[cig-commits] r22792 - in seismo/2D/SPECFEM2D/trunk: DATA EXAMPLES EXAMPLES/anisotropic_zinc_crystal doc/USER_MANUAL src/meshfem2D src/specfem2D
dkomati1 at geodynamics.org
dkomati1 at geodynamics.org
Mon Sep 16 16:48:28 PDT 2013
Author: dkomati1
Date: 2013-09-16 16:48:28 -0700 (Mon, 16 Sep 2013)
New Revision: 22792
Added:
seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/
seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/Par_file
seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/SOURCE
seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/topoaniso.dat
Modified:
seismo/2D/SPECFEM2D/trunk/DATA/Par_file
seismo/2D/SPECFEM2D/trunk/DATA/SOURCE
seismo/2D/SPECFEM2D/trunk/doc/USER_MANUAL/manual_SPECFEM2D.pdf
seismo/2D/SPECFEM2D/trunk/doc/USER_MANUAL/manual_SPECFEM2D.tex
seismo/2D/SPECFEM2D/trunk/src/meshfem2D/meshfem2D.F90
seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_materials.f90
seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_parameter_file.F90
seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_regions.f90
seismo/2D/SPECFEM2D/trunk/src/meshfem2D/save_databases.f90
seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_energy.f90
seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_forces_acoustic.f90
seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_forces_viscoelastic.F90
seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_pressure.f90
seismo/2D/SPECFEM2D/trunk/src/specfem2D/define_external_model.f90
seismo/2D/SPECFEM2D/trunk/src/specfem2D/gmat01.f90
seismo/2D/SPECFEM2D/trunk/src/specfem2D/pml_init.F90
seismo/2D/SPECFEM2D/trunk/src/specfem2D/read_external_model.f90
seismo/2D/SPECFEM2D/trunk/src/specfem2D/specfem2D.F90
Log:
fixed the calculation of pressure in the case of an anisotropic material (it is then necessary to compute sigma_yy using additional c_IJ anisotropic parameters);
updated the manual and the Par_file accordingly;
added a new example: EXAMPLES/anisotropic_zinc_crystal;
also removed useless white spaces
Modified: seismo/2D/SPECFEM2D/trunk/DATA/Par_file
===================================================================
--- seismo/2D/SPECFEM2D/trunk/DATA/Par_file 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/DATA/Par_file 2013-09-16 23:48:28 UTC (rev 22792)
@@ -54,8 +54,8 @@
nrec = 11 # number of receivers
xdeb = 300. # first receiver x in meters
zdeb = 2200. # first receiver z in meters
-xfin = 3700. # last receiver x in meters (ignored if onlyone receiver)
-zfin = 2200. # last receiver z in meters (ignored if onlyone receiver)
+xfin = 3700. # last receiver x in meters (ignored if only one receiver)
+zfin = 2200. # last receiver z in meters (ignored if only one receiver)
enreg_surf_same_vertical = .true. # receivers inside the medium or at the surface
# display parameters
@@ -96,7 +96,7 @@
nbmodels = 4 # nb of different models
# define models as
# I: (model_number 1 rho Vp Vs 0 0 QKappa Qmu 0 0 0 0 0 0) or
-# II: (model_number 2 rho c11 c13 c15 c33 c35 c55 0 0 0 0 0 0) or
+# II: (model_number 2 rho c11 c13 c15 c33 c35 c55 c12 c23 c25 0 0 0) or
# III: (model_number 3 rhos rhof phi c kxx kxz kzz Ks Kf Kfr etaf mufr Qmu).
#
# For istropic elastic/acoustic material use I and set Vs to zero to make a given model acoustic, for anisotropic elastic use II,
@@ -104,11 +104,20 @@
#
# For anisotropic media in the most general 2D case we have the following convention for the stress-strain relationship:
# ! implement anisotropy in 2D
-# sigma_xx = c11*dux_dx + c15*(duz_dx + dux_dz) + c13*duz_dz
-# sigma_zz = c13*dux_dx + c35*(duz_dx + dux_dz) + c33*duz_dz
-# sigma_xz = c15*dux_dx + c55*(duz_dx + dux_dz) + c35*duz_dz
+# sigma_xx = c11*dux_dx + c13*duz_dz + c15*(duz_dx + dux_dz)
+# sigma_zz = c13*dux_dx + c33*duz_dz + c35*(duz_dx + dux_dz)
+# sigma_xz = c15*dux_dx + c35*duz_dz + c55*(duz_dx + dux_dz)
+# sigma_yy is not equal to zero in the plane strain formulation
+# but is used only in post-processing if needed,
+# to compute pressure for display or seismogram recording purposes
+# sigma_yy = c12*dux_dx + c23*duz_dz + c25*(duz_dx + dux_dz)
# where the notations are for instance duz_dx = d(Uz) / dx.
#
+# For anisotropic elastic media the last three parameters, c12 c23 c25, are used only when the user asks the code to compute pressure for display
+# or seismogram recording purposes. Thus, if you do not know these parameters for your anisotropic material and/or if you do not plan to display or record pressure you
+# can ignore them and set them to zero. When pressure is used these three parameters are needed because the code needs to compute sigma_yy,
+# which is not equal to zero in the plane strain formulation.
+#
1 1 2700.d0 3000.d0 1732.051d0 0 0 9999 9999 0 0 0 0 0 0
2 1 2500.d0 2700.d0 0 0 0 9999 9999 0 0 0 0 0 0
3 1 2200.d0 2500.d0 1443.375d0 0 0 9999 9999 0 0 0 0 0 0
Modified: seismo/2D/SPECFEM2D/trunk/DATA/SOURCE
===================================================================
--- seismo/2D/SPECFEM2D/trunk/DATA/SOURCE 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/DATA/SOURCE 2013-09-16 23:48:28 UTC (rev 22792)
@@ -1,7 +1,7 @@
# The components of a moment tensor source must be given in N.m, not in dyne.cm as in the DATA/CMTSOLUTION source file of the 3D version of the code.
# source 1
source_surf = .false. # source inside the medium or at the surface
-xs = 2500. # source location x in meters
+xs = 2500. # source location x in meters
zs = 2500. # source location z in meters
# source type: elastic force or acoustic pressure = 1 or moment tensor = 2;
# for a plane wave including converted and reflected waves at the free surface, P wave = 1, S wave = 2, Rayleigh wave = 3
Added: seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/Par_file
===================================================================
--- seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/Par_file (rev 0)
+++ seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/Par_file 2013-09-16 23:48:28 UTC (rev 22792)
@@ -0,0 +1,176 @@
+
+# title of job
+title = Test of anisotropic zinc crystal
+
+# forward or adjoint simulation
+SIMULATION_TYPE = 1 # 1 = forward, 3 = adjoint + kernels; 2 is purