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THE POSSIBILITY OF SPECIFIC SOLUTIONS OF DEFORMATIONS IN THE UNDERMINED AREAS
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Can E. , Mekik Ç ., Kuşçu Ş ., Akçın H ., Computation of subsidence parameters resulting from layer movements post-o perations of underground mining, Journal of Structural Geology, Vol. 47, Issue Febr. 2013, pp 16-24.
Díaz-Fernández M.E., Álvarez -Fernández M.I., Álvarez -Vigil A.E., Computation of influence functions for automatic mining subsidence prediction, Computational Geosciences, 14(1), 2010, pp 83-103, DOI: 10.1007/s10596-009-9134-1.
Donnelly L. J., Reddish D.J., The development of surface steps during mining subsidence: “Not due to fault reactivation”, Engineering Geology 36(3-4), 1994, pp 243-255, DOI: 10.1016/0013-7952(94)90006-X.
Gallay M. , Lloyd C. , McK inley J., Using geographically weighted regression for analysing elevation error of high-resolution DEM s, In: Accuracy 2010: Proceed. of the Ninth International Symposium, 20.-23.7.2010, Leicester, University of Leicester, 2010, pp109-113.
Kanuk, J., Gallay, M., Hofierka , J., Modelling urban changes using time se ries of virtual 3 -D city models, 9th 3DGeoInfo Conference 2014 - Proceedings , 11 -13 November 2014, Dubai, 97-103, UAE.
Kazansky, R., Simulacia a ich vyuzitie v metode vcasneho varovania v problematike vyskumu medzinarodnej bezpecnosti , (in Slovak), [Simulation and their use in methods for early warning of issues of international security research] , In: Crisis management by simulation technologies, Scient. Proceedings , Liptovsky Mikula s: Armed Forces Academy, 2013, pp 62-65.
Lü W.C., Ceng S. G., Cheng H. S. et al., Application of GPS technology to build a mine-subsidence observation station, Journal of China. University of Mining and Tec hnology, 18(3), 2008, pp 377-380, DOI: 10.1016/S1006-1266(08)60079-6.
Sedlak V., Mathematical testing the edges of subsidence in undermined areas, Journal of Mining Sciences, 50(3), 2014, pp 465 -474, DOI: 10.1134/S 1062739114030089. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
Can E. , Mekik Ç ., Kuşçu Ş ., Akçın H ., Computation of subsidence parameters resulting from layer movements post-o perations of underground mining, Journal of Structural Geology, Vol. 47, Issue Febr. 2013, pp 16-24.
Díaz-Fernández M.E., Álvarez -Fernández M.I., Álvarez -Vigil A.E., Computation of influence functions for automatic mining subsidence prediction, Computational Geosciences, 14(1), 2010, pp 83-103, DOI: 10.1007/s10596-009-9134-1.
Donnelly L. J., Reddish D.J., The development of surface steps during mining subsidence: “Not due to fault reactivation”, Engineering Geology 36(3-4), 1994, pp 243-255, DOI: 10.1016/0013-7952(94)90006-X.
Gallay M. , Lloyd C. , McK inley J., Using geographically weighted regression for analysing elevation error of high-resolution DEM s, In: Accuracy 2010: Proceed. of the Ninth International Symposium, 20.-23.7.2010, Leicester, University of Leicester, 2010, pp109-113.
Kanuk, J., Gallay, M., Hofierka , J., Modelling urban changes using time se ries of virtual 3 -D city models, 9th 3DGeoInfo Conference 2014 - Proceedings , 11 -13 November 2014, Dubai, 97-103, UAE.
Kazansky, R., Simulacia a ich vyuzitie v metode vcasneho varovania v problematike vyskumu medzinarodnej bezpecnosti , (in Slovak), [Simulation and their use in methods for early warning of issues of international security research] , In: Crisis management by simulation technologies, Scient. Proceedings , Liptovsky Mikula s: Armed Forces Academy, 2013, pp 62-65.
Lü W.C., Ceng S. G., Cheng H. S. et al., Application of GPS technology to build a mine-subsidence observation station, Journal of China. University of Mining and Tec hnology, 18(3), 2008, pp 377-380, DOI: 10.1016/S1006-1266(08)60079-6.
Sedlak V., Mathematical testing the edges of subsidence in undermined areas, Journal of Mining Sciences, 50(3), 2014, pp 465 -474, DOI: 10.1134/S 1062739114030089. International Multidisciplinary Scientific GeoConfenferences SGEM 2015 www.sgem.org
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