يعرض 1 - 20 نتائج من 518 نتيجة بحث عن '"Comina, Cesare"', وقت الاستعلام: 0.51s تنقيح النتائج
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    المساهمون: CNR IRPI, Strada delle Cacce 73, 10135 Turin, Italy, Dipartimento Scienze della Terra, Via V. Caluso, 10125 Turin, Italy, Department of Geology, Brigham Young University-Idaho, 525 South Center Street, Rexburg, ID 83460-0510, USA, Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione OV, Napoli, Italia, Studio SASSONE Engineering Geology, Str. Boccardo, Casalborgone, 10020 Turin, Italy

    وصف الملف: application/pdf

    Relation: Geosciences; /14(2024); 1. Sethi, R. Introduction to the Conference “Le Attività Minerarie Nella Storia”. Politecnico di Torino. 2018. Available online: www.diati.polito.it/miniere2018 (accessed on 11 October 2023). 2. De Vries, J. The Industrial Revolution and the Industrious Revolution. J. Econ. Hist. 1994, 54, 249–270. Available online: http://www.jstor.org/stable/2123912 (accessed on 3 January 2024). [CrossRef] 3. Mokyr, J.; Strotz, R.H. The second industrial revolution, 1870–1914. In Storia dell’economia Mondiale; Editori Laterza: Bari, Italy, 1998; pp. 1–18. 4. Dean, T. The towns of Italy in the later Middle Ages. In The Towns of Italy in the Later Middle Ages; Manchester University Press: Manchester, UK, 2013. 5. Dulias, R. Introduction. In The Impact of Mining on the Landscape; Environmental Science and Engineering; Springer: Cham, Switzerland, 2016. [CrossRef] 6. Styles, P.; Toon, S.; Branston, M.; England, R.; Thomas, E.; Mcgrath, R. High resolution microgravity investigations for the detection and characterisation of subsidence associated with abandoned, coal, chalk and salt mines. In Proceedings of the Conference: Post-Mining 2005, Nancy, France, 16–18 November 2005; 12p. 7. Culshaw, M.G.; McCann, D.M.; Donnelly, L.J. Impacts of abandoned mine workings on aspects of urban development. Mining Techn. 2000, 109, 132–139. [CrossRef] 8. Mancini, F.; Stecchi, F.; Zanni, M.; Gabbianelli, G. Monitoring ground subsidence induced by salt mining in the city of Tuzla (Bosnia and Herzegovina). Environ. Geol. 2009, 58, 381–389. [CrossRef] 9. Marschalko, M.; Yilmaz, I.; Kubeˇcka, K.; Bouchal, T.; Bednarik, M. Utilization of ground subsidence caused by underground mining to produce a map of possible land-use areas for urban planning purposes. Arab. J. Geosc. 2015, 8, 579–588. [CrossRef] 10. Machowski, R.; Rzetala, M.A.; Rzetala, M.; Solarski, M. Geomorphological and Hydrological Effects of Subsidence and Landuse Change in Industrial and Urban Areas. Land Degr. Develop. 2016, 27, 1740–1752. [CrossRef] 11. Solarski, M.; Machowski, R.; Rzetala, M.; Rzetala, M.A. Hypsometric changes in urban areas resulting from multiple years of mining activity. Sci. Rep. 2022, 12, 2982. [CrossRef] [PubMed] 12. Crane, W.R. Subsidence and Ground Movement in the Copper and Iron Mines of the Upper Peninsula, Michigan; U.S. Department of Commerce-Bureau of Mines: Washington, DC, USA, 1929. Available online: https://digital.library.unt.edu/ark:/67531/metadc3 8772/ (accessed on 3 November 2023). 13. Allen, C.W. Subsidence resulting from the Athens system of mining at Negaunee, Michigan. Proc. Am. Inst. Min. Met. Eng. 1934, 109, 195–202. 14. Rice, G.S. Ground movement from mining in Brier Hill Mine, Norway, Michigan. Proc. Am. Inst. Min. Met. Eng. 1934, 109, 118–152. 15. Allen, A.A. Basic Questions Concerning Coal Mine Subsidence in the United States. Environ. Eng. Geosc. 1978, xv, 147–161. [CrossRef] 16. Wood, C.; Renfrey, G.J. The Influence of Mining Subsidence on Urban Development of Ipswich, Queensland. Int. Soc. for Soil Mech. Geotech. Eng. 1975, 4–9. 17. Bell, F.; Stacey, T.; Genske, D. Mining subsidence and its effect on the environment: Some differing examples. Environ. Geol. 2000, 40, 135–152. [CrossRef] 18. Bell, F.G.; Donnelly, L.J.; Genske, D.D.; Ojeda, J. Unusual cases of mining subsidence from Great Britain, Germany and Colombia. Environ. Geol. 2005, 47, 620–631. [CrossRef] 19. Cui, X.; Gao, Y.; Yuan, D. Sudden surface collapse disasters caused by shallow partial mining in Datong coalfield, China. Nat. Hazards 2014, 74, 911–929. [CrossRef] 20. Pan, Z.; Jiang, X.; Lei, M.; Guan, Z.; Wu, Y.; Gao, Y. Mechanism of sinkhole formation during groundwater-level recovery in karst mining area, Dachengqiao, Hunan province, China. Environ. Earth Sci. 2018, 77, 799. [CrossRef] 21. Sahu, P.; Lokhande, R.D. An Investigation of Sinkhole Subsidence and its Preventive Measures in Underground Coal Mining. Global Challenges, Policy Framework & Sustainable Development for Mining of Mineral and Fossil Energy Resources (GCPF2015). Procedia Earth Planet. Sci. 2015, 11, 63–75. Geosciences 2024, 14, 181 27 of 27 22. ISPRA. Indicatori Ambientali 2018. Available online: https://indicatoriambientali.isprambiente.it/sys_ind/76 (accessed on 21 May 2023). 