International audienceThe 2001 Kunlunshan earthquake was an extraordinary event that produced a 400-km-long surface rupture. Regional broadband recordings of this event provide an opportunity to accurately observe the speed at which a fault ruptures during an earthquake, which has important implications for seismic risk and for understanding earthquake physics. We determined that rupture propagated on the 400-km-long fault at an average speed of 3.7 to 3.9 km/s, which exceeds the shear velocity of the brittle part of the crust. Rupture started at sub–Rayleigh wave velocity and became supershear, probably approaching 5 km/s, after about 100 km of propagation
International audienceSupershear earthquake ruptures propagate faster than the shear wave velocity. ...
International audienceRecent observations of large continental strike-slip earthquakes show that dif...
International audienceRecent observations of large continental strike-slip earthquakes show that dif...
International audienceThe 2001 Kunlunshan earthquake was an extraordinary event that produced a 400-...
International audienceThe 2001 Kunlunshan earthquake was an extraordinary event that produced a 400-...
International audienceThe 2001 Kunlunshan earthquake was an extraordinary event that produced a 400-...
International audienceThe 2001 Kunlunshan earthquake was an extraordinary event that produced a 400-...
International audienceThe speed at which an earthquake rupture propagates affects its energy balance...
International audienceSeismic array based analysis of the major Kokoxili earthquake (Tibet, 14 Novem...
Earthquake rupture speeds exceeding the shear-wave velocity have been reported for several shallow s...
Earthquake rupture speeds exceeding the shear-wave velocity have been reported for several shallow s...
Earthquake rupture speeds exceeding the shear-wave velocity have been reported for several shallow s...
International audienceSupershear earthquake ruptures propagate faster than the shear wave velocity. ...
(Mw 8.7) are the largest subduction earthquakes that have ever been recorded on modern digital instr...
The speed at which an earthquake rupture propagates affects its energy balance and ground shaking im...
International audienceSupershear earthquake ruptures propagate faster than the shear wave velocity. ...
International audienceRecent observations of large continental strike-slip earthquakes show that dif...
International audienceRecent observations of large continental strike-slip earthquakes show that dif...
International audienceThe 2001 Kunlunshan earthquake was an extraordinary event that produced a 400-...
International audienceThe 2001 Kunlunshan earthquake was an extraordinary event that produced a 400-...
International audienceThe 2001 Kunlunshan earthquake was an extraordinary event that produced a 400-...
International audienceThe 2001 Kunlunshan earthquake was an extraordinary event that produced a 400-...
International audienceThe speed at which an earthquake rupture propagates affects its energy balance...
International audienceSeismic array based analysis of the major Kokoxili earthquake (Tibet, 14 Novem...
Earthquake rupture speeds exceeding the shear-wave velocity have been reported for several shallow s...
Earthquake rupture speeds exceeding the shear-wave velocity have been reported for several shallow s...
Earthquake rupture speeds exceeding the shear-wave velocity have been reported for several shallow s...
International audienceSupershear earthquake ruptures propagate faster than the shear wave velocity. ...
(Mw 8.7) are the largest subduction earthquakes that have ever been recorded on modern digital instr...
The speed at which an earthquake rupture propagates affects its energy balance and ground shaking im...
International audienceSupershear earthquake ruptures propagate faster than the shear wave velocity. ...
International audienceRecent observations of large continental strike-slip earthquakes show that dif...
International audienceRecent observations of large continental strike-slip earthquakes show that dif...