Works matching DE "LONGWALL mining"
Results: 2383
Igneous Rock Occurrence Prediction Based on Seismic Information Inversion and Its Influence Analysis During Coal Mining: A Case Study in Huaibei Coalfield.
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- Applied Sciences (2076-3417), 2025, v. 15, n. 4, p. 2110, doi. 10.3390/app15042110
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Research on Image Segmentation and Defogging Technique of Coal Gangue Under the Influence of Dust Gradient.
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- Applied Sciences (2076-3417), 2025, v. 15, n. 4, p. 1947, doi. 10.3390/app15041947
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Study on the Law of Mine Pressure Manifestation in Three-Soft Coal Seam Isolated Working Face.
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- Applied Sciences (2076-3417), 2025, v. 15, n. 4, p. 1943, doi. 10.3390/app15041943
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非均布载荷条件下端帮开采支撑煤柱参数设计方法.
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- Coal Science & Technology (0253-2336), 2024, v. 52, n. 12, p. 23, doi. 10.12438/cst.2023-1569
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Deformation properties of rock strata based on angular displacement and its hydrogeological significance.
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- Scientific Reports, 2025, v. 15, n. 1, p. 1, doi. 10.1038/s41598-025-91295-3
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An Improved Water Yield Evaluation Method Based on Partition Variable-Weight Theory.
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- Water (20734441), 2025, v. 17, n. 4, p. 486, doi. 10.3390/w17040486
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Spatial Distribution of Strain Energy Changes Due to Mining-induced Fault Coseismic Slip: Insights from a Rockburst at the Yuejin Coal Mine, China.
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- Rock Mechanics & Rock Engineering, 2025, v. 58, n. 2, p. 1693, doi. 10.1007/s00603-024-04232-7
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An information processing method of software and hardware coupling for VR monitoring of hydraulic support groups.
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- Multimedia Tools & Applications, 2023, v. 82, n. 12, p. 19067, doi. 10.1007/s11042-022-14128-9
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Water Richness Evaluation of Coal Roof Aquifers Based on the Game Theory Combination Weighting Method and the TOPSIS Model.
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- Mine Water & the Environment, 2024, v. 43, n. 4, p. 691, doi. 10.1007/s10230-024-01018-9
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The Two Zones of Floor Failure and its Control via a 'Dual Key Layer' Approach.
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- Mine Water & the Environment, 2024, v. 43, n. 1, p. 117, doi. 10.1007/s10230-024-00974-6
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Refinement Study on the Water-Inrush Risk of Close-Distance Thin Coal Seam Mining with Pressure in the Lower Coal Seam.
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- Mine Water & the Environment, 2023, v. 42, n. 4, p. 670, doi. 10.1007/s10230-023-00965-z
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Post-mining of Chelyabinsk Coal Basin (Russia): The Effects of Mine Flooding.
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- Mine Water & the Environment, 2023, v. 42, n. 3, p. 472, doi. 10.1007/s10230-023-00947-1
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Hydro-Mechanically Coupled Numerical Modelling of Protective Water Barrier Pillars in Underground Coal Mines in India.
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- Mine Water & the Environment, 2023, v. 42, n. 3, p. 418, doi. 10.1007/s10230-023-00946-2
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A Sedimentary Facies-Based Method to Control Water Hazards in the Roof of Deep Jurassic Coals.
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- Mine Water & the Environment, 2023, v. 42, n. 2, p. 240, doi. 10.1007/s10230-023-00930-w
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Evaluation of Water Inrush Vulnerability and Feasibility Analysis of Mining Under Rivers: A Case Study Involving the Jinjie Coal Mine in China.
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- Mine Water & the Environment, 2023, v. 42, n. 2, p. 312, doi. 10.1007/s10230-023-00939-1
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Predicting the Height of the Water-Conducting Fractured Zone in Fully Mechanized Top Coal Caving Longwall Mining of Very Thick Jurassic Coal Seams in Western China Based on the NNBR Model.
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- Mine Water & the Environment, 2023, v. 42, n. 1, p. 121, doi. 10.1007/s10230-023-00918-6
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Application of Brillouin Optical Time Domain Reflection Technology for Monitoring Deformation and Failure of the Coal Seam Floor Rock Mass in Deep Underground Mines.
