条件71.3.1 煤层及煤质71.3.2 瓦斯赋存状况、煤尘爆炸危险性、煤的自燃性及地温情况81.3.3 水文地质91.4 矿(井)田勘探类型及勘探101.4.1 勘探程度101.4.2 资源储量评价101.4.3 开采技术条件评价111.4.4 勘探程度评价11第2章 井田开拓122.1 矿井生产能力及服务年限122.1.1 矿井工作制度122.1.2 矿井生产能力122.1.3 矿井服务年限132.1.4 矿井储量设计生产能力和服务年限的关系132.1.5 矿井设计生产能力的确定132.2 矿井田
12、境界及储量132.2.1 井田境界132.2.2 储量142.3 井田开拓182.3.1 工业场地及井口位置选择182.3.2 井筒形式的确定182.3.3 井筒数目的确定192.3.4 井田内划分及开采顺序192.3.5 开采水平的划分及水平标高192.3.6 阶段运输大巷及回风大巷的布置192.4 井筒202.4.1 井筒断面设计202.4.2 井筒参数确定222.5 方案比较、确定开拓方案222.5.1 方案的提出222.5.2 方案比较24第3章 大巷运输及设备263.1 大巷运输方式的选择263.1.1 大巷煤炭运输方式选择263.1.2 大巷辅助运输方式选择263.2 运输设备选型
13、263.2.1 电机车选型263.2.2支架及大件设备运输车辆选择283.2.3 物料及普通设备运输车辆选择283.2.4 矸石排卸车数量计算293.3 带式输送机选型29第4章 采区布置及装备314.1 采区布置314.1.1 矿井设计一水平盘区位置选择的规定314.1.2 采区设计生产能力314.1.3 采区个数314.2 采区的划分314.2.1 盘区划分方案314.2.2 盘区方案比较324.2.3 盘区参数的确定334.3 采煤方法344.3.1 采煤方法的选择344.3.2 工作面回采工艺354.3.3 工作面参数确定364.4 采区巷道布置374.5 巷道掘进与掘进机械化394.
14、6 工作面设备确定394.7 劳动组织444.8 经济技术指标比较45第5章 矿井通风与安全485.1 拟定矿井通风系统485.2 矿井通风容易与困难时期的通风阻力计算485.3 矿井风量计算495.3.1 工作面风量计算495.3.2 矿井通风容易和困难时期的通风阻力计算515.4 计算矿井总风量575.5 矿井通风设备的选型585.6 矿井通风等积孔的计算635.7 概算矿井通风费用635.8 预防瓦斯、火、矿尘、水和顶板事故的安全技术措施645.8.1 预防瓦斯和煤尘爆炸的措施645.8.2 预防井下火灾的措施655.8.3 防水措施685.8.4 预防顶板的措施685.9 矿井井下安全
15、避险“六大系统”69第6章 矿井运输、排水、供电设备选型706.1 主运输设备选型706.1.1 带式输送机选型706.1.2 刮板输送机选型706.2 矿井排水设备选型716.3 压缩空气设备选型726.3.1 设计依据726.3.2 选型计算726.3.3 压缩设备确定73第7章 环境保护747.1 环境现状及地面保护物概述747.2 主要污染源及污染物747.2.1 大气烟尘污染747.2.2 固体废物747.2.3 废水757.2.4 其他污染物757.3 资源开发对生态环境影响与评价757.3.1 开采沉陷损害影响预测分析757.3.2 开采沉陷对土地损害的预计评价767.3.3 开采对建筑物的损害767.3.4 开采对水资源的破坏影响777.3.5 开采对矿区大气环境的影响777.3.6 开采可能引起的地质灾害的预测777.4 资源开采环境损害的控制与生态重建787.4.1 控制开采