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Krystyna Stec

Parameters description of the programme www.sejsmologiagórnicza <http://www.sejsmologiagórnicza>.pl/foci/ . (in Polish). Makówka J., Kabiesz J., Dou Li-ming, 2009. Relationship between the rock mass deformation and places of occurrence of seismological events . Mining Science and Technology 19, 558-584. Marcak H., 2012. Seismicity in mines due to roof layer bending . Arch. Min. Sci., Vol. 57 no. 1, p. 229-250. McKenzi D.P., 1969. The relation between fault plane solution and the directions of the principal stresses . Bull

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Grzegorz Mutke, Józef Dubiński and Adam Lurka

, 19, p. 97-105. Konecny P., 1989. Mining-induced seismicity (rock bursts) in the Ostrava-Karvina Coal Basin, Czechoslovakia. Gerl. Beitr. Geophysik., 98, No. 6, p. 525-547. Kwiatek G., Plenkers K., Nakatani M., Yabe Y., Dresen G., 2011. Frequency Magnitude characteristics down to magnitude -4.4 induced seismicity recorded at Mponeng Gold Mine, South Africa. BSSA, Vol. 100, No. 3, p. 1165-1173. Lizurek G., Rudzinski L., Plesiewicz B., 2015. Mining Induced Seismic Event on an Inactive Fault. Acta Geophysica, Vol. 63, Iss

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Pierpaolo Oreste and Silvia Soldano

-Flow Hazards Mitigation: Mechanics, Prediction, and Assessment”, Davos, Switzerland, Rickenmann, Chen (Eds), Millpress, Rotterdam, 203, pp. 809-820 Blijenberg H.M., 1993. Modelling of debris flows , in Flageollet J.C. (Ed.), “Temporal Occurrence and Forecasting of Landslides in the European Community”, Final Report, European Community, Programme EPOCH, Contract 90 0025, Part I, 162-189. Bourdeau C., Havenith H.B., Fleurisson J.A., Grandjean G., 2004. Numerical Modelling of Seismic Slope Stability . Engineering Geology for Infrastructure

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Henryk Marcak

seismic hazard posed by mining-induced events . Proceedings of the 6th Int. Symp. on Rockbursts and Seismicity in Mines Controlling on Seismic Risk ACG, Perth, 151-156, eds Potvin Y. & Hudyma M., Australian Centre for Geomechanics, Nedlands, Western Australia. Lasocki S., 2008. Some unique statistical properties of the seismic process in mines . in Proceedings of the 1st Southern Hemisphere International Rock Mechanics Symp., Vol. 1: Mining and Civil, Perth, 667-678, ed. ed. Potvin Y., Australian Centre for Geomechanics, Nedlands, Western Australia

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Navid Hosseini, Kazem Oraee, Kourosh Shahriar and Kamran Goshtasbi

Technologies - A Look at the Moonee Colliery Experience . Proceedings of the 24th international conference ground control in mining, Morgantown, WV, p. 44-60. Iannacchione A.T., Esterhuizen G.S., Bajpayee T.S., Swanson P.L., Chapman M.C., 2005b. Characteristics of Mining-Induced Seismicity Associated with Roof Falls and Roof Caving Events . Proceedings of the 40th U.S. Rock Mechanics Symposium, Anchorage, AK, Alexandria, pp. 1-10. Jeremic M.L., 1985. Strata Mechanics in Coal Mining . A.A. BALKEMA, Rotterdam, Netherlands

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Jacek Jakubowski and Antoni Tajduś

prediction of strong mining tremors. Acta Geophys., Pol. 41, 1993, 1197-234. Lasocki S., Orlecka-Sikora B., 2008. Seismic hazard assessment under complex source size distribution of mining-induced seismicity. Tectonophysics, 456, 2008, 28-37. Leśniak A., Isakow Z., 2009. Space-time clustering of seismic events and hazard assessment in the Zabrze-Bielszowice coal mine, Poland. International Journal of Rock Mechanics & Mining Sciences, 46, 918-928. Marcak H., 1993. The use of pattern recognition method for predicting of the rockbursts. [In:] R. R Young, (ed

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Aleksander Cianciara

Acoustic Emissions . EGU. Dubiński J., 1995. Metody obliczania energii sejsmicznej wstrząsów górniczych, „Wstrząsy górnicze – mechanizm, lokalizacja i energia” . Szkoła Eksploatacji Podziemnej, Seria wykłady nr 8. Hardy H.R., Jr., 2003. Acoustic Emission/Microseismic Activity: Volume 1: Principles, Techniques, and Geotechnical Applications , Balkem Publishers. Lasocki S., 1993. Weibull distribution as a model for sequense of seismic events induced by mining . Acta Geophys., Pol. 41, no 2. Lehmann E.L., 1991. Teoria estymacji punktowej . PWN

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Józef Kabiesz, Adam Lurka and Jan Drzewiecki

. Drzewiecki J., 2004. Effect of longwall face advance rate on carboniferous rock strata dynamics and destruction. Prace Naukowe GIG, (Scientific Works of GIG), Nr 860, Katowice, (in Polish). Drzewiecki J., 2004a. Metanowość ścian a postęp eksploatacji (Longwall methane content and mining advance). Arch. Min. Sci., Vol. 49, p. 271-284. Drzewiecki J., 2015. Determination of the value of the elastic modulus of the large-size rock mass Esrm disturbed by longwall operation on the basis of seismic energy events. Acta Geodynamica et Geomaterialia