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Using radar interferometry and SBAS technique to detect surface subsidence relating to coal mining in Upper Silesia from 1993-2000 and 2003-2010

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Bateson L., Cigna F., Boon D., Sowter A. 2015. The application of the Intermittent SBAS (ISBAS) InSAR method to the South Wales Coalfield, UK. Int. J. Appl. Earth Obs. Geoinf., 34: 249-257.Search in Google Scholar

Berardino P., Fornaro G., Lanari R., Sansoti E. 2002. A new algorithm for surface deformation monitoring based on small baseline differential SAR interferograms. Remote Sens., 40, 11: 2375-2383.Search in Google Scholar

Cabala J.M., Cmiel S.R. 1999. Dynamics of ground surface deformation caused by mining in the period 1973-97 in USCB on the example of Kazimierz trough. Documenta Geonica of Akademy of Sciences of Czech Republic, Proc. 2 Czech-Polish Geomechanical Symp., Prague: 243-252.Search in Google Scholar

Cabala J.M., Cmiel S.R., Idziak A.F. 2004. Environmental impact of mining activity in the Upper Silesian Coal Basin (Poland). Geol. Belg., 7, 3-4: 225-229.Search in Google Scholar

Caduff R., Schlunegger F., Kos A., Wiesmann A. 2014. A review of terrestrial radar interferometry for measuring surface change in the geosciences. Earth Surf. Process. Landf. (wileyonlinelibrary.com) doi: 10.1002/esp.3656.10.1002/esp.3656Search in Google Scholar

Carnec C., Delacourt C. 2000. Three years of mining subsidence monitored by SAR interferometry, near Gardanne, France. J. App. Geop., 43: 43-54.Search in Google Scholar

Chan Y. K., Koo V. C. 2008. An introduction to synthetic aperture radar (SAR). Progress in Electromagnetics Res., B, 2: 27-60.Search in Google Scholar

Colesanti C., Ferreti A., Prati C., Rocca F. 2001. Comparing GPS, optical levelling and permanent scatterers. Proc. IGARSS’01, Sydney, Australia. IEEE Intl. Geosci. Remote Sens. Symp., 6: 2622-2624.Search in Google Scholar

Costantini M., Rosen P.A. 1999. A generalized phase unwrapping approach for sparse data. In IEEE Int. Geosci. Remote Sens. Symp. (IGARSS), Hamburg (Germany), June 1999: 267-269.Search in Google Scholar

Crosetto M. 2002. Calibration and validation of SAR interferometry for DEM generation. ISPRS J. Photogramm. Remote Sens. 57: 213-227.10.1016/S0924-2716(02)00107-7Search in Google Scholar

Crosetto M., Monserrat O., Jungner A., Crippa B. 2009. Persistent Scatter Interferometry: Potential and limits. WG I/2, I/4, IV/2, IV/3, VII/2 ISPRS Hannover Workshop 2009. High-Resolution Earth Imaging for Geospatial Information June 2-5, 2009 Hannover, Germany. Available from: http://www.isprs.org/proceedings/XXXVIII/1_4_7W5/paper/Crosetto-136.pdf.Search in Google Scholar

Del Ventisette C., Ciampalini A., Manunta M., Calò F., Paglia L., Ardizzone F., Mondini A.C., Reichenbach P., Mateos R.M., Bianchini S., Garcia I., Füsi B., Deák Zs.V., Rádi K., Graniczny M., Kowalski Z., Piatkowska A., Przylucka M., Retzo H., Strozzi T., Colombo D., Mora O., Sánchez F., Herrera G., Moretti S., Casagli N., Guzzetti F. 2013. Exploitation of Large Archives of ERS and ENVISAT C-Band SAR Data to Characterize Ground Deformations. Remote Sens. 5/8: 3896-3917. doi: 10.3390/rs5083896.10.3390/rs5083896Search in Google Scholar

Domagała I. 2013. Raport o Stanie Miasta Bytom 2012. Urząd Miasta Bytom. Bytom, Poland: 124-126.Search in Google Scholar

Domagała I. 2014. Raport o Stanie Miasta Bytom 2013. Urząd Miasta Bytom. Bytom, Poland: 134-137.Search in Google Scholar

Domagała I. 2015. Raport o Stanie Miasta Bytom 2014. Urząd Miasta Bytom. Bytom, Poland: 139-142.Search in Google Scholar

Engelbrecht J., Inggs M. 2013. Differential interferometry techniques on L-band data employed for the monitoring of surface subsidence due to mining. S. Afr. J. Geomatics, 2: 82–93.Search in Google Scholar