23. Bell, F.G. The influence of subsidence due to present day coal mining on surface development. Geol. Soc. Eng. Geol. Spec. Publ. 1987, 4, 355–367. [CrossRef] 24. Suing, W. On the mechanism and process of slope deformation in an open mine. Rock Mech. 1981, 13, 145–156. 25. Malgot, J.; Baliak, F.; Cabalov ˇ á, D. Influence of slope movements on the exploitation of mineral resources. In Proceedings Progressive Trends in Engineering Geology Investigations, Bratislava; 1986; pp. 169–178. 26. Rozsypal, A. Problems of prognosis of slope deformation of open pit mines. In Proceedings of the 5th International symposium on landslides, Laussane, Switzerland, 10–15 July 1988; Volume 5, pp. 1233–1236. 27. Marschalko, M.; Hofrichterova, L.; Lahuta, H. Utilization of geophysical method of multielectrode resistivity measurements on a slope deformation in the mining district. In Proceedings of the 8th International Multidisciplinary Scientific GeoConference Survey, Geology, Ecology and Management SGEM, Sofia, Bulgaria, 16–20 June 2008; Volume 1, pp. 315–324. 28. Marschalko, M.; Fuka, M.; Treslin, L. Measurements by the method of precise inclinometry on locality affected by mining activity. Arch. Min. Sci. 2008, 53, 397–414. 29. Gutierrez, F. Sinkhole Hazards 2016. Oxford Research Encyclopedia of Natural Hazard Science. Available online: https://oxfordre. com/naturalhazardscience/view/10.1093/acrefore/9780199389407.001.0001/ (accessed on 10 February 2024). 30. Gutiérrez, F.; Cooper, A.H.; Johnson, K.S. Identification, prediction, and mitigation of sinkhole hazards in evaporite karst areas. Environ. Geol. 2013, 70, 1463–1478. [CrossRef] 31. Malinowska, A.; Matonóg, A. Sinkhole hazard mapping with the use of spatial analysis and analytical hierarchy process in the light of mining-geological factors. Acta Geodyn. Geomater. 2017, 14, 159–172. 32. Chen, J. Karst collapse in cities and mining areas, China. Environ. Geol. Water Sci. 1988, 12, 29–35. [CrossRef] 33. Brinkmann, T.; Scholles, C.; Wind, J.; Wolff, T.; Dengel, A.; Clemens, W. Processing of coal mine gas with low methane concentrations for use in high-temperature fuel cells. Desalination 2008, 224, 7–11. [CrossRef] 34. Xua, J.; Heb, J.; Zhang, L. Collapse prediction of karst sinkhole via distributed Brillouin optical fiber sensor. Measurement 2017, 10, 68–71. [CrossRef] 35. Strzałkowski, P. Sinkhole formation hazard assessment. Environ. Earth Sci. 2019, 78, 9–17. [CrossRef] 36. ISTAT. Available online: https://www.istat.it/ (accessed on 5 March 2024). 37. ARPA Piemonte. Available online: https://webgis.arpa.piemonte.it/geodissesto/eventi/eventi.php (accessed on 25 February 2024). 38. Miniere d’Italia. Available online: https://sites.google.com/view/miniere-italia/regioni/piemonte/marna-da-cemento (accessed on 12 September 2023). 39. Lovari, D. Giacimenti Calcareo-Marnosi Delle Colline di Casale Monferrato ed Alcuni Cenni Sulla Loro Utilizzazione per la Produzione della Calce Idraulica e del Cemento; Ministero di Agricoltura, Industria e Commercio, Ispettorato delle Miniere: Roma, Italy, 1912; pp. 5–50. 40. Montrasio, A.; Premoli Silva, I.; Ragni, U. Osservazioni geologico-stratigrafiche sulla regione compresa fra Casale Monferrato, Vignale, Alfiano Natta e Gabiano. Boll. Soc. Geol. It. 1968, 87, 581–609. 41. Comune di Coniolo. La Storia Mineraria di Coniolo; Tipografia La Nuova Operaia: Coniolo, Italy, 2004; 156p. 42. Jackson, M.; Deocampo, D.; Marra, F.; Scheetz, B. Mid-Pleistocene pozzolanic volcanic ash in ancient Roman concretes. Geoarchae ology 2009, 25, 36–74. [CrossRef] 43. Gino, E. Le Complesse Relazioni Fra L’uomo e L’ambiente Stretto Fra Esigenze di Sfruttamento e Salvaguardia; Piemonte Parchi: Torino, Italy, 2011; 33p. 44. Frixa, A. Marne del Monferrato Casalese: Significato Geologico. In Convegno “Marne del Monferrato Casalese-Pietra da Cantoni e Marna da Cemento fra Passato e Presente”; Ist. Leardi: Casale Monferrato, Italy, 2011. 45. Martinotti, R. Private letter. In Atlante dei Centri Abitati Instabili Piemontesi; Luino, F., Ramasco, M., Susella, G., Eds.; Regione Piemonte: Torino, Italy, 1994; 246p. 46. Luino, F.; Ramasco, M.; Susella, G. Atlante dei Centri Abitati instabili Piemontesi; GNDCI CNR; Regione Piemonte: Torino, Italy, 1994; 246p. 47. Comune di Camino. Historical documents found in the historical archives of the Municipality of Camino (Alessandria Province, Piemonte, Italy). CNR IRPI Archive. 48. SIFRAP Project. Sistema Informativo Frane in Piemonte. Available online: https://geoportale.arpa.piemonte.it/app/public/ (accessed on 11 August 2022).

