Subject is "Region > Poland > Upper Silesia"

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Article

Gibowicz, Slawomir (1998) Partial Stress Drop and Frictional Overshoot Mechanism of Seismic Events Induced by Mining. Pure and Applied Geophysics, 153 (1). pp. 5-20. DOI: https://doi.org/10.1007/s000240050182

Ilieva, Maya and Polanin, Piotr and Borkowski, Andrzej and Gruchlik, Piotr and Smolak, Kamil and Kowalski, Andrzej and Rohm, Witold (2019) Mining Deformation Life Cycle in the Light of InSAR and Deformation Models. Remote Sensing, 11 (7). p. 745. DOI: https://doi.org/10.3390/rs11070745

Kijko, Andrzej and Drzezla, Bernard and Tadeusz, Stankiewicz (1987) BIMODAL character of the distribution of extreme seismic events in Polish mines. Acta Geophysica Polonica, XXXV (2). pp. 157-166.

Kotyrba, Andrzej and Kortas, Lukasz (2020) Co-seismic signals of mining tremors in continuous recordings of gravity by gPhoneX tidal gravimeters. International Journal of Rock Mechanics and Mining Sciences, 129. p. 104288. DOI: https://doi.org/10.1016/j.ijrmms.2020.104288

Kozlowska, Maria and Orlecka-Sikora, Beata (2016) Assessment of Quantitative Aftershock Productivity Potential in Mining-Induced Seismicity. Pure and Applied Geophysics. DOI: https://doi.org/10.1007/s00024-016-1432-7

Kozlowska, Maria and Orlecka-Sikora, Beata and Rudzinski, Lukasz and Cielesta, Szymon and Mutke, Grzegorz (2016) Atypical evolution of seismicity patterns resulting from the coupled natural, human-induced and coseismic stresses in a longwall coal mining environment. International Journal of Rock Mechanics and Mining Sciences, 86. pp. 5-15. DOI: https://doi.org/10.1016/j.ijrmms.2016.03.024

Kurzeja, Joanna and Kornowski, Jerzy (2013) The basic assumptions of the quantitative version of the Comprehensive Method of Rockburst Hazard Evaluation. Mineral Resources Management, 29 (2). pp. 193-204.

Kuzniar, Krystyna and Stec, Krystyna and Tatara, Tadeusz (2018) Comparison of approximate assessments of the harmfulness of mining shocks using ground and building foundation vibrations. Journal of Measurements in Engineering, 6 (4). pp. 218-225. DOI: https://doi.org/10.21595/jme.2018.20416

Lasocki, Stanislaw and Idziak, Adam (1998) Dominant Directions of Epicenter Distribution of Regional Mining-induced Seismicity Series in Upper Silesian Coal Basin in Poland. Pure and Applied Geophysics, 153 (1). pp. 21-40. DOI: https://doi.org/10.1007/s000240050183

Leptokaropoulos, Konstantinos Michail and Staszek, Monika and Cielesta, Szymon and Urban, Pawel and Olszewska, Dorota and Lizurek, Grzegorz (2017) Time-dependent seismic hazard in Bobrek coal mine, Poland, assuming different magnitude distribution estimations. Acta Geophysica. DOI: https://doi.org/10.1007/s11600-016-0002-9

Lesniak, Andrzej and Isakow, Zbigniew (2008) Space–time clustering of seismic events and hazard assessment in the Zabrze-Bielszowice coal mine, Poland. International Journal of Rock Mechanics and Mining Sciences, 46 (5). pp. 918-928. DOI: https://doi.org/10.1016/j.ijrmms.2008.12.003

Lizurek, Grzegorz (2017) Full Moment Tensor Inversion as a Practical Tool in Case of Discrimination of Tectonic and Anthropogenic Seismicity in Poland. Pure and Applied Geophysics, 174 (1). pp. 197-212. DOI: https://doi.org/10.1007/s00024-016-1378-9

Lurka, Adam and Mutke, Grzegorz and Małkowski, Piotr and Carbonari, Sandro (2021) Dynamic Influence of Near-Source Seismic Ground Motion on Underground Mine Working Stability Using Time-Frequency Analysis. Shock and Vibration, 2021. pp. 1-16. DOI: https://doi.org/10.1155/2021/9023550

Marcak, Henryk and Mutke, Grzegorz (2013) Seismic activation of tectonic stresses by mining. Journal of Seismology, 17 (4). pp. 1139-1148. DOI: https://doi.org/10.1007/s10950-013-9382-3

