Results 151 to 160 of about 5,972 (165)
28th September 2018 Mw 7.5 Sulawesi Supershear Earthquake, Indonesia: Ground effects and macroseismic intensity estimation using ESI-2007 scale [PDF]
The 28th September 2018 Sulawesi Supershear earthquake (MW 7.5) was one of the deadliest earthquakes in the recent history of Indonesia causing ~4000 causalities. The earthquake caused a ~ 177 km long surface rupture along the Palu-Karo fault. Apart from surface rupture, the earthquake caused extensive earthquake environmental effects (EEEs) around the
Sambit Prasanajit Naik a +12 more
exaly +4 more sources
Abstract Kashmir has a long written history of 5000 years, which provides a sketchy picture of historical earthquakes. In all, we collated details of 16 earthquakes from the historical scribes. Most of the earthquakes had their epicenters outside the Kashmir Valley.
Hamid Sana, Akhtar Alam
exaly +3 more sources
This comment raises some scientific concerns regarding one of a recent publications in Quaternary International entitled “Macroseismic intensity assessment of 1885 Baramulla Earthquake of northwestern Kashmir Himalaya, using the Environmental Seismic ...
Afroz Ahmad Shāh
exaly +3 more sources
Intensity Scale ESI 2007 for Assessing Earthquake Intensities
Earthquake intensity scales were introduced at the end of the nineteenth century (e.g., Rossi-Forel, Cancani, Mercalli) in order to characterize source parameters, damage distribution, and environmental impact of relevant seismic events.
Pablo G Silva +2 more
exaly +5 more sources
Some of the next articles are maybe not open access.
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Quaternary International, 2011
Fault slip-rates are of decisive importance for seismic hazard assessment. However, sensitivity analysis in geological fault slip-rate seismic hazard maps demonstrates that the uncertainty in the attenuation relationships is much higher than the implied uncertainty in slip-rates, so that even if more accurate slip-rate estimation is achieved, it would ...
Ioannis Papanikolaou
exaly +2 more sources
Fault slip-rates are of decisive importance for seismic hazard assessment. However, sensitivity analysis in geological fault slip-rate seismic hazard maps demonstrates that the uncertainty in the attenuation relationships is much higher than the implied uncertainty in slip-rates, so that even if more accurate slip-rate estimation is achieved, it would ...
Ioannis Papanikolaou
exaly +2 more sources
The 12 April 1998 Mw5.6 Krn Mountains earthquake with a maximum intensity of VII-VIII on the EMS-98 scale caused extensive environmental effects in the Julian Alps. The application of intensity scales based mainly on damage to buildings was limited in the epicentral area, because it is a high mountain area and thus very sparsely populated. On the other
Andrej Gosar
openaire +2 more sources
Intensity Reassessment of the 2017 Pohang Earthquake Mw = 5.4 (South Korea) Using ESI-07 Scale
The earthquake environmental effects (EEEs) around the epicentral area of the Pohang earthquake (Mw-5.4) that occurred on 15 November 2017 have been collected and classified using the Environmental Seismic Intensity Scale (ESI-07 scale) proposed by the ...
Sambit Prasanajit Naik +2 more
exaly +2 more sources
Intensity Prediction Equations Based on the Environmental Seismic Intensity (ESI-07) Scale: Application to Normal Fault Earthquakes [PDF]
Earthquake environmental effects may significantly contribute to the damage caused by seismic events; similar to ground motion, the environmental effects are globally stronger in the vicinity and decrease moving away from the epicenter or seismogenic ...
Marco Pizza +2 more
exaly +2 more sources
2007
The Environmental Seismic Intensity scale (ESI2007) is a new earthquake intensity scale only based on the effects triggered by the earthquake in the natural environment. The coseismic effects considered more diagnostic for intensity evaluation are surface faulting and tectonic uplift/subsidence (primary effects), landslides, ground cracks ...
MICHETTI AM +16 more
openaire +2 more sources
The Environmental Seismic Intensity scale (ESI2007) is a new earthquake intensity scale only based on the effects triggered by the earthquake in the natural environment. The coseismic effects considered more diagnostic for intensity evaluation are surface faulting and tectonic uplift/subsidence (primary effects), landslides, ground cracks ...
MICHETTI AM +16 more
openaire +2 more sources

