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2015 | OriginalPaper | Buchkapitel

Introduction

verfasst von : Marco Scaioni

Erschienen in: Modern Technologies for Landslide Monitoring and Prediction

Verlag: Springer Berlin Heidelberg

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Abstract

Different technologies have been largely supporting the landslide science in recent years, with the aim of achieving a better knowledge of Earth phenomena, of reducing the landslide risk, and of improving disaster mitigation and preparedness capability.

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Fußnoten
1
Comedy, Inferno XII, 4–9: Qual è quella ruina che nel fianco/di qua da Trento l'Adice percosse,/o per tremoto o per sostegno manco,/ … (As that landslide that on the southern side of Trento run-out on the Adige river, owing to earthquake or lack of support at the toe, …).
 
Literatur
Zurück zum Zitat Arbanas, Ž., Fathani, T. F., Shoaei, Z., Chae, B. G., & Tommasi, P. (2014a). Introduction: Monitoring, prediction and warning of landslides. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 2, pp. 539–544). Berlin, Heidelberg: Springer. Arbanas, Ž., Fathani, T. F., Shoaei, Z., Chae, B. G., & Tommasi, P. (2014a). Introduction: Monitoring, prediction and warning of landslides. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 2, pp. 539–544). Berlin, Heidelberg: Springer.
Zurück zum Zitat Arbanas, S. M., Komac, M., Gokceoglu, C., & Paulin G. L. (2014b). Introduction: Landslide inventories and databases. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 2, pp. 783–785). Berlin, Heidelberg: Springer. Arbanas, S. M., Komac, M., Gokceoglu, C., & Paulin G. L. (2014b). Introduction: Landslide inventories and databases. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 2, pp. 783–785). Berlin, Heidelberg: Springer.
Zurück zum Zitat Arosio, D., Longoni, L., Papini, M., & Zanzi, L. (2014). Analysis of microseismic activity within unstable rock slopes. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 141–154). Berlin, Heidelberg: Springer. Arosio, D., Longoni, L., Papini, M., & Zanzi, L. (2014). Analysis of microseismic activity within unstable rock slopes. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 141–154). Berlin, Heidelberg: Springer.
Zurück zum Zitat Azzoni, A., Chiesa, S., Frassoni, A., & Govi, M. (1992). The Valpola landslide. Engineering Geology, 33(1), 59–70.CrossRef Azzoni, A., Chiesa, S., Frassoni, A., & Govi, M. (1992). The Valpola landslide. Engineering Geology, 33(1), 59–70.CrossRef
Zurück zum Zitat Barazzetti, L., Gianinetto, M., & Scaioni, M. (2014). A new approach to satellite time series co-registration for landslide monitoring. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 233–249). Berlin, Heidelberg: Springer. Barazzetti, L., Gianinetto, M., & Scaioni, M. (2014). A new approach to satellite time series co-registration for landslide monitoring. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 233–249). Berlin, Heidelberg: Springer.
Zurück zum Zitat Barbarella, M., Fiani, M., & Lugli, A. (2014). Multi-temporal terrestrial laser scanning survey of a landslide. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 89–121). Berlin, Heidelberg: Springer. Barbarella, M., Fiani, M., & Lugli, A. (2014). Multi-temporal terrestrial laser scanning survey of a landslide. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 89–121). Berlin, Heidelberg: Springer.
Zurück zum Zitat Betti, B., Sansò, F., & Crespi, M. (2001). Deformation detection according to a Bayesian approach. In B. Benciolini (Ed.), IV Hotine-Marussi Symposium on Mathematical Geodesy, IAG Symposia (Vol. 122, pp. 83–88). Berlin, Heidelberg: Springer. doi:10.1007/978-3-642-56677-6_12. Betti, B., Sansò, F., & Crespi, M. (2001). Deformation detection according to a Bayesian approach. In B. Benciolini (Ed.), IV Hotine-Marussi Symposium on Mathematical Geodesy, IAG Symposia (Vol. 122, pp. 83–88). Berlin, Heidelberg: Springer. doi:10.​1007/​978-3-642-56677-6_​12.