Mendecki, Maciej J. and Wojtecki, Łukasz and Zuberek, Wacław M. (2019) Case Studies of Seismic Energy Release Ahead of Underground Coal Mining Before Strong Tremors. Pure and Applied Geophysics. DOI: https://doi.org/10.1007/s00024-019-02144-0

Mendecki, Maciej Jan and Szczygiel, Jacek and Lizurek, Grzegorz and Teper, Leslaw (2020) Mining-triggered seismicity governed by a fold hinge zone: The Upper Silesian Coal Basin, Poland. Engineering Geology, 274. p. 105728. DOI: https://doi.org/10.1016/j.enggeo.2020.105728

Mirek, Katarzyna and Mirek, Janusz (2011) Correlation between ground subsidence and induced mining seismicity, Upper Silesia Coal Basin case study. Polish Journal of Environmental Studies, 20 (4A). pp. 253-257.

Mutke, Grzegorz (2013) Registrations of seismic foci under mining coal seam - the experience of Polish mines. Acta Geodynamica et Geomaterialia, 10 (2 (170). pp. 147-153. DOI: https://doi.org/10.13168/AGG.2013.0014

Mutke, Grzegorz and Kotyrba, Andrzej and Lurka, Adam and Olszewska, Dorota and Dykowski, Przemysław and Borkowski, Andrzej and Araszkiewicz, Andrzej and Baranski, Adam (2019) Upper Silesian Geophysical Observation System A unit of the EPOS project. Journal of Sustainable Mining, 18 (4). pp. 198-207. DOI: https://doi.org/10.1016/j.jsm.2019.07.005

Mutke, Grzegorz and Lurka, Adam and Zembaty, Zbigniew (2020) Prediction of rotational ground motion for mining-induced seismicity – Case study from Upper Silesian Coal Basin, Poland. Engineering Geology, 276. p. 105767. DOI: https://doi.org/10.1016/j.enggeo.2020.105767

Pawluszek-Filipiak, Kamila and Borkowski, Andrzej (2020) Integration of DInSAR and SBAS Techniques to Determine Mining-Related Deformations Using Sentinel-1 Data: The Case Study of Rydułtowy Mine in Poland. Remote Sensing, 12 (2). p. 242. DOI: https://doi.org/10.3390/rs12020242

Pawluszek-Filipiak, Kamila and Borkowski, Andrzej (2021) Monitoring mining-induced subsidence by integrating differential radar interferometry and persistent scatterer techniques. European Journal of Remote Sensing, 54 (sup1). pp. 18-30. DOI: https://doi.org/10.1080/22797254.2020.1759455

Rudzinski, Lukasz and Debski, Wojciech (2008) Relocation of mining-induced seismic events in the Upper Silesian Coal Basin, Poland, by a double-difference method. Acta Geodynamic Geomaterialia, 5 (2). pp. 97-104.

Stec, Krystyna (2007) Characteristics of seismic activity of the Upper Silesian Coal Basin in Poland. Geophysical Journal International, 168 (2). pp. 757-768. DOI: https://doi.org/10.1111/j.1365-246X.2006.03227.x

Stec, Krystyna (2012) Focal Mechanisms of Mine-Induced Seismic Events an Explanation of Geomechanical Processes in the Area of Longwall 6, Seam 510 In Hard Coal Mine “Bobrek-Centrum”. Archives of Mining Sciences, 57 (4). pp. 871-886. DOI: https://doi.org/10.2478/v10267-012-0057-7

Stec, Krystyna and Drzewiecki, Jan (2012) Mine tremor focal mechanism: An essential element for recognising the process of mine working destruction. Acta Geophysica, 60 (2). pp. 449-471. DOI: https://doi.org/10.2478/s11600-011-0036-y

Book Section

Dubinski, Jozef and Stec, Krystyna (1996) Variation of Certain Parameters of Regional Stress Tensor under Condition of Rockburst Hazard. In: Induced Seismic Events. Birkhäuser Basel, pp. 305-317. ISBN 978-3-0348-9204-9

Reports

Baranowski, Paweł and Kucewicz, Michał and Konarzewski, Marcin and Stanisławek, Sebastian Model for simulating destress blasting in mines. Documentation. Zenodo.

Kompania Weglowa SA, KW SA Rock parameters in Bobrek mine. Technical Report. Kompania Weglowa SA.

