3,466
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Earthquake anomalies recognition through satellite and in-situ monitoring data

, &
Pages 1011-1032 | Received 15 Sep 2016, Accepted 11 Aug 2016, Published online: 17 Feb 2017

References

  • Ardeleanu L., Leydecker G., Bonjer K.-P., Busche H., Kaiser D., Schmitt T. (2005)—Probabilistic seismic hazard map for Romania as a basis for a new building code. Natural Hazards and Earth Systems Sciences, 5: 679–684. doi: https://doi.org/10.5194/nhess-5-679-2005.
  • Cervone G., Maekawa S., Singh R.P., Hayakawa M., Kafatos M., Shvets A. (2006)—Surface latent heat flux and nighttime LF anomalies prior to the Mw = 8.3 Tokachi-Oki Earthquake. Natural Hazards and Earth Systems Science, 6 (1): 109–114. doi: https://doi.org/10.5194/nhess-6-109-2006.
  • Chmyrev V., Smith A., Kataria D., Nesterov B., Owen C., Sammonds P., Sorokin V., Vallianatos F. (2013)—Detection and monitoring of earthquake precursors: TwinSat, a Russia-UK satellite project. Advance in Space Reserch, 52 (6): 1135–1145. doi: https://doi.org/10.1016/j.asr.2013.06.017.
  • Demetrescu C., Wilhelm H., Tumanian M., Nielsen S.B., Damian A., Dobrica V., Ene M. (2007)—Time dependent thermal state of the lithosphere in the foreland of the Eastern Carpathians bend- Insights from new geothermal measurements and modeling results. Geophysical Journal International, 170: 896–912. doi: https://doi.org/10.1111/j.1365-246X.2007.03408.X.
  • Dey S., Singh R.P. (2003)—Surface Latent Heat Flux As An Earthquake Precursor. Natural Hazards and Earth System Sciences, 3: 749–755. doi: https://doi.org/10.5194/nhess-3-749-2003.
  • Dobrovolsky I.P., Zubkov S.I., Miachkin V.I. (1979)—Estimation of the size of earthquake preparation zones. Pure Applied Geophysics, 117: 1025–1044, doi: https://doi.org/10.1007/BF00876083.
  • Dobrovolsky I.P., Gershenzon N.I., Gokhberg M.B., (1989)—Theory of electrokinetic effects occurring at the final stage in the preparation of a tectonic earthquake. Physics of Earth Planetary Interiors, 57: 144–156. https://doi.org/10.1016/0031-9201(89)90224-0.
  • Erdal Y., Knížová P.K., Georgieva K., Ward W. (2016)—A review of vertical coupling in the Atmosphere-Ionosphere system: Effects of waves, sudden stratospheric warmings, space weather, and of solar activity. Journal of Atmospheric and Solar-Terrestrial Physics, 141: 1–12. doi: https://doi.org/10.1016/j.jastp.2016.02.011.
  • Freund F. (2011)—Seeking out Earth's warning signals. Nature, 473 (7348): 452. doi: https://doi.org/10.1038/473452d.
  • Gruber A., Krueger A.F. (1984)—The status of the NOAA outgoing long wave radiation data set. Bulletin American Meteorology Society, 65 (9): 958–962. doi: https://doi.org/10.1175/1520-0477(1984)065<0958:TSOTNO>2.0.CO;2.
  • Martin M., Ritter J.R. (2005)—High-resolution teleseismic body-wave tomography beneath SE Romania. Implication for three-dimensional versus one dimensional crustal correction strategies with a new crustal velocity model. Geophysical Journal, 162: 448–460. doi: https://doi.org/10.1111/j.1365-246X.2005.02661.x.
  • NOAA KLM user's guide (2006)—Available online at: http://www2.ngdc.noaa.gov/docs/klm/html/c7/sec71.htm.
  • Ouzounov D., Freund F., (2004)—Mid-Infrared Emission Prior To Strong Earthquakes Analyzed By Remote Sensing Data. Advances in Space Research, 33: 268–273. doi: https://doi.org/10.1016/S0273-1177(03)00486-1.
  • Oth A., Wenzel F., Radulian M. (2007)—Source parameters of intermediate-depth Vrancea (Romania) earthquakes from empirical Green's functions modeling. Tectonophysics, 438: 33–56. doi: https://doi.org/10.1016/j.tecto.2007.02.016.
  • Pulinets S.A., Ouzounov D., Ciraolo L., Singh R., Cervone G., Leyva A., Dunajecka M., Kotsarenko A. (2006)—Thermal, Atmospheric and Ionospheric Anomalies around the Time of the Colima M7.8 Earthquake of 21 January 2003. Annales Geophysicae, 24: 835–849. doi: https://doi.org/10.5194/angeo-24-835-2006.
