HR: 09:30h
AN: T11F-07 [Abstracts]
TI: Spatio-temporal distribution of energy radiation from low frequency tremor
AU: * Maeda, T
EM: maeda@bosai.go.jp
AF: National Research Institute for Earth Science and Disaster Prevention, 3-1, Tennodai,
Tsukuba, Ibaraki, 305-0006, Japan
AU: Obara, K
EM: obara@bosai.go.jp
AF: National Research Institute for Earth Science and Disaster Prevention, 3-1, Tennodai,
Tsukuba, Ibaraki, 305-0006, Japan
AB:
Recent fine-scale hypocenter locations of low frequency tremors (LFTs) estimated by cross-correlation technique
(Shelly et al. 2006; Maeda et al. 2006) and new finding of very low frequency earthquake (Ito et al. 2007) suggest
that these slow events occur at the plate boundary associated with slow slip events (Obara and Hirose, 2006).
However, the number of tremor detected by above technique is limited since continuous tremor waveforms are
too complicated. Although an envelope correlation method (ECM) (Obara, 2002) enables us to locate epicenters
of LFT without arrival time picks, however, ECM fails to locate LFTs precisely especially on the most active stage
of tremor activity because of the low-correlation of envelope amplitude. To reveal total energy release of LFT, here
we propose a new method for estimating the location of LFTs together with radiated energy from the tremor
source by using envelope amplitude. The tremor amplitude observed at NIED Hi-net stations in western Shikoku
simply decays in proportion to the reciprocal of the source-receiver distance after the correction of site-
amplification factor even though the phases of the tremor are very complicated. So, we model the observed mean
square envelope amplitude by time-dependent energy radiation with geometrical spreading factor. In the model,
we do not have origin time of the tremor since we assume that the source of the tremor continuously radiates the
energy. Travel-time differences between stations estimated by the ECM technique also incorporated in our
locating algorithm together with the amplitude information. Three-component 1-hour Hi-net velocity continuous
waveforms with a pass-band of 2-10 Hz are used for the inversion after the correction of site amplification factors
at each station estimated by coda normalization method (Takahashi et al. 2005) applied to normal earthquakes in
the region. The source location and energy are estimated by applying least square inversion to the 1-min window
iteratively. As a first application of our method, we estimated the spatio-temporal distribution of energy radiation
for 2006 May episodic tremor and slip event occurred in western Shikoku, Japan, region. Tremor location and
their radiated energy are estimated for every 1 minute. We counted the number of located LFTs and summed up
their total energy at each grid having 0.05-degree spacing at each day to figure out the spatio-temporal
distribution of energy release of tremors. The resultant spatial distribution of radiated energy is concentrated at a
specific region. Additionally, we see the daily change of released energy, both of location and amount, which
corresponds to the migration of tremor activity. The spatio-temporal distribution of energy radiation of tremors is in
good agreement with a spatio-temporal slip distribution of slow slip event estimated from Hi-net tiltmeter record
(Hirose et al. 2007). This suggests that small continuous tremors occur associated with a rupture process of
slow slip.
DE: 7215 Earthquake source observations (1240)
DE: 7218 Lithosphere (1236)
DE: 7230 Seismicity and tectonics (1207, 1217, 1240, 1242)
DE: 7240 Subduction zones (1207, 1219, 1240)
SC: Tectonophysics [T]
MN: 2007 Fall Meeting