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| Analysis of water inflow source in goaf damage area of shallow depth small coal kiln |
| Zhao Peifu1, Wu Junfeng2 |
| 1. Coal Poduction Management Department, Huozhou Coal Electricity Group, Huozhou 031400, China; 2. Tchnology Istitute, Huozhou Coal Electricity Group, Huozhou 031400, China |
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Abstract Taking the increase of water inflow in the pipeline well of Xingshengyuan Coal Industry during the rainy season as an example, the water inflow supply channel of the mine was analyzed through continuous monitoring and estimation of the amount of drainage water, visiting and investigating the sealing of small coal kiln and river infiltration on the surface, collecting surface rainfall, river water, water source well and long-term water inflow point water samples for water quality test, combined with the mining data of adjacent mines. The research showed that the main water source for the increase of pipeline well water inflow in Xingshengyuan Coal Industry was the flood of Jian river during the rainy season. And a large amount of river water overflowed the exposed wellhead or bedrock gravel layer cracks to recharge the goaf damage area. The secondary water source was atmospheric precipitation which penetrated into the goaf damage area through the water-conducting fracture in the shallow buried area of No.1 coal seam near the mine, and then supplied the pipeline well water through lateral seepage.The investigation and analysis method of water inflow source had certain reference significance for the analysis of water inflow source in shallow depth mine goaf damage area affected by surface rivers under similar conditions.
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| 1 ] 张国龙,武俊峰. 掘进工作面疏放小煤窑采空积水储量分析[ J ]. 山东煤炭科技,2021,39( 8 ):160 - 162.
[ 2 ] 张颖鑫. 北辛窑煤矿南翼大巷突水机理研究[ J ]. 同煤科技,2019( 2 ):19 - 20.
[ 3 ] 侯德芳. 新元矿井水文地质特征及充水因素分析[ J ]. 煤炭与化工,2019,42( 11 ):60 - 63,71.
[ 4 ] 刘东旭,郭建锋. 采空区积水对同煤层邻近工作面开采的影响[ J ]. 河北煤炭,2010( 10 ):21 - 24.
[ 5 ] 杨 超. 复杂地质条件下防治老窑水害的综合分析方法[ J ].科学技术创新,2018( 8 ):33 - 34. |
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