Height of overlying strata failure zone under different hydrogeological units

被引:0
作者
Shiliang Liu
Song Dai
Haofang Wang
Wenping Li
Weiguo Li
Haodong Zhang
机构
[1] Shandong University,School of Civil Engineering
[2] China University of Mining and Technology,School of Resources and Geosciences
来源
Environmental Earth Sciences | 2022年 / 81卷
关键词
Jurassic coalfield; Hydrogeological unit; Water flowing fractured zone height (WFFZH); Comprehensive prediction method; Inhibition (promotion) coefficient;
D O I
暂无
中图分类号
学科分类号
摘要
The water flowing fractured zone height (WFFZH) is critical for the safe exploitation of coal resources and environmental protection, especially in arid and semiarid mining areas. Most existing studies focus on the WFFZH in bedrock, without considering the effect of the soil layer. This paper uses in situ data from a Jurassic coalfield the Yu-Shen-Fu mining area in Shaanxi province, China, to investigate the WFFZH for different hydrogeological units. Thirteen hydrogeological units, which were simplified into 4 hydrogeological associations, were used in this study to develop the inhibition coefficient and promotion coefficient of the soil layer and to determine the quantitative relationship between the soil-bedrock ratio and the inhibition (promotion) coefficient. This information was used to develop a comprehensive prediction method for WFFZH under complex hydrogeological structures using ArcGIS. The traditional calculation method for WFFZH only considers the soil layer’s inhibition effect whereas our comprehensive prediction method considers multiple factors. The verification of field investigation indicates that the comprehensive prediction method is more accurate than the traditional WFFZH calculation method.
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  • [11] Zhang DS(2018)On prevention and mechanism of bed separation water inrush for thick coal seams: a case study in China Environ Earth Sci 77 1-333
  • [12] Liu HL(2020)Study on the engineering geological conditions of protected water resources during coal mining action in Yushenfu mine area in the North Shanxxi Province J China Coal Soc 25 449-143
  • [13] Wang HZ(2018)Height of the water-flowing fractured zone of the jurassic coal seam in Northwestern China Mine Water Environ 37 312-215
  • [14] Zhou YZ(2018)Investigation on mining-induced fractured zone height developed in different layers above Jurassic coal seam in western China Arab J Geosci 11 30-38
  • [15] Zhang S(2018)Water inrush risk zoning and water conservation mining technology in the Shennan mining area, Shaanxi, China Arab J Sci Eng 43 321-113
  • [16] Wei Y(2018)Application of Brillouin optical time domain reflectometry to dynamic monitoring of overburden deformation and failure caused by underground mining Int J Rock Mech Min Sci 106 133-317
  • [17] Liang SS(2019)Zoning method for mining-induced environmental engineering geological patterns considering the degree of influence of mining activities on phreatic aquifer J Hydrol 578 124020-749
  • [18] Zhao Q(2020)A new monitoring method for overlying strata failure height in Neogene laterite caused by underground coal mining Eng Fail Anal 117 104796-13
  • [19] Dai S(2020)Mechanical mechanism of overlying strata breaking and development of fractured zone during close-distance coal seam group mining Int J Min Sci Technol 30 207-66
  • [20] Han B(2003)Formation of fractured zones in overburden due to longwall mining Environ Geol 44 28-9503