Impact of Coal Mining on the Moisture Movement in a Vadose Zone in Open-Pit Mine Areas

Author:

Lian Huiqin,Yi HaiyangORCID,Yang Yi,Wu Bin,Wang Rui

Abstract

Long-term dewatering of groundwater is a necessary operation for mining safety in open-pit coal mines, as extensive dewatering might cause ecological problems due to dramatic changes in moisture movement in the soil, especially in ecologically fragile areas. In order to evaluate the impact of the coal mining operation on moisture movement in the vadose zone and vegetation, this paper presents a quantitative methodology and takes the Baorixile open-pit coal mine as a study example. A long-term in situ experiment (from 2004 to 2018), laboratory analysis, and numerical modelling were conducted to analyze the mechanisms and relationship among the dropping groundwater level, the vadose-zone moisture, and the ecological responses in the grassland area. The experiment data and modelling results suggest that groundwater level dropping during open-pit mining operation has limited influence on the vadose zone, exhibiting a variation of capillary water zone within a depth of 3 m while the vadose zone and soil water zone were at least 16 m deep. The critical evaporation depth of ground water is 8 m. The long-term influence radius of groundwater dewatering is about 2.72 km during the Baorixile mining operation, and the groundwater level change mainly influences the lower part of the intermediate vadose zone and the capillary water zone below 16 m, with little influence on the moisture contents in the soil water zone where the roots of shallow vegetation grow. The results from this study provide useful insight for sustainable development of coal mining in ecologically fragile areas.

Funder

Ministry of Science and Technology of the People's Republic of China

National Natural Science Foundation of China

Natural Science Foundation of Hebei Province

Ministry of Education of the People's Republic of China

Department of Education of Hebei Province

Fundamental Research Funds for the Central Universities

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development

Reference69 articles.

1. Groundwater dewatering optimization in the Shengli no. 1 open-pit coalmine, Inner Mongolia, China

2. Analysis of Hydrological Characteristics in Hulunbuir Grassland Area;Wang;Water Resour. Hydropower Northeast. China,2011

3. Research progress on the basic theory of water resources protection in coal mining in Northwest China;Zhang;J. China Coal Soc.,2017

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