Quantifying the Impact of Coal Mining on Underground Water in Arid and Semi-Arid Area: A Case Study of the New Shanghai No. 1 Coal Mine, Ordos Basin, China

被引:5
作者
Lyv, Yuguang [1 ,2 ]
Qiao, Wei [1 ]
Chen, Weichi [3 ]
Cheng, Xianggang [1 ]
Liu, Mengnan [1 ]
Liu, Yingjie [1 ]
机构
[1] China Univ Min & Technol, Inst Mine Water Hazards Prevent & Controlling Tech, Sch Resources & Geosci, Xuzhou 221116, Peoples R China
[2] Shandong Energy Xinwen Min Inner Mongolia Energy G, Ordos 750336, Peoples R China
[3] Jiangsu Vocat Inst Architectural Technol, Sch Transportat Engn, Xuzhou 221116, Peoples R China
关键词
arid and semiarid area; quantitative assessment; groundwater; floor water inrush hazard; northwest China; RESOURCES MANAGEMENT; MODEL; VEGETATION;
D O I
10.3390/w15091765
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The new Shanghai No. 1 Coal Mine is located in arid and semiarid area of northwest China, which is characterized by scarce rainfall, intense evaporation, and limited water resources. High-intensity coal mining has caused severe damage to groundwater resources. The Baotashan sandstone aquifer of the Jurassic system has abundant water resources, and they are stored in the floor strata of mining coal seams. This poses the risk of high-pressure build-up and water inrush hazards during the mining of coal. To avoid these, the Baotashan sandstone aquifer needs to be drained and depressurized, which can result in a huge waste of water resources. Thus, taking the New Shanghai No. 1 Coal Mine as the basis for the case study, the impact of coal mining on the underground water resources was quantified. Large-scale water release tests were performed under the shaft to determine the hydrogeological properties of the Baotashan sandstone aquifer and a three-dimensional numerical model of the groundwater system was established. The dynamic phenomenon of water drainage was simulated and the drained water discharge was predicted under the condition of safe mining.
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页数:17
相关论文
共 39 条
[1]   Modelling of Longwall Mining-Induced Strata Permeability Change [J].
Adhikary, D. P. ;
Guo, H. .
ROCK MECHANICS AND ROCK ENGINEERING, 2015, 48 (01) :345-359
[2]   Improving water resources management using different irrigation strategies and water qualities: Field and modelling study [J].
Afzal, M. ;
Battilani, A. ;
Solimando, D. ;
Ragab, R. .
AGRICULTURAL WATER MANAGEMENT, 2016, 176 :40-54
[3]  
Booth CJ, 2002, GEOL SOC SPEC PUBL, V198, P17, DOI 10.1144/GSL.SP.2002.198.01.02
[4]   Positive and negative impacts of longwall mine subsidence on a sandstone aquifer [J].
Booth, CJ ;
Spande, ED ;
Pattee, CT ;
Miller, JD ;
Bertsch, LP .
ENVIRONMENTAL GEOLOGY, 1998, 34 (2-3) :223-233
[5]   Macroinvertebrate response to land cover, habitat, and water chemistry in a mining-impacted river ecosystem: A GIS watershed analysis [J].
Bruns, DA .
AQUATIC SCIENCES, 2005, 67 (04) :403-423
[6]   Integrated approach to assess the environmental impact of mining activities: estimation of the spatial distribution of soil contamination (Panasqueira mining area, Central Portugal) [J].
Candeias, Carla ;
Avila, Paula F. ;
da Silva, Eduardo Ferreira ;
Teixeira, Joao Paulo .
ENVIRONMENTAL MONITORING AND ASSESSMENT, 2015, 187 (03)
[7]   Impact of mining-induced bed separation spaces on a cretaceous aquifer: a case study of the Yingpanhao coal mine, Ordos Basin, China [J].
Chen, Weichi ;
Li, Wenping ;
He, Jianghui ;
Qiao, Wei ;
Wang, Qiqing ;
Yang, Yuru .
HYDROGEOLOGY JOURNAL, 2022, 30 (02) :691-706
[8]  
Chen WC, 2020, MINE WATER ENVIRON, V39, P42, DOI 10.1007/s10230-020-00653-2
[9]   Impact of Coal Resource Development on Streamflow Characteristics: Influence of Climate Variability and Climate Change [J].
Chiew, Francis H. S. ;
Fu, Guobin ;
Post, David A. ;
Zhang, Yongqiang ;
Wang, Biao ;
Viney, Neil R. .
WATER, 2018, 10 (09)
[10]  
China National Administration of Coal Geology, 1996, COAL ACC COAL RES EV