Zurück zum Zitat Crosetto, M., Crippa, B., Biescas, E., Monserrat, O., Agudo, M., & Fernández, P. (2005). State-of-the-art of land deformation monitoring using SAR interferometry. Photogrammetrie Fernerkundung Geoinformation, 6, 497–510. Crosetto, M., Crippa, B., Biescas, E., Monserrat, O., Agudo, M., & Fernández, P. (2005). State-of-the-art of land deformation monitoring using SAR interferometry. Photogrammetrie Fernerkundung Geoinformation, 6, 497–510.
Zurück zum Zitat Dai, Z., & Huang, Y. (2014). The state of the art of SPH modelling for flow-slide propagation. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 155–164). Berlin, Heidelberg: Springer. Dai, Z., & Huang, Y. (2014). The state of the art of SPH modelling for flow-slide propagation. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 155–164). Berlin, Heidelberg: Springer.
Zurück zum Zitat Del Ventisette, C., Gigli, G., Tofani, V., Lu, P., & Casagli, N. (2014). Radar technologies for landslide detection, monitoring, early warning and emergency management. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 209–232). Berlin, Heidelberg: Springer. Del Ventisette, C., Gigli, G., Tofani, V., Lu, P., & Casagli, N. (2014). Radar technologies for landslide detection, monitoring, early warning and emergency management. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 209–232). Berlin, Heidelberg: Springer.
Zurück zum Zitat Eyo, E., Musa, T., Omar, K., Idris, KM., Bayrak, T., & Onuigbo, I. (2014). Application of low-cost tools and techniques for landslide monitoring. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 2, pp. 557–1562). Berlin, Heidelberg: Springer. Eyo, E., Musa, T., Omar, K., Idris, KM., Bayrak, T., & Onuigbo, I. (2014). Application of low-cost tools and techniques for landslide monitoring. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 2, pp. 557–1562). Berlin, Heidelberg: Springer.
Zurück zum Zitat Gokceoglu, C., & Sezer, E. (2009). A statistical assessment on international landslide literature (1945–2008). Landslides, 6, 345–352.CrossRef Gokceoglu, C., & Sezer, E. (2009). A statistical assessment on international landslide literature (1945–2008). Landslides, 6, 345–352.CrossRef
Zurück zum Zitat Grande, O., Trucco, P., Longoni, L., & Papini, M. (2008). A Bayesian-based decision support tool for assessing and managing rock fall disasters. In Proceedings of the International Conference on Building Education and Research: Building Resilience (BEAR 2008)’. Heritance Kandalama, Sri Lanka, February 11–15, 2008. Grande, O., Trucco, P., Longoni, L., & Papini, M. (2008). A Bayesian-based decision support tool for assessing and managing rock fall disasters. In Proceedings of the International Conference on Building Education and Research: Building Resilience (BEAR 2008)’. Heritance Kandalama, Sri Lanka, February 11–15, 2008.
Zurück zum Zitat Guzzetti, F., Mondini, A. C., Cardinali, M., Fiorucci, F., Santangelo, M., & Chang, K. T. (2012). Landslide inventory maps: New tools for an old problem. Earth Science Reviews, 112, 42–66.CrossRef Guzzetti, F., Mondini, A. C., Cardinali, M., Fiorucci, F., Santangelo, M., & Chang, K. T. (2012). Landslide inventory maps: New tools for an old problem. Earth Science Reviews, 112, 42–66.CrossRef
Zurück zum Zitat Hong, Y., He, X., Cerato, A., Zhang, K., Hong, Z., & Liao, Z. (2014). Predictability of a physically-based model for rainfall-induced shallow landslides: Model development and case studies. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 165–178). Berlin, Heidelberg: Springer. Hong, Y., He, X., Cerato, A., Zhang, K., Hong, Z., & Liao, Z. (2014). Predictability of a physically-based model for rainfall-induced shallow landslides: Model development and case studies. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 165–178). Berlin, Heidelberg: Springer.
