Inhaltsbereich
Publications
(Co) Author: Zschau, J.
(since 1996) [ All ]
| Paper (ISI journals) [54] |
Paper (further journals) [30] |
Book [3] |
Chapter in Book [24] |
Conference Paper [95] |
Report [7] |
Miscellaneous [54] |
All [267] |
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(2013 online first): Investigation of superstorm Sandy 2012 in a multi-disciplinary approach. Natural Hazards and Earth System Sciences Discussion, 1, 2, 625-679.
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(2013 online first): Fluid ascent and magma storage beneath Gunung Merapi revealed by multiscale seismic imaging. Journal of Volcanology and Geothermal Research.
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(2013): Location and magnitudes of earthquakes in Central Asia fro seismic intensity data: model calibration and validation. Geophysical Journal International, 192, 2, 710-724.
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(2013): The 2011 Mw 9.0 Tohoku Earthquake: Comparison of GPS and Strong‐Motion Data. Bulletin of the Seismological Society of America, 103, 1336-1347.
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(2013): On the origin of geochemical anomalies in ground waters induced by the Adana 1998 earthquake. Chemical Geology, 339, 177-186.
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(2012): Seismic hazard assessment in Central Asia: Outcomes from a site approach. Soil Dynamics and Earthquake Engineering, 37, 84-91.
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(2012): A wireless mesh sensing network for early warning. Journal of Network and Computer Applications, 35, 2, 538-547.
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(2012): Reply to 'Comment on 'Operational Earthquake Forecasting: Status of Knowledge and Guidelines for Implementation by Jordan et al. [2011]' by Stuart Crampin'. Annals of Geophysics, 55, 1, 13-15.| EDOC: 19686 | 10.4401/ag-5690 |
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(2012): Microzonation of Potenza (Southern Italy) in terms of spectral intensity ratio using joint analysis of earthquakes and ambient noise. Bulletin of Earthquake Engineering, 10, 2, 493-516.
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(2012): Estimating building inventory for rapid seismic vulnerability assessment: Towards an integrated approach based on mulit-source imaging. Soil Dynamics and Earthquake Engineering, 36, 70-83.
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(2011): Intensity prediction Equations for Central Asia. Geophysical Journal International, 187, 1, 327-337.
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(2011): Earthquake early warning as a tool for improving society's resilience and crisis response. Soil Dynamics and Earthquake Engineering, 31, 2, 267-270.
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(2011): Operational Earthquake Forecasting: State of Knowledge and Guidelines for Utilization. Annals of Geophysics, 54, 4.
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(2011): A generalized zero-lag cross-correlation approach for Rapid Earthquake Localization (REL): the example of the Istanbul Megacity Rapid Response System. Journal of Seismology, 15, 4, 557-578.
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(2011): Interferometric Analysis of Strong Ground Motion for Structural Health Monitoring: The example of the L'Aquila, Italy, Seismic Sequence of 2009. Bulletin of the Seismological Society of America, 101, 2, 635-651.
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(2011): Evaluation of proxies for seismic site conditions in large urban areas: the example of Santiago de Chile. Physics and Chemistry of the Earth, 36, 16, 1259-1266.
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(2011): Modelling basin effects on earthquake ground motion in the Santiago de Chile basin by a spectral element code. Geophysical Journal International, 187, 2, 929-945.
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(2011): The Armutlu network: An investigation on seismotectonic setting of Armutlu-Yalova-Gemlik and surrounding regions. Annals of Geophysics, 54, 1.| EDOC: 16929 | 10.4401/ag-4877 |
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(2011): Periodic and transient radon variations at the Tiberias hot spring, Israel during 2000-2005. Geochemical Journal, 45, 6, 473-482.| EDOC: 18093 |
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(2010): Towards an improved seismic risk scenario for Bishkek, Kyrgyz Republic. Soil Dynamics and Earthquake Engineering, 31, 3, 521-525.
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(2010): Suitability of rapid energy magnitude determinations for emergency response purposes. Geophysical Journal International, 180, 1, 361-374.
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(2010): Monitoring the response and the back-radiated energy of a building subjected to ambient vibration and impulsive action: the Falkenhof Tower (Potsdam, Germany). Bulletin of Earthquake Engineering, 8, 3, 705-722.
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(2010): Delamination or slab detachment beneath Vrancea? New arguments from local earthquake tomography. Geochemistry Geophysics Geosystems (G3), 11, Q03002.
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(2010): Determination of shallow S-wave attenuation by down-hole waveform deconvolution: a case study in Istanbul (Turkey). Geophysical Journal International, 181, 2, 1147-1158.
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(2010): Site Effects Assessment in Bishkek (Kyrgyzstan) Using Earthquake and Noise Recording Data. Bulletin of the Seismological Society of America, 100, 6, 3068-3082.
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(2010): Real time monitoring of structures in task force missions: the example of the Mw=6.3 Central Italy Earthquake, April 6, 2009. Natural Hazards, 52, 2, 253-256.
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(2010): GFZ Wireless Seismic Array (GFZ-WISE), a Wireless Mesh Network of Seismic Sensors: New Perspectives for Seismic Noise Array Investigations and Site Monitoring. Sensors, 10, 4, 3280-3304.