Siata, Robert (2015) Seismic research in the area of GRSS seismological sites. Documentation. Central Mining Institute, Poland. (Unpublished)

Stec, Krystyna (2015) Upper Silesian Regional Seismic Network (GRSS). Technical Report. Central Mining Institute, Poland. (Unpublished)

Conference or Workshop Item

Chodacki, Jacek (2013) Exploitation with overlying old shallow mines or open pit mines. In: COMEX meeting 23-24 October 2013, 23-14 October, Nottingham. (Unpublished)

Dubinski, Jozef and Stec, Krystyna (2001) Relationship between focal mechanism parameters of mine tremora and local strata tectonics. In: RaSiM5 - Rockburst and Seismicity in Mines, 10-20 September, South Africa, Johannesburg.

Ilieva, Maya and Pawluszek-Filipiak, Kamila and Mutke, Grzegorz and Kura, Karol and Borkowski, Andrzej and Rohm, Witold Preliminary subsidence study for the Upper Silesian Coal Basin, Poland, based on Interferometry SAR and geophysical investigations (EPOS-PL project). In: EGU General Assembly 2018, 2018.

Kurzeja, Joanna Some aspects of quantitative version of Rockburst Hazard Evaluation Method. In: 8th International Symposium on ROCKBURSTS AND SEISMICITY IN MINES, 1-7 September 2013, Rassia.

Olszewska, Dorota and Lizurek, Grzegorz and Mutke, Grzegorz and Kryński, Jan and Rohm, Witold and Araszkiewicz, Andrzej and Baranski, Adam Multidisciplinary Upper Silesian episode as a new holistic approach in building research infrastructure. In: ESC, 2018.

Stec, Krystyna (2009) Characteristics of the processes taking place at the sources of high energy tremors occurring in the Upper Silesian Coal Basin in Poland – regional character. In: RaSiM (2009) 7th Int. Symp. on Rockbursts and Seismcity in Mines, 21-23 Augudt 2009, Dalian, China.

Image

UNSPECIFIED 2D seismicity of 314 lp s 507. [Image]

UNSPECIFIED 3D model of KWK Bielszowice. [Image]

Central Mining Institute, : (2021) Seismicity of 314 LP Bielszowice Mine. [Image]

Central Mining Institute, : (2021) Seismicity of Bielszowice mine 3 D. [Image]

Central Mining Institute, : (2021) 2D image of seismicity of longwall panel No. 314 in Bielszowice Mine. [Image]

Central Mining Institute, : (2021) 3D image of seismicity in Bielszowice Mine. [Image]

Central Mining Institute, : (2021) Seismicity of 314 lp 3D. [Image]

Central Mining Institute, :(2021) Image of seismicity in Bielszowice MIne. [Image]

Glowny Instytut Gornictwa, GIG GRSS network diagram. [Image]

Jureczka, J. and Dopita, M. and Gałka, M. and Krieger, W. and Kwarciński, J. and Martinec, P. USCB geological cross-section. [Image]

Kompania Weglowa SA, KW SA Crosssection of Bytom Syncline crossing its axis. [Image]

Kompania Weglowa SA, KW SA Geological profile from the synthetic borehole of Bobrek Karb area. [Image]

Kompania Weglowa SA, KW SA Geological profiles from the borehole: B.8, XXIV and Josef Shaft. [Image]

Kompania Weglowa SA, KW SA Hydrogeological map of Quaternary in Bobrek mine area. [Image]

Kompania Weglowa SA, KW SA Hydrogeological map of Triassic in Bobrek mine area. [Image]

Kompania Weglowa SA, KW SA Structural map of Carboniferous roof in Bobrek mine area. [Image]

Mazur, Stanisław Geological map of MUSE1. [Image]

Mazur, Stanisław Geological map of Piast Ziemowit Mine. [Image]

Mazur, Stanisław Geological map of Ruda Bielszowice mine. [Image]

Mazur, Stanisław Geological map of Rydułtowy mine. [Image]

Mazur, Stanisław Geological map of USCB site - black and white. [Image]

Mazur, Stanisław Geological map of USCB site - colour. [Image]

Other

Kompania Weglowa SA, KW SA 3D model of Bobrek mine seams and tremors. Kompania Weglowa SA.

Kompania Weglowa SA, KW SA 3D model of seismicity of 503 coal seam in Bobrek mine. Kompania Weglowa SA.

Central Mining Institute, : (2021) seismicity of 314 panel. Central Mining Institute.

Kura, Karol 3d video clip of seismicity in Bielszowice Mine. Central Mining Institute.

Mutke, Grzegorz and Ferenc, Andrzej and Bara, Jacek and Olszewska, Dorota Video_epizode MUSE_en. Central Mining Institute.

Mutke, Grzegorz and Ferenc, Andrzej and Bara, Jacek and Olszewska, Dorota Video_epizode MUSE_pl. Central Mining Institute.

This list was generated on Fri Apr 26 15:50:59 2024 UTC.