2015/07/08 02:53:18 42.16 15.49 26.0 3.7 Italy
USGS Felt map for this earthquake
SLU Moment Tensor Solution ENS 2015/07/08 02:53:18:0 42.16 15.49 26.0 3.7 Italy Stations used: GE.MATE IV.ACER IV.BSSO IV.BULG IV.CAFE IV.CAMP IV.CDRU IV.CERA IV.CERT IV.CESX IV.CIGN IV.FDMO IV.FIAM IV.GUMA IV.LPEL IV.MA9 IV.MCEL IV.MCRV IV.MELA IV.MRB1 IV.MRVN IV.MSAG IV.MTCE IV.MTSN IV.PIGN IV.PTRJ IV.RMP IV.RNI2 IV.SGRT IV.SNTG IV.SRES IV.TRIV IV.VAGA IV.VITU IV.VULT MN.AQU MN.CUC OV.OVO Filtering commands used: cut o DIST/3.3 -30 o DIST/3.3 +70 rtr taper w 0.1 hp c 0.025 n 3 lp c 0.06 n 3 Best Fitting Double Couple Mo = 3.27e+21 dyne-cm Mw = 3.61 Z = 14 km Plane Strike Dip Rake NP1 60 60 80 NP2 259 31 107 Principal Axes: Axis Value Plunge Azimuth T 3.27e+21 73 305 N 0.00e+00 9 65 P -3.27e+21 14 157 Moment Tensor: (dyne-cm) Component Value Mxx -2.52e+21 Mxy 9.63e+20 Mxz 1.25e+21 Myy -2.72e+20 Myz -1.05e+21 Mzz 2.79e+21 -------------- ---------------------- ---------------------------- -----------###########-------- --------#####################----- ------###########################--- -----################################# ----#################################--# ---############ ##################---- ---############# T #################------ --############## ###############-------- -###############################---------- -#############################------------ ###########################------------- ########################---------------- ###################------------------- #############----------------------- ---------------------------------- -------------------- ------- ------------------- P ------ ---------------- --- -------------- Global CMT Convention Moment Tensor: R T P 2.79e+21 1.25e+21 1.05e+21 1.25e+21 -2.52e+21 -9.63e+20 1.05e+21 -9.63e+20 -2.72e+20 Details of the solution is found at http://www.eas.slu.edu/eqc/eqc_mt/MECH.IT/20150708025318/index.html |
STK = 60 DIP = 60 RAKE = 80 MW = 3.61 HS = 14.0
The NDK file is 20150708025318.ndk The waveform inversion is preferred.
The following compares this source inversion to others
SLU Moment Tensor Solution ENS 2015/07/08 02:53:18:0 42.16 15.49 26.0 3.7 Italy Stations used: GE.MATE IV.ACER IV.BSSO IV.BULG IV.CAFE IV.CAMP IV.CDRU IV.CERA IV.CERT IV.CESX IV.CIGN IV.FDMO IV.FIAM IV.GUMA IV.LPEL IV.MA9 IV.MCEL IV.MCRV IV.MELA IV.MRB1 IV.MRVN IV.MSAG IV.MTCE IV.MTSN IV.PIGN IV.PTRJ IV.RMP IV.RNI2 IV.SGRT IV.SNTG IV.SRES IV.TRIV IV.VAGA IV.VITU IV.VULT MN.AQU MN.CUC OV.OVO Filtering commands used: cut o DIST/3.3 -30 o DIST/3.3 +70 rtr taper w 0.1 hp c 0.025 n 3 lp c 0.06 n 3 Best Fitting Double Couple Mo = 3.27e+21 dyne-cm Mw = 3.61 Z = 14 km Plane Strike Dip Rake NP1 60 60 80 NP2 259 31 107 Principal Axes: Axis Value Plunge Azimuth T 3.27e+21 73 305 N 0.00e+00 9 65 P -3.27e+21 14 157 Moment Tensor: (dyne-cm) Component Value Mxx -2.52e+21 Mxy 9.63e+20 Mxz 1.25e+21 Myy -2.72e+20 Myz -1.05e+21 Mzz 2.79e+21 -------------- ---------------------- ---------------------------- -----------###########-------- --------#####################----- ------###########################--- -----################################# ----#################################--# ---############ ##################---- ---############# T #################------ --############## ###############-------- -###############################---------- -#############################------------ ###########################------------- ########################---------------- ###################------------------- #############----------------------- ---------------------------------- -------------------- ------- ------------------- P ------ ---------------- --- -------------- Global CMT Convention Moment Tensor: R T P 2.79e+21 1.25e+21 1.05e+21 1.25e+21 -2.52e+21 -9.63e+20 1.05e+21 -9.63e+20 -2.72e+20 Details of the solution is found at http://www.eas.slu.edu/eqc/eqc_mt/MECH.IT/20150708025318/index.html |
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The focal mechanism was determined using broadband seismic waveforms. The location of the event and the and stations used for the waveform inversion are shown in the next figure.
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The program wvfgrd96 was used with good traces observed at short distance to determine the focal mechanism, depth and seismic moment. This technique requires a high quality signal and well determined velocity model for the Green functions. To the extent that these are the quality data, this type of mechanism should be preferred over the radiation pattern technique which requires the separate step of defining the pressure and tension quadrants and the correct strike.