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- Mine Water & the Environment, 2022, v. 41, n. 4, p. 1082, doi. 10.1007/s10230-022-00906-2
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Water Inrush Modes Through a Thick Aquifuge Floor in a Deep Coal Mine and Appropriate Control Technology: A Case Study from Hebei, China.
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- Mine Water & the Environment, 2022, v. 41, n. 4, p. 954, doi. 10.1007/s10230-022-00891-6
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Dynamic Characteristics of Water Inflow from a Coal Mine's Roof Aquifer.
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- Mine Water & the Environment, 2022, v. 41, n. 3, p. 764, doi. 10.1007/s10230-022-00873-8
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Groundwater Geochemical Variation and Controls in Coal Seams and Overlying Strata in the Shennan Mining Area, Shaanxi, China.
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- Mine Water & the Environment, 2022, v. 41, n. 3, p. 614, doi. 10.1007/s10230-022-00867-6
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An Analog Model Study on Water–Sand Mixture Inrush Mechanisms During the Mining of Shallow Coal Seams.
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- Mine Water & the Environment, 2022, v. 41, n. 2, p. 428, doi. 10.1007/s10230-022-00870-x
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Prediction of Water Inrush from Coal Seam Floors Based on the Effective Barrier Thickness.
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- Mine Water & the Environment, 2022, v. 41, n. 1, p. 168, doi. 10.1007/s10230-022-00846-x
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Assessment and Grouting of Water Inrush Induced by Shaft-Freezing Holes in the Yingpanhao Coal Mine, Inner Mongolia, China.
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- Mine Water & the Environment, 2022, v. 41, n. 1, p. 16, doi. 10.1007/s10230-021-00801-2
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Assessing Water and Sand Inrushes Hazard Reductions due to Backfill Mining by Combining GIS and Entropy Methods.
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- Mine Water & the Environment, 2021, v. 40, n. 4, p. 956, doi. 10.1007/s10230-021-00829-4
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CFD-DEM Coupled Simulation of Broken Rock Mass Movement During Water Seepage in an Underground Goaf Reservoir.
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- Mine Water & the Environment, 2021, v. 40, n. 4, p. 1048, doi. 10.1007/s10230-021-00826-7
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A Fuzzy Analytical Process to Assess the Risk of Disaster when Backfill Mining Under Aquifers and Buildings.
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- Mine Water & the Environment, 2021, v. 40, n. 4, p. 891, doi. 10.1007/s10230-021-00822-x
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Control of Water-Flowing Fracture Development with Solid Backfill Mining: Designing a Backfill Body Compression Ratio for Water Resources Protection.
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- Mine Water & the Environment, 2021, v. 40, n. 4, p. 877, doi. 10.1007/s10230-021-00821-y
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Professor Raghu Nath Singh.
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- Mine Water & the Environment, 2021, v. 40, n. 4, p. 1076, doi. 10.1007/s10230-021-00816-9
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China's Relationship with IMWA.
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- Mine Water & the Environment, 2021, v. 40, n. 4, p. 811, doi. 10.1007/s10230-021-00815-w
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Key Aquiclude Strata Reconstruction and Fluid–Solid Coupled Deformation Mechanism Study for Backfill Coal Mining.
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- Mine Water & the Environment, 2021, v. 40, n. 3, p. 793, doi. 10.1007/s10230-021-00786-y
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The Water Resisting Properties of the Top Portion of the Ordovician Limestone Aquifer in the North China Coalfield.
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- Mine Water & the Environment, 2021, v. 40, n. 3, p. 690, doi. 10.1007/s10230-021-00783-1
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Prediction and Prevention of Water Inrush Hazards from Bed Separation Space.
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- Mine Water & the Environment, 2021, v. 40, n. 3, p. 657, doi. 10.1007/s10230-020-00748-w
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Theoretical and Numerical Investigations of the Failure Characteristics of a Faulted Coal Mine Floor Above a Confined Aquifer.
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- Mine Water & the Environment, 2021, v. 40, n. 2, p. 456, doi. 10.1007/s10230-021-00780-4
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Micro-fracture Precursors of Water Flow Channels Induced by Coal Mining: A Case Study.
