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The Impact of the Low Throw Fault on the Stability of Roadways in a Hard Coal Mine

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[1] BUKOWSKA M., ĆMIEL S., Charakterystyka zmian właściwości skał karbońskich w strefach tektoniki nieciągłej w Górnośląskim Zagłębiu Węglowym, Górnictwo i Geoinżynieria, Zeszyt 2, 2011, 111-119, (in Polish).Search in Google Scholar

[2] GAO J., LIU H.Y., ZHANG M., AZIZ M.M.A., Failure process and support method of roadways excavated in inclined rock mass strata, Civil Engineering and Architecture, 2014, No. 2, 304-312.10.13189/cea.2014.020803Search in Google Scholar

[3] GODYŃ K., Charakterystyka węgla kamiennego występującego w strefach przyuskokowych, Przegląd Górniczy, 2013, No. 4, 45-53, (in Polish).Search in Google Scholar

[4] HONGWEI W., YAODONG J., SHENG X., LINGTAO M., ZHINAN L., DAIXIN D., DENGQIANG Z., Influence of fault slip on mininginduced pressure and optimization of roadway support design in fault-influenced zone, Journal of Rock Mechanics and Geotechnical Engineering, 2016, Vol. 8, 660-671.10.1016/j.jrmge.2016.03.005Search in Google Scholar

[5] KIDYBIŃSKI A., Podstawy geotechniki kopalnianej, Wydawnictwo Śląsk, Katowice 1982, (in Polish).Search in Google Scholar

[6] MAŁKOWSKI P., NIEDBALSKI Z., MAJCHERCZYK T., Investigations of hard coal mine roadways stability in stratified rock, 8th International Symposium on Ground Support in Mining and Underground Construction, 12-14.09.2016, Luleå: E. Nordlund, T.H. Jones, A. Eitzenberger (eds.), 2016, 1-13.Search in Google Scholar

[7] MAŁKOWSKI P., MAJCHERCZYK T., NIEDBALSKI Z., Multi-criterion Analysis of Factors Affecting Maintenance of Roadways, AGH Journal of Mining and Geoengineering, 2012, No. 1, 243-252.Search in Google Scholar

[8] MAŁKOWSKI P., NIEDBALSKI Z., MAJCHERCZYK T., Roadway design efficiency indices for hard coal mines, Acta Geodynamica et Geomaterialia, 2016, No. 2, 201-211. DOI: 10.13168/AGG.2016.0002.10.13168/AGG.2016.0002Search in Google Scholar

[9] NIEĆ M., Geologia kopalniana, Wydawnictwo Geologiczne, Warszawa 1990, (in Polish).Search in Google Scholar

[10] NIEDBALSKI Z., MAŁKOWSKI P., MAJCHERCZYK T., Monitoring of stand-and-roof-bolting support: design optimization, Acta Geodynamica et Geomaterialia, 2013, Vol. 10, No. 2, 215-226. DOI: 10.13168/AGG.2013.0022.10.13168/AGG.2013.0022Search in Google Scholar

[11] ONARGAN T., KUCUK K., DELIORMANLI A., SAYDAM S., KOCA M.Y., Ground control for underground Evaporite Mine in Turkey, [in:] T. Onargan (ed.), Earth and Planetary Sciences “Mining Methods”, Chapter 3, 2012, 33-46. DOI: 10.5772/39174.10.5772/39174Search in Google Scholar

[12] OSTROWSKI Ł., MAŁKOWSKI P., Wpływ zawodnienia na wypiętrzanie skał spągowych wyrobiska korytarzowego, Przegląd Górniczy, 2016, No. 3, 28-38, (in Polish).Search in Google Scholar

[13] PRUSEK S., Changes in cross-sectional area of gateroads in longwalls with roof caving, ventilated with “U” and “Y” systems, Archives of Mining Sciences, 2015, Vol. 60, 549-564.10.1515/amsc-2015-0036Search in Google Scholar

[14] PRUSEK S., Empirical-statistical model of gateroads deformation, Archives of Mining Sciences, 2010, Vol. 55, 295-312.Search in Google Scholar

[15] PRUSEK S., BOCK S., Assessment of rock mass stresses and deformations around mine workings based on threedimensional numerical modeling, Archives of Mining Sciences, 2008, Vol. 53, 349-360.Search in Google Scholar

[16] SHEN H.C., CHENG Y.F., WANG J.Y., Finite element study on the effects of faults on the ground stress field, Petroleum Geology and Oilfield Development in Daqing, 2007, No. 4, 34-37.Search in Google Scholar

[17] SHENG-QI Y., MIAO C., HONG-WEN J., KUN-FU C., BO M., A case study on large deformation failure mechanism of deep soft rock roadway in Xin’An coal mine, China, Engineering Geology, Vol. 217, 89-101. Retrieved on 28 December 2016, http:// www.sciencedirect.com/science/article/pii/S0013795216308614.10.1016/j.enggeo.2016.12.012Search in Google Scholar

[18] SHUAI Y., JIANBIAO B., WENFENG L., JIGANG C., LEI L., Deformation mechanism and stability control of roadway along a fault subjected to mining, International Journal of Mining Science and Technology, 2012, Vol. 22, 559-565.10.1016/j.ijmst.2012.01.020Search in Google Scholar

[19] Technical documentation of roadway D-2. „Borynia-Zofiówka- Jastrzębie” Coal mine, (unpublished).Search in Google Scholar

[20] Technical documentation of drift W level 838. „Borynia-Zofiówka- Jastrzębie” Coal mine, (unpublished).Search in Google Scholar

[21] Uproszczone zasady doboru obudowy odrzwiowej wyrobisk korytarzowych w zakładach wydobywających węgiel kamienny. (2001). Seria: Instrukcje nr 15, Katowice: Główny Instytut Górnictwa, 2001, (in Polish).Search in Google Scholar

[22] YAO Q., LI X., PAN F., WANG T., WANG G., Deformation and Failure Mechanism of Roadway Sensitive to Stress Disturbance and Its Zonal Support Technology, Shock and Vibraton, 2016, Vol. 6, 1-14, DOI: 10.1155/2016/1812768.10.1155/2016/1812768Search in Google Scholar

[23] Zasady projektowania i doboru obudowy wyrobisk korytarzowych w zakładach wydobywających węgiel kamienny. Wydanie II - poprawione, Politechnika Śląska, Instytut Eksploatacji Złóż, Gliwice 2000, (in Polish).Search in Google Scholar

eISSN:
2083-831X
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Geosciences, other, Materials Sciences, Composites, Porous Materials, Physics, Mechanics and Fluid Dynamics