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(2010): Wireless technologies for the monitoring of strategic civil infrastructures: an ambient vibration test on the Fatih Sultan Mehmet Suspension Bridge in Istanbul, Turkey. Bulletin of Earthquake Engineering, 8, 3, 671-691.
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(2010): Shear wave velocity model of the Santiago de Chile basin derived from ambient noise measurements: A comparison of proxies for seismic site conditions and amplification. Geophysical Journal International, 182, 1, 355-367.
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(2009): Tsunami modeling of a submarine landslide in the Fram Strait. Geochemistry Geophysics Geosystems (G3), 10, 4.
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(2009): Open access? Reply. Nature geoscience, 2, 3, 155.| EDOC: 14545 | 10.1038/ngeo466 |
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(2009): The Ataköy vertical array (Turkey): insights into seismic wave propagatin in the shallow-most crustal layers by waveform deconvolution. Geophysical Journal International, 178, 3, 1649-1662.
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(2009): Site characterization by seismic noise in Istanbul, Turkey. Soil Dynamics and Earthquake Engineering, 29, 3, 469-482.
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(2009): A comparison of site response techniques using earthquake data and ambient seismic noise analysis in the large urban areas of Santiago de Chile. Geophysical Journal International, 178, 2, 713-728.
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(2009): Simultaneous magma and gas eruptions at three volanoes in southern Italy: an earthquake trigger?. Geology, 37, 3, 251-254.| EDOC: 14424 | 10.1130/G25396A |
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(2008): Land subsidence in Iran caused by widespread water reservoir overexploitation. Geophysical Research Letters, 35, L16403.
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(2008): Coseismic slip model of the 2007 August Pisco earthquake (Peru) as constrained by Wide Swath radar observations. Geophysical Journal International, 174, 3, 842-848.
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(2008): The 26 May 2006 magnitude 6.4 Yogyakarta earthquake south of Mt. Merapi volcano: did lahar deposits amplify ground shaking and thus lead to the disaster?. Geochemistry Geophysics Geosystems (G3), 9, Q05006.
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(2007): Land subsidence in Mashhad Valley, northeast Iran: results from InSAR, levelling and GPS. Geophysical Journal International, 168, 2, 518-526.
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(2007): Strain accumulation across the Gazikoy–Saros segment of the North Anatolian Fault inferred from Persistent Scatterer Interferometry and GPS measurements. Earth and Planetary Science Letters, 255, 3-4, 432-444.
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(2007): Rayleigh wave dispersion curves from seismological and engineering-geotechnical methods: a comparison at the Bornheim test site (Germany). Journal of Geophysics and Engineering, 4, 349-361.
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(2007): Risikokarten für Deutschland : Ergebnisse aus dem Center for Disaster Management and Risk Reduction Technology (CEDIM). GAiA - Ecological Perspectives in Science Humanities and Economics, 16, 4, 313-316.| EDOC: 10532 | PDF |
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(2006): Combination of precise leveling and InSAR data to constrain source parameters of the Mw = 6.5, 26 December 2003 Bam earthquake. Pure and Applied Geophysics, 163, 1, 1-18.
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(2006): Seismic risk mapping for Germany. Natural Hazards and Earth System Sciences (NHESS), 6, 4, 573-586.
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(2004): Implications of the 2003 Bingöl earthquake for the interaction between the North and East Anatolian fault systems. Bulletin of the Seismological Society of America, 94, 6, 2400-2606.| EDOC: 5887 | 10.1785/0120030194 |
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(2004): Modelling of hydrogeochemical anomalies induced by distant earthquakes. Geophysical Journal International, 157, 2, 717-726.
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(2004): The 2003 Bam (SE Iran) earthquake: precise source parameters from satellite radar Interferometry. Geophysical Journal International, 159, 3, 917-922.
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(2003): Calibration of an ML Scale in northwestern Turkey from 1999 Izmit aftershocks. Bulletin of the Seismological Society of America, 93, 5, 2289-2295.| EDOC: 3875 |
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(2003): Heterogeneous response of hydrogeological systems to the Izmit and Düzce (Turkey) earthquakes of 1999. Hydrogeology Journal, 11, 1, 113-121.| EDOC: 3921 |
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(2002): Time-dependent distributed afterslip on and deep below the Izmit earthquake rupture. Bulletin of the Seismological Society of America, 92, 1, 126-137.| EDOC: 3709 |
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(2002): Correlating variations of b values and crustal deformations during the 1990s may have pinpointed the rupture initiative of the Mw = 7.4 Izmit earthquake of 1999, August 17. Geophysical Journal International, 148, 1, 139-152.| EDOC: 3696 |
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(2002): A systematic test on precursory seismic quiescence in Armenia. Natural Hazards, 26, 3, 245-263.| EDOC: 3652 |
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(2001): Rupture processes of the 1999 August 17 Izmit and November 12, Düzce (Turkey) earthquakes. Geophysical Journal International, 144, 2, F1-F7.
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(2000): Seismic quiescence as an indicator for large earthquakes in a system of self-organized criticality. Geophysical Research Letters, 27, 5, 597-600.


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