The observed and predicted traces are filtered using the following gsac commands:
cut o DIST/3.3 -30 o DIST/3.3 +70 rtr taper w 0.1 hp c 0.025 n 3 lp c 0.06 n 3The results of this grid search from 0.5 to 19 km depth are as follow:
DEPTH STK DIP RAKE MW FIT WVFGRD96 1.0 80 50 -90 3.40 0.4075 WVFGRD96 2.0 250 50 90 3.47 0.4033 WVFGRD96 3.0 210 40 15 3.47 0.3583 WVFGRD96 4.0 205 35 10 3.47 0.3760 WVFGRD96 5.0 210 25 20 3.56 0.4035 WVFGRD96 6.0 230 15 65 3.60 0.4498 WVFGRD96 7.0 235 20 75 3.62 0.4990 WVFGRD96 8.0 65 65 90 3.60 0.5513 WVFGRD96 9.0 65 65 85 3.60 0.5830 WVFGRD96 10.0 65 60 85 3.60 0.6052 WVFGRD96 11.0 65 60 85 3.60 0.6235 WVFGRD96 12.0 60 60 80 3.60 0.6353 WVFGRD96 13.0 60 60 80 3.61 0.6421 WVFGRD96 14.0 60 60 80 3.61 0.6444 WVFGRD96 15.0 60 60 80 3.64 0.6425 WVFGRD96 16.0 55 60 75 3.64 0.6399 WVFGRD96 17.0 55 60 70 3.64 0.6351 WVFGRD96 18.0 55 60 70 3.64 0.6288 WVFGRD96 19.0 55 60 70 3.64 0.6209 WVFGRD96 20.0 55 60 70 3.65 0.6114 WVFGRD96 21.0 55 60 65 3.65 0.6016 WVFGRD96 22.0 55 60 65 3.65 0.5908 WVFGRD96 23.0 55 55 65 3.65 0.5792 WVFGRD96 24.0 50 60 60 3.67 0.5670 WVFGRD96 25.0 50 60 60 3.67 0.5542 WVFGRD96 26.0 50 60 60 3.68 0.5405 WVFGRD96 27.0 50 60 60 3.69 0.5255 WVFGRD96 28.0 55 55 60 3.69 0.5098 WVFGRD96 29.0 55 55 60 3.70 0.4928
The best solution is
WVFGRD96 14.0 60 60 80 3.61 0.6444
The mechanism correspond to the best fit is
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The best fit as a function of depth is given in the following figure:
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The comparison of the observed and predicted waveforms is given in the next figure. The red traces are the observed and the blue are the predicted. Each observed-predicted component is plotted to the same scale and peak amplitudes are indicated by the numbers to the left of each trace. A pair of numbers is given in black at the right of each predicted traces. The upper number it the time shift required for maximum correlation between the observed and predicted traces. This time shift is required because the synthetics are not computed at exactly the same distance as the observed and because the velocity model used in the predictions may not be perfect. A positive time shift indicates that the prediction is too fast and should be delayed to match the observed trace (shift to the right in this figure). A negative value indicates that the prediction is too slow. The lower number gives the percentage of variance reduction to characterize the individual goodness of fit (100% indicates a perfect fit).
The bandpass filter used in the processing and for the display was
cut o DIST/3.3 -30 o DIST/3.3 +70 rtr taper w 0.1 hp c 0.025 n 3 lp c 0.06 n 3
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Focal mechanism sensitivity at the preferred depth. The red color indicates a very good fit to thewavefroms. Each solution is plotted as a vector at a given value of strike and dip with the angle of the vector representing the rake angle, measured, with respect to the upward vertical (N) in the figure. |
A check on the assumed source location is possible by looking at the time shifts between the observed and predicted traces. The time shifts for waveform matching arise for several reasons:
Time_shift = A + B cos Azimuth + C Sin Azimuth
The time shifts for this inversion lead to the next figure:
The derived shift in origin time and epicentral coordinates are given at the bottom of the figure.
The nnCIA used for the waveform synthetic seismograms and for the surface wave eigenfunctions and dispersion is as follows:
MODEL.01 C.It. A. Di Luzio et al Earth Plan Lettrs 280 (2009) 1-12 Fig 5. 7-8 MODEL/SURF3 ISOTROPIC KGS FLAT EARTH 1-D CONSTANT VELOCITY LINE08 LINE09 LINE10 LINE11 H(KM) VP(KM/S) VS(KM/S) RHO(GM/CC) QP QS ETAP ETAS FREFP FREFS 1.5000 3.7497 2.1436 2.2753 0.500E-02 0.100E-01 0.00 0.00 1.00 1.00 3.0000 4.9399 2.8210 2.4858 0.500E-02 0.100E-01 0.00 0.00 1.00 1.00 3.0000 6.0129 3.4336 2.7058 0.500E-02 0.100E-01 0.00 0.00 1.00 1.00 7.0000 5.5516 3.1475 2.6093 0.167E-02 0.333E-02 0.00 0.00 1.00 1.00 15.0000 5.8805 3.3583 2.6770 0.167E-02 0.333E-02 0.00 0.00 1.00 1.00 6.0000 7.1059 4.0081 3.0002 0.167E-02 0.333E-02 0.00 0.00 1.00 1.00 8.0000 7.1000 3.9864 3.0120 0.167E-02 0.333E-02 0.00 0.00 1.00 1.00 0.0000 7.9000 4.4036 3.2760 0.167E-02 0.333E-02 0.00 0.00 1.00 1.00
Here we tabulate the reasons for not using certain digital data sets
The following stations did not have a valid response files:
DATE=Wed Jul 8 06:17:43 CDT 2015