Exelis (Visual Information Solutions) 2015. Available from: http://www.exelisvis.com/Learn/EventsTraining/Tradeshows/GEOINT/TabId/1019/ArtMID/3554/userid/77915/ArticleID/4316/Refinement-step-and-GCP-collection-for-SARscape-Interferometry-.aspxSearch in Google Scholar

Fernandez J., Tizanni P., Manzo M., Borgia A., Gonzalez P. J., Marti J., Pepe A., Camacho A.G., Casu F., Berardino P., Prieto J.F., Lanari R. 2009. Gravity-driven deformation of Tenerife measured by InSAR time series analysis. Geophys. Res. Lett., 36: p. L04306.Search in Google Scholar

Graniczny M., Bovenga F., Kowalski Z., Perski Z., Piątkowska A., Surała M., Uścinowicz Sz., Wasowski J., Zdanowski A. 2011. Problematyka wykorzystania interferometrii satelitarnej w badaniach geologicznych. Biul. Państ. Inst. Geol., 446: 53-64.Search in Google Scholar

Graniczny M., Czarnogórska M., Kowalski Z., Leśniak A., Jureczka J. 2008. Metoda punktowej, długookresowej satelitarnej interferometrii radarowej (PSInSAR) w rozpoznaniu geodynamiki NE części Górnośląskiego Zagłębia Węglowego. Prz. Geol., 56: 826-835.Search in Google Scholar

Graniczny M., Kowalski Z., Jureczka J., Czarnogórska M. 2006. Wykorzystanie technologii PSinSAR dla obserwacji przemieszczeń powierzchni terenu na przykładzie Górnego Śląska. Mat. Symp.: 127-129.Search in Google Scholar

Herrera G., Fernández M.Á., Tomás R., González-Nicieza C., López-Sánchez J.M., Vigil A.Á. 2012. Forensic analysis of buildings affected by mining subsidence based on Differential Interferometry (Part III). Eng. Fail. Anal., 24: 67-76.Search in Google Scholar

Hole J.K., Bromley C.J., Stevens N.F., Wadge G. 2007. Subsidence in the geothermal fields of the Taupo Volcanic Zone, New Zealand from 1996 to 2005 measured by InSAR. J. Volcanol. Geoth. Res., 166: 125-146.Search in Google Scholar

Hu B., Wang H-S., Sun Y-L., Hou J-G., Liang J. 2014. Long-Term Land Subsidence Monitoring of Beijing (China) Using the Small Baseline Subset (SBAS) Technique. Remote Sens., 6: 3648-3661. doi: 10.3390/rs605364810.3390/rs6053648Search in Google Scholar

Jecintha G.A., Mariappan V.E.N. 2011. A study on Tamilnadu coastal deformation processes using SAR Interferometric data. Int. J. Geomat. Geosci., 1, 4: 879-890.Search in Google Scholar

Jung H.C., Kim S-W., Jung H-S, Min K.D., Won J-S. 2007. Satellite observation of coal mining subsidence by persistent scatterer analysis. Eng. Geol., 92: 1-13.Search in Google Scholar

Klabis L., Kowalski A. 2014. Eksploatacja górnicza w filarze ochronnym dla śródmieścia Bytomia, historia i teraźniejszość. [in:] Proc. V. Konf. nauk.-szkoleniowa GIG, Bezpieczeństwo i ochrona obiektów budowlanych na terenach górniczych, Karpacz, Poland, 15–17 October 2014.Search in Google Scholar

Konopko W. 2010. Wydobycie węgla i destrukcja górotworu w Górnośląskim Zagłębiu Węglowym. Prz. Górn., 66: 1-10.Search in Google Scholar

Lee C-W, Lu Z, Jung, H-S, Won, J-S, Dzurisin D, 2010. Surface deformation of Augustine Volcano, 1992–2005, from multiple-interferogram processing using a refined small baseline subset (SBAS). [in:] Power J.A., Coombs M.L., Freymueller J.T. (eds.) The 2006 eruption of Augustine Volcano, Alaska. U.S. Geol. Surv. Professional Paper 1769: 453-465. [http://pubs.usgs.gov/pp/1769/chapters/p1769_chapter18.pdf].10.3133/pp176918Search in Google Scholar

Paradella W.R., Mura J.C., Gama F.F., dos Santos A.R. 2012. Radar interferometry in surface deformation detection with orbital data. Rev. Bras. de Cart., 64(6): 797-811. Sociedade Brasileira de Cartografia, Geodésia, Fotogrametria e Sensoriamento Remoto ISSN: 1808-0936.Search in Google Scholar

