HR: 17:30h
AN: S24A-07 [Abstracts]
TI: The Dahuiyeh (Zarand, Iran) Earthquake of 22 February 2005, Ms6.5, A preliminary Field and
Seismological Observation
AU: * ZARE, M
EM: mzare@iiees.ac.ir
AF: IIEES, 26, Arghavan, North Dibaji, Farmanieh Tehran, Iran, Tehran, 19395
Iran (Islamic Republic of)
AB:
1. Introduction:
The Dahuiyeh earthquake 22/02/2005, has shocked a seismically active area in SW of Iran in Kerman Province. The region is
known by the previous earthquakes occurred in this region; specially the earthquake of 19 December 1977, Mw5.9
(Gisk-Bantangal, North of Zarand) which caused more than 500 life losses and was originated from the reactivation of the
Kuhbanan fault (a right-lateral strike slip fault with a length of about 100km). The recent earthquake caused a life loss of
more than 600 persons and more than 2000 injured people. Two villages of Dahuiyeh and Hutkan were demolished totally, where
the most of the life losses were observed. The damages in the village of Hutkan were corresponded to the location of the
village houses in a slop of about 45 degree. On the other hand the damages were amplified in the epicentral region due to a
heavy rain and snow fall, which caused heavier roofs, and more suitable conditions for collapse. The maximum intensity of
XIII-IX (EMS98) could be assigned to the macroseismic region.
2. Seismotectonic and source parameters
The recent earthquake of 22/02/2005 was originated evidently from the reactivation of Dahuiyeh fault, a compressional fault
that reaches to the Kuhbanan fault at the place of the Dahuiyeh village. The mechanism of the event was compressional
(according to Harvard) and compressional with a right-lateral strike slip component (according to NEIC report). The fault
plane had a dip towards north. The event was recorded in 12 stations of the IIEES national seismological network. A Mw6.5 was
estimated for the mainshock using the assessment of moment magnitude for the recorded accelerograms having acceptable signal
to noise ratio. A magnitude of Ms6.5 was estimated for this event according to the record obtained in Maku station with an
epicentral distance of about 1400km. The earthquake fault was observed along an previously mapped fault (Dahuiyeh fault)
having an east-west trend and making a surface fissure of about 2km length and of vertical displacements from 10 to 30cm. No
evident strike slip movement was observed along the surface fissures along the earthquake fault. The aftershocks were
continues about 6 months later mainly along the western end of the Dahuiyeh fault.
3. Damages
The damages due to this earthquake are mostly observed in Dahuiyeh and Hutkan. Most of the life losses are related to Hutkan,
where the rural houses were settled in about 45 degree slop. The some of the brick houses, however, seems to survive because
of their more resistant and according to their location in the flat part of the village. The macroseismic epicenter was
located in a region around Dahuiyeh and the region between Dahuiyeh and Hutkan.
4. Strong Motions
27 accelerograms are records during this earthquake with the epicentral distances of about 150km. The greatest peak
acceleration was obtained on a fault parallel component in Shirinrud station in an epicentral distance of 20km. An
amplification of around 0.7Hz is repeating in the H/V spectral ratios which might be related to the source effects. The
alluvial site conditions in Zarand (in an epicentral distance of 15km) might be related to the peak acceleration of 0.3
obtained on a horizontal component. The records obtained within an epicentral distance of less than 50km shows the peak
accelerations on the vertical component about two-third of greater horizontal component.
DE: 7230 Seismicity and tectonics (1207, 1217, 1240, 1242)
SC: Seismology [S]
MN: Fall Meeting 2005