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Shiliang LIU
UPDATE: 2020-05-21 15:29:40     CLICK: []

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Shiliang Liu

PhD, Associate Professor,Master Tutor

Department of Water conservancy and Hydropower Engineering

Email:lslsdu@sdu.edu.cn

Research Interests:

1. Protection and Utilization of Groundwater Resources in Ecologically Fragile Mining Areas in Northwest China

2. Mechanism and risk evaluation of water inrush from underground engineering

3. Tunnel disease evaluation and health diagnosis.

Selected Publications:

[1] Liu S.L., Li W.P., Qiao W., et al. Zoning for mining-induced environmental engineering geological patterns: A case study in the Yushenfu mining area, northern Shaanxi, China. Journal of Hydrology, 2019, 578, 124020.

[2] Liu S.L., Li W.P. Indicators sensitivity analysis for environmental engineering geological patterns caused by underground coal mining with integrating variable weight theory and improved matter-element extension model. Science of the Total Environment, 2019, 686, 606−618.

[3] Liu S.L., Li W.P. Zoning and management for phreatic water resources conservation impacted by underground coal mining: A case study in the arid and semiarid area. Journal of Cleaner Production, 2019, 224, 677−685.

[4] Liu S.L., W.P., Qiao W., et al. Effect of natural conditions and mining activities on vegetation variations in arid-semiarid mining areas. Ecological Indicator, 2019, 103, 331−345.

[5] Liu S.L., Li W.P. Fuzzy comprehensive risk evaluation of roof water inrush based on catastrophe theory in the Jurassic coalfield of northwest China. Journal of Intelligent & Fuzzy Systems, 2019, 1–10.

[6] Liu S.L., Li W.P., Wang Q.Q. Height of the Water-Flowing Fractured Zone of the Jurassic Coal Seam in Northwestern China. Mine Water and the Environment, 2018, 37(2), 312–321.

[7] Liu S.L., Li W.P., Wang Q.Q. Zoning method for environmental engineering geological patterns in underground coal mining areas. Science of the Total Environment, 2018, 634, 1064–1076.

[8] Liu S.L., Liu W.T., Shen J.J. Stress Evolution law and failure characteristics of mining floor rock mass above confined water. KSCE Journal of Civil Engineering, 2017, 21(7), 2665–2672.

[9] Liu S.L., Li W.P., Wang Q.Q., et al. Numerical simulation on crack propagation of rock mass with a single crack under seepage water pressure. Advances in Mechanical Engineering, 2017, 9(10), 1–12.

[10] Liu S.L., Liu W.T., Yin D.W. Numerical simulation of the lagging water inrush process from insidious fault in coal seam floor. Geotechnical and Geological Engineering, 2017, 35(3), 1013–1021.


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