Peltier A., Bianchi M., Kaminski E., Komorowski J.-C., Rucci A., Staudacher T. 2010. PSInSAR as a new tool to monitor pre-eruptive volcano ground deformation: Validation using GPS measurements on Piton de la Fournaise. Geophys. Res. Lett., 37(12), L12301. doi:10.1029/2010GL043846.10.1029/2010GL043846Search in Google Scholar

Perski Z. 2000. The interpretation of ERS-1 and ERS-2 Insar data for the mining subsidence monitoring in Upper Silesian Coal Basin, Poland. Work. Group VII/6, IAPRS, Vol. XXXIII, Amsterdam, 2000.Search in Google Scholar

Perski Z., Jura D. 1999. ERS SAR Interferometry for Land Subsidence Detection in Coal Mining Areas. Earth Observ. Quart., 63: 25-29.Search in Google Scholar

Pratti C., Rocca F., Guarnieri A.M., Pasquali P. 1994. Report on ERS-1 SAR interferometric techniques and applications. ESA report 10179/93/YT/I/SC: 122.Search in Google Scholar

Przyłucka M., Herrera G., Graniczny M., Colombo D., Béjar-Pizarro M. 2015. Combination of Conventional and Advanced DInSAR to Monitor Very Fast Mining Subsidence with TerraSAR-X Data: Bytom City (Poland). Remote Sens., 7, 5300-5328. doi: 10.3390/rs70505300.10.3390/rs70505300Search in Google Scholar

Raucoules D., Bourgine B., de Michele M., Le Cozannet G., Closset L., Bremmer C., Veldkamp H., Tragheim D., Bateson L., Crosetto M., Agudo M., Engdahl M. 2009. Validation and intercomparison of Persistent Scatterers Interferometry: PSIC4 project results. J. Appl. Geop., 68: 335-347.Search in Google Scholar

Raucoules R., Colesanti C., Carnec C. 2007. Use of SAR interferometry for detecting and assessing ground subsidence. Comptes Rendus Geosci., 339: 289-302.Search in Google Scholar

Shanker P., Casu F., Zebker H.A., Lanari R. 2011. Comparison of Persistent Scatterers and Small Baseline Time-Series InSAR Results: A Case Study of the San Francisco Bay Area. IEEE Geosci. Remote Sens. Lett., 8, 4: 592-596.Search in Google Scholar

Skrzypczyk-Kogut B. 2011. Raport o Stanie Miasta Bytom 2010. Urząd Miasta Bytom. Bytom, Poland: 84-87.Search in Google Scholar

Skrzypczyk-Kogut B. 2012. Raport o Stanie Miasta Bytom 2011. Urząd Miasta Bytom. Bytom, Poland: 120-123.Search in Google Scholar

Tomás R., Romero R., Mulas J., Marturià J.J., Mallorquí J.J., Lopez-Sanchez J.M., Herrera G., Gutiérrez F., González P.J., Fernández J., Duque S., Concha-Dimas A., Cocksley G., Castañeda C., Carrasco D., Blanco P. 2014. Radar interferometry techniques for the study of ground subsidence phenomena: a review of practical issues through cases in Spain. Environ. Earth Sci., 71: 163-181.10.1007/s12665-013-2422-zSearch in Google Scholar

Trasatti E., Casu F., Giunchi C., Pepe S., Solaro G., Tagliaventi S., Berardino P., Manzo M., Pepe A., Ricciardi G.P., Sansosti E., Tizzani P., Zeni G., Lanari R. 2008. The 2004-2006 uplift episode at Campi Flegrei caldera (Italy): Constraints from SBAS-DInSAR ENVISAT data and Bayesian source Inference, Geophys. Res. Lett., 35, p.L07308.Search in Google Scholar

Wegmüller U., Werner C., Strozzi T., & Wiesmann A. 2004. Monitoring mining induced surface deformation. [in:] Geosci. Remote Sens. Symp., 2004. IGARSS’04. Proc. 2004 IEEE Int., 3: 1933-1935.Search in Google Scholar

Wojciechowski T. 2006. The Dynamics of Mining Subsidence in Knurow Area in Poland Derived from SAR Interferometry and Topographic Data. European Space Agency – Publ. – ESA Sp, 610, P35 Fringe-Workshop, Fringe.Search in Google Scholar

eISSN:
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Inglese
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