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- Mine Water & the Environment, 2021, v. 40, n. 2, p. 398, doi. 10.1007/s10230-021-00772-4
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Mechanism and Control of Water Inrush from Separated Roof Layers in the Jurassic Coalfields.
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- Mine Water & the Environment, 2021, v. 40, n. 2, p. 357, doi. 10.1007/s10230-021-00755-5
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Mechanism of Water Inrush of a Deep Mining Floor Based on Coupled Mining Pressure and Confined Pressure.
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- Mine Water & the Environment, 2021, v. 40, n. 2, p. 366, doi. 10.1007/s10230-020-00743-1
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A Model to Estimate the Height of the Water-conducting Fracture Zone for Longwall Panels in Western China.
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- Mine Water & the Environment, 2020, v. 39, n. 4, p. 823, doi. 10.1007/s10230-020-00726-2
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Water–Sediment Two-Phase Flow Inrush Hazard in Rock Fractures of Overburden Strata During Coal Mining.
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- Mine Water & the Environment, 2020, v. 39, n. 2, p. 308, doi. 10.1007/s10230-020-00687-6
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Analysis of Spatial Differences in Permeability Based on Sedimentary and Structural Features of the Sandstone Aquifer Overlying Coal Seams in Western China.
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- Mine Water & the Environment, 2020, v. 39, n. 2, p. 229, doi. 10.1007/s10230-020-00682-x
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Drainage of the 12th Mining Field in the Handlová Mine (Slovakia).
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- Mine Water & the Environment, 2020, v. 39, n. 2, p. 416, doi. 10.1007/s10230-020-00672-z
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Impacts of Aquitard Properties on an Overlying Unconsolidated Aquifer in a Mining Area of the Loess Plateau: Case Study of the Changcun Colliery, Shanxi.
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- Mine Water & the Environment, 2020, v. 39, n. 1, p. 121, doi. 10.1007/s10230-019-00649-7
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Management and Utilization of High-Pressure Floor-Confined Water in Deep Coal Mines.
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- Mine Water & the Environment, 2019, v. 38, n. 4, p. 780, doi. 10.1007/s10230-019-00639-9
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Method to Predict the Height of the Water Conducting Fractured Zone Based on Bearing Structures in the Overlying Strata.
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- Mine Water & the Environment, 2019, v. 38, n. 4, p. 767, doi. 10.1007/s10230-019-00638-w
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Eco-exergy Evaluation of New Wetlands in the Yanzhou Coalfield Subsidence Areas Using Structural-Dynamic Modelling.
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- Mine Water & the Environment, 2019, v. 38, n. 4, p. 746, doi. 10.1007/s10230-019-00628-y
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Interpretations of Mine Water Pump-Out Data and Revisions to Caving and Fracturing Models for Longwalls.
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- Mine Water & the Environment, 2019, v. 38, n. 3, p. 676, doi. 10.1007/s10230-019-00627-z
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Feasibility of Modifying Coal Pillars to Prevent Sand Flow Under a Thick Loose Layer of Sediment and Thin Bedrock.
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- Mine Water & the Environment, 2019, v. 38, n. 4, p. 817, doi. 10.1007/s10230-019-00622-4
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Use of Time Series Analysis to Evaluate the Impacts of Underground Mining on the Hydraulic Properties of Groundwater of Dysart Woods, Ohio.
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- Mine Water & the Environment, 2019, v. 38, n. 3, p. 566, doi. 10.1007/s10230-019-00619-z
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Investigations into Mining-Induced Stress–Fracture–Seepage Field Coupling in a Complex Hydrogeology Environment: A Case Study in the Bulianta Colliery.
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- Mine Water & the Environment, 2019, v. 38, n. 3, p. 632, doi. 10.1007/s10230-019-00609-1
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The Mining-Induced Seepage Effect and Reconstruction of Key Aquiclude Strata During Backfill Mining.
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- Mine Water & the Environment, 2019, v. 38, n. 3, p. 590, doi. 10.1007/s10230-019-00614-4
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Water Conservation when Mining Multiple, Thick, Closely-Spaced Coal Seams: A Case Study of Mining Under Weishan Lake.
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- Mine Water & the Environment, 2019, v. 38, n. 3, p. 643, doi. 10.1007/s10230-019-00610-8
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