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Monitoring Mount Sinabung in Indonesia Using Multi-Temporal InSAR 원문보기

대한원격탐사학회지 = Korean journal of remote sensing, v.33 no.1, 2017년, pp.37 - 46  

Lee, Chang-Wook (Division of Science Education, College of Education, Kangwon National University) ,  Lu, Zhong (Roy M Huffington Department of Earth Sciences, Southern Methodist University) ,  Kim, Jin Woo (Roy M Huffington Department of Earth Sciences, Southern Methodist University)

Abstract AI-Helper 아이콘AI-Helper

Sinabung volcano in Indonesia was formed due to the subduction between the Eurasian and Indo-Australian plates along the Pacific Ring of Fire. After being dormant for about 400 years, Sinabung volcano erupted on the 29th of August, 2010 and most recently on the 1st of November, 2016. We measured the...

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  • This study shows how the use of InSAR and time-series technique can facilitate the monitoring of dynamic processes on especially hazardous volcanoes. The spatially dense measurements of surface deformation help constrain the causes of the observed deformation and the magma plumbing system.
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참고문헌 (24)

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  8. Jung, H.S., D.T. Lee, Z. Lu, and J.S. Won, 2013b. Ionospheric Correction in SAR Interferogram by Multiple-Aperture Interferometry, IEEE Transactions on Geoscience and Remote Sensing, 51(5): 3191-3199. 

  9. Kriswati, E., H. Kuncoro, and I. Meilano, 2014. Low Rate of Sinabung Deformation Inferred by GPS Measurement, Proc. of AIP Conference, 4th International Symposium on Earthquake and Disaster Mitigation 2014, 1658(1): 050007-1-050007-8. 

  10. Lee, C.W., Z. Lu, O. Kwoun, and J. S. Won, 2008. Deformation of Augustine volcano, Alaska, 1992-2005, measured by ERS and ENVISAT SAR interferometry, Earth, planets and space, 60(5): 447-452. 

  11. Lee, C.W., Z. Lu, H.S. Jung, J.S. Won, and D. Dzurisin, 2011. Surface Deformation of Augustine Volcano (Alaska), 1992-2005, from Multiple-Interferogram Processing Using a Refined SBAS InSAR Approach, USGS Professional Papers, 1769, 453-465. 

  12. Lee, C.W., Z. Lu, and H.S. Jung, 2012. Simulation of time series surface deformation to validate multi-interferogram InSAR processing technique, International Journal of Remote Sensing, 33(22): 7075-7087. 

  13. Lu, Z., Masterlark, T., and Dzurisin, D., 2005. Interferometric Synthetic Aperture Radar (InSAR) Study of Okmok Volcano, Alaska, 1992-2003: Magma Supply Dynamics and Post-emplacement Lava Flow Deformation, Journal of Geophysical Research: Solid Earth, 110: B02403. 

  14. Lu, Z., J.W. Kim, H. Lee, C.K. Shum, J. Duan, M. Ibaraki, O. Akyilmaz, and C.H. Read, 2009. Helmand River Hydrologic Studies Using ALOS PALSAR InSAR and ENVISAT Altimetry, Marine Geodesy, 32(3): 320-333. 

  15. Lu, Z., Dzurisin, D., Biggs, J., Wicks, C., Jr, and McNutt, S., 2010. Ground surface deformation patterns, magma supply, and magma storage at Okmok volcano, Alaska, from InSAR analysis: 1. Intereruption deformation, 1997-2008, Journal of Geophysical Research: Solid Earth, 115(B5): B00B02. 

  16. Lu, Z. and D. Dzurisin, 2014. InSAR Imaging of Aleutian Volcanoes, Springer, Berlin Heidelberg. 

  17. Massonnet, D. and K.L. Feigl, 1998. Radar interferometry and its application to changes in the Earth's surface, Reviews of Geophysics, 36(4): 441-500. 

  18. Ng, A.H.M., H.C. Chang, L. Ge, C. Rizos, and M. Omura, 2009. Assessment of radar interferometry performance for ground subsidence monitoring due to underground mining, Earth Planets Space, (61): 733-745. 

  19. Pan, G. and D. Tang, 2010. Damage information derived from multi-sensor data of the Wenchuan Earthquake of May 2008, International Journal of Remote Sensing, 31(13): 3509-3519. 

  20. Philibosian, B. and M. Simon, 2011. A survey of volcanic deformation on Java using ALOS PALSAR interferometric time series, Geochemistry, Geophysics, Geosystems, 12(11): 1-20. 

  21. Pritchard, M. E. and M. Simons, 2004. Surveying volcanic arcs with satellite radar interferometry: The central Andes. Kamchatka, and beyond, GSA Today, 14(8): 4-11. 

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