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    Conference

    المساهمون: Vagnon, Federico, Comina, Cesare, Canepa, Marie Claire, Bovero, Alessandro, Giraudo, Giuseppe

    وصف الملف: ELETTRONICO

    Relation: ispartofbook:IOP Conf. Series: Earth and Environmental Science; Eurock 2022 - Rock and Fracture Mechanics in Rock Engineering and Mining; volume:1124; firstpage:1; lastpage:8; numberofpages:8; journal:IOP CONFERENCE SERIES. EARTH AND ENVIRONMENTAL SCIENCE; https://hdl.handle.net/11583/2974511; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85146564333

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    Academic Journal

    المؤلفون: Comina, Cesare1 (AUTHOR) cesare.comina@unito.it, Adinolfi, Guido Maria1 (AUTHOR) guidomaria.adinolfi@unito.it, Bertok, Carlo1 (AUTHOR) carlo.bertok@unito.it, Bertea, Andrea2 (AUTHOR) andrea.bertea@regione.piemonte.it, Giraud, Vittorio2 (AUTHOR) vittorio.giraud@regione.piemonte.it, Pieruccini, Pierluigi1 (AUTHOR) pierluigi.pieruccini@unito.it

    المصدر: Earth System Science Data Discussions. 12/10/2024, p1-21. 21p.

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    المساهمون: Vagnon, Federico, Comina, Cesare, Arato, Alessandro

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:000860758100001; volume:303; firstpage:106670; numberofpages:12; journal:ENGINEERING GEOLOGY; http://hdl.handle.net/11583/2961726; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85128663451

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    Academic Journal

    المساهمون: Porcelli, Francesco, Sambuelli, Luigi, Comina, Cesare, Spanò, Antonia, Lingua, Andrea, Calantropio, Alessio, Catanzariti, Gianluca, Chiabrando, Filiberto, Fischanger, Federico, Maschio, Paolo, Ellaithy, Ahmed, Airoldi, Giulia, De Ruvo, Valeria

    وصف الملف: STAMPA

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:000529139700011; volume:20; issue:6; firstpage:1552; numberofpages:25; journal:SENSORS; http://hdl.handle.net/11583/2803192; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85081238935; https://www.mdpi.com/1424-8220/20/6/1552/htm

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    المساهمون: Costantini Giorgio, Comina Cesare, Ferrero Anna Maria, Umili Gessica, Bonetto Sabrina

    Relation: volume:2; firstpage:37; lastpage:47; numberofpages:11; journal:RIVISTA ITALIANA DI GEOTECNICA; http://hdl.handle.net/2318/1709036; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85068423083; dx.doi.org/10.19199/2019.2.0557-1405.037

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    المساهمون: Pace, Francesca, Godio, Alberto, Santilano, Alessandro, Comina, Cesare

    وصف الملف: ELETTRONICO

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:000482302200003; volume:218; issue:3; firstpage:1502; lastpage:1521; numberofpages:20; journal:GEOPHYSICAL JOURNAL INTERNATIONAL; http://hdl.handle.net/11583/2742632

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    Academic Journal

    المساهمون: Colombero, Chiara, Comina, Cesare, Valentina Socco, Laura

    وصف الملف: STAMPA

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:000501594400069; volume:84; issue:6; firstpage:EN93; lastpage:EN111; numberofpages:19; journal:GEOPHYSICS; http://hdl.handle.net/11583/2771575; info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85077776004