Zurück zum Zitat Huang, R. Q., & Fan, X. M. (2013). The landslide story. Nature Geoscience, 6, 325–326.CrossRef Huang, R. Q., & Fan, X. M. (2013). The landslide story. Nature Geoscience, 6, 325–326.CrossRef
Zurück zum Zitat Huang, R. Q., Pei, X. J., Fan, X. M., Zhang, W. F., Li, S. G., & Li, B. L. (2012). The characteristics and failure mechanism of the largest landslide triggered by the Wenchuan earthquake, May 12, 2008, China. Landslides, 9, 131–142.CrossRef Huang, R. Q., Pei, X. J., Fan, X. M., Zhang, W. F., Li, S. G., & Li, B. L. (2012). The characteristics and failure mechanism of the largest landslide triggered by the Wenchuan earthquake, May 12, 2008, China. Landslides, 9, 131–142.CrossRef
Zurück zum Zitat Mantovani, F., Soeters, R., & van Westen, C. J. (1996). Remote sensing techniques for landslide studies and hazard zonation in Europe. Geomorphology, 15(2), 213–225.CrossRef Mantovani, F., Soeters, R., & van Westen, C. J. (1996). Remote sensing techniques for landslide studies and hazard zonation in Europe. Geomorphology, 15(2), 213–225.CrossRef
Zurück zum Zitat Mazzanti, P., Brunetti, A., & Bretschneider, A. (2014). A new approach based on terrestrial remote-sensing techniques for rock fall hazard assessment. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 69–87). Berlin, Heidelberg: Springer. Mazzanti, P., Brunetti, A., & Bretschneider, A. (2014). A new approach based on terrestrial remote-sensing techniques for rock fall hazard assessment. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 69–87). Berlin, Heidelberg: Springer.
Zurück zum Zitat Monserrat, O., Crosetto, M., & Luzi, G. (2014). A review of ground-based SAR interferometry for deformation measurement. ISPRS Journal of Photogrammetry and Remote Sensing, 93, 40–48.CrossRef Monserrat, O., Crosetto, M., & Luzi, G. (2014). A review of ground-based SAR interferometry for deformation measurement. ISPRS Journal of Photogrammetry and Remote Sensing, 93, 40–48.CrossRef
Zurück zum Zitat Nadim, F., Kalsnes, B., Solheim, A. (2014). Plenary: Progress of living with landslide risk in Europe. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 1, pp. 3–20). Berlin, Heidelberg: Springer. Nadim, F., Kalsnes, B., Solheim, A. (2014). Plenary: Progress of living with landslide risk in Europe. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 1, pp. 3–20). Berlin, Heidelberg: Springer.
Zurück zum Zitat Pirotti, F., Guarnieri, A., Masiero, A., Gregoretti, C., Degetto, M., & Vettore, A. (2014). Micro-scale landslide displacements detection using Bayesian methods applied to GNSS data. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 123–138). Berlin, Heidelberg: Springer. Pirotti, F., Guarnieri, A., Masiero, A., Gregoretti, C., Degetto, M., & Vettore, A. (2014). Micro-scale landslide displacements detection using Bayesian methods applied to GNSS data. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 123–138). Berlin, Heidelberg: Springer.
Zurück zum Zitat Previtali, M., Barazzetti, L., & Scaioni, M. (2014). Accurate 3D surface measurement of mountain slopes through a fully automated imaged-based technique. Earth Science Informatics, 7(2), 109–122.CrossRef Previtali, M., Barazzetti, L., & Scaioni, M. (2014). Accurate 3D surface measurement of mountain slopes through a fully automated imaged-based technique. Earth Science Informatics, 7(2), 109–122.CrossRef
Zurück zum Zitat Roncella, R., & Forlani, G. (2014). A fixed terrestrial photogrammetric system for landslide monitoring. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 43–67). Berlin, Heidelberg: Springer. Roncella, R., & Forlani, G. (2014). A fixed terrestrial photogrammetric system for landslide monitoring. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 43–67). Berlin, Heidelberg: Springer.
Zurück zum Zitat Sassa, K., Canuti, P., & Yin, Y. (2014). Landslide science for a safer geoenvironment (Vol. 2). Berlin, Heidelberg: Springer.CrossRef Sassa, K., Canuti, P., & Yin, Y. (2014). Landslide science for a safer geoenvironment (Vol. 2). Berlin, Heidelberg: Springer.CrossRef
Zurück zum Zitat Scaioni, M., Feng, Y., Lu, P., Qiao, G., Tong, X., Li, R., et al. (2014a). Close-range photogrammetric techniques for deformation measurement: Applications to landslides. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 13–41). Berlin, Heidelberg: Springer. Scaioni, M., Feng, Y., Lu, P., Qiao, G., Tong, X., Li, R., et al. (2014a). Close-range photogrammetric techniques for deformation measurement: Applications to landslides. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 13–41). Berlin, Heidelberg: Springer.
Zurück zum Zitat Scaioni, M., Longoni, L., Melillo, V., & Papini, M. (2014b). Remote sensing for landslide investigations: An overview on recent achievements and perspectives. Remote Sensing, 6(10), 9600–9652. doi:10.3390/rs6109600. Scaioni, M., Longoni, L., Melillo, V., & Papini, M. (2014b). Remote sensing for landslide investigations: An overview on recent achievements and perspectives. Remote Sensing, 6(10), 9600–9652. doi:10.​3390/​rs6109600.
Zurück zum Zitat Teunissen, P. J. G. (2000). Testing theory: An introduction. Series on mathematical geodesy and positioning. The Netherlands: Delft University Press. Teunissen, P. J. G. (2000). Testing theory: An introduction. Series on mathematical geodesy and positioning. The Netherlands: Delft University Press.
Zurück zum Zitat Tofani, V., Hong, Y., & Singhroy, V. (2014). Introduction: Remote sensing techniques for landslide mapping and monitoring. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 2, pp. 301–303). Berlin, Heidelberg: Springer. Tofani, V., Hong, Y., & Singhroy, V. (2014). Introduction: Remote sensing techniques for landslide mapping and monitoring. In K. Sassa et al. (Eds.), Landslide science for a safer geoenvironment (Vol. 2, pp. 301–303). Berlin, Heidelberg: Springer.
Zurück zum Zitat Van Westen, C. J., Castellanos, E., & Kuriakose, S. K. (2008). Spatial data for landslide susceptibility, hazard, and vulnerability assessment: An overview. Engineering Geology, 102, 112–131.CrossRef Van Westen, C. J., Castellanos, E., & Kuriakose, S. K. (2008). Spatial data for landslide susceptibility, hazard, and vulnerability assessment: An overview. Engineering Geology, 102, 112–131.CrossRef
Zurück zum Zitat Yin, Y. P., Wang, F. W., & Sun, P. (2009). Landslide hazards triggered by the 2008 Wenchuan earthquake, Sichuan, China. Landslides, 6(131), 151. Yin, Y. P., Wang, F. W., & Sun, P. (2009). Landslide hazards triggered by the 2008 Wenchuan earthquake, Sichuan, China. Landslides, 6(131), 151.
Zurück zum Zitat Zhang, L., Liao, M., Balz, T., Shi, X., & Jiang, Y. (2014). Monitoring landslide activities in the three gorges area with multi-frequency satellite SAR data sets. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 181–208). Berlin, Heidelberg: Springer. Zhang, L., Liao, M., Balz, T., Shi, X., & Jiang, Y. (2014). Monitoring landslide activities in the three gorges area with multi-frequency satellite SAR data sets. In M. Scaioni (Ed.), Modern technologies for landslide investigation and prediction (pp. 181–208). Berlin, Heidelberg: Springer.
Metadaten
Titel
Introduction
verfasst von
Marco Scaioni
Copyright-Jahr
2015
Verlag
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-662-45931-7_1