  • Saraf A.K., Choudhury S. (2004)—Satellite detects surface thermal anomalies associated with the Algerian earthquakes of May 2003. International Journal of Remote Sensing, 26: 2705–2713. doi: https://doi.org/10.1080/01431160310001642359.
  • Saraf A.K., Choudhury S. (2005)—NOAA-AVHRR detects thermal anomaly associated with the 26 January 2001 Bhuj earthquake, Gujrat, India. International Journal of Remote Sensing, 26: 1065–1073. doi: https://doi.org/10.1080/01431160310001642368.
  • Saraf A.K., Rawat V., Choudhury S., Dasgupta S., Das J. (2009)—Advances in understanding of the mechanism for generation of earthquake thermal precursors detected by satellites. International Journal of Applied Earth Observation and Geoinformation, 11: 373–379. doi: https://doi.org/10.1016/jjag.2009.07.003.
  • Singh R.P., Bhoi S., Sahoo A.K. (2001)—Surface manifestations after the Gujarat earthquake. Current Science, 80: 1376–1377.
  • Stanica D., Stanica D.A. (2010)—Constraints on Correlation between the Anomalous Behavior of Electromagnetic Normalized Functions (ENF) and the Intermediate Depth Seismic Events Occurred in Vrancea Zone (Romania). Terrestrial Atmospheric and Oceanic Sciences, 21: 675–683. doi: https://doi.org/10.3319/TAO.2009.09.09.01(T).
  • Takeshi S., Kanamori H., Yagi Y., Yamada M., Mori J. (2011)—Rebuilding seismology. Nature, 473: 146–148.
  • Tramutoli V., Cuomo V., Filizzola C., Pergola N., Pietrapertosa C. (2005)—Assessing the potential of thermal infrared satellite surveys for monitoring seismically active areas. The case of Kocaeli (Ýzmit) earthquake, August 17th, 1999. Remote Sensing of Environment, 96 (34): 409–426. doi: https://doi.org/10.1016/j.rse.2005.04.006.
  • Tronin A. (1996)—Satellite thermal survey-a new tool for the study of seismoactive regions. International Journal of Remote Sensing, 17: 1439–1455. doi: https://doi.org/10.1080/01431169608948716.
  • Tronin A.A., Molchanov O.A., Biagi P.F. (2004)—Thermal anomalies and well observations in Kamchatka. International Journal of Remote Sensing, 25: 2649–2655. doi: https://doi.org/10.1080/01431160410001665812.
  • Varotsos P.A., Sarlis N.V., Skordas E.S. (2011)—Scale-specific order parameter fluctuations of seismicity in natural time before main shocks. Europhysics Letters, 96: 59002. doi: https://doi.org/10.1209/0295-5075/96/59002.
  • Yusuf Y., Matsuko M., Yamazaki F. (2001)—Damage assessment after 2001 Gujarat earthquake using Landsat-7 Satellite Images. Journal of the Indian Society of India, 29: 17–22. doi: https://doi.org/10.1007/bf02989909.
  • Zoran M., Weber C. (2007)—Use of multi-temporal and multispectral satellite data for urban change detection analysis. Journal of Optoelectronics and Advanced Materials, 9 (6): 1926–1932.
  • Zoran M., (2012)—MODIS and NOAA-AVHRR land surface temperature data detects thermal anomaly preceding 11 March 2011 Tohoku earthquake. International Journal of Remote Sensing, 33 (21): 6805–6817. doi: https://doi.org/10.1080/01431161.2012.692833.
  • Zoran M., Savastru R., Savastru D. (2014)—Surveillance of Vrancea active seismic region in Romania through time series satellite data. Central European. Journal of Geosciences, 6 (2): 195–206. doi: https://doi.org/10.2478/s13533-012-0158-z.
  • Zoran M., Savastru R., Savastru D. (2012)—a-Radon levels assessment in relation with seismic events in Vrancea region. Journal of Radioanalytical and Nuclear Chemistry, 293 (2): 655–663. doi: https://doi.org/10.1007/s10967-012-1712-3.
  • Zoran M., Savastru R., Savastru D., Chitaru C., Baschir L., Tautan M. (2012b)—Monitoring of radon anomalies in South-Eastern part of Romania for earthquake surveillance. Journal of Radioanalytical and Nuclear Chemistry, 293 (3): 769–781. doi: https://doi.org/10.1007/s10967-012-1780-4.