Back to Search Start Over

Forecasting seismicity rate in the north-west Himalaya using rate and state dependent friction law.

Authors :
Chingtham, Prasanta
Prajapati, Sanjay K.
Gahalaut, Vineet K.
Chopra, Sumer
Singha Roy, Pareshnath
Source :
Geomatics, Natural Hazards & Risk. Dec2017, Vol. 8 Issue 2, p1643-1661. 19p. 1 Chart, 3 Graphs, 9 Maps.
Publication Year :
2017

Abstract

In this study, rate and state Coulomb stress transfer model is adopted to forecast the seismicity rate of earthquakes (MW ≥5) in the north-west Himalaya region within the testing period 2011–2013. Coulomb stress changes (ΔCFF), considered to be the most critical parameter in the model, exhibit stress increase in the whole study region, excluding the Chaman fault of the Kirthar range where significant stress shadow has been observed. The estimated background seismicity rate varies in the range 0.0–0.7 in the region, which is preoccupied by low aftershock duration of <50 years. Furthermore, a lowb-value that varies between 0.54 and 0.83 is observed in Kirthar ranges, Karakoram fault and Pamir-Hindukush region. However, areas like Hazara syntaxis of the northern Pakistan and northern Pamir of the Eurasian plate exhibit higherb-values in the range 1.23–1.74. Considering constant constitutive properties of the faults (i.e.Aσ = 0.05 MPa), our forecast model for variable ΔCFF and heterogeneousb-value successfully captures the observed seismicity rate of earthquakes. Results have been verified using statisticalS-test. However, the model fails to capture the observed seismicity rate during the period when reconstructed for averageb-value to be 0.86 and no change in ΔCFF (ΔCFF = 0). [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
19475705
Volume :
8
Issue :
2
Database :
Academic Search Index
Journal :
Geomatics, Natural Hazards & Risk
Publication Type :
Academic Journal
Accession number :
126496858
Full Text :
https://doi.org/10.1080/19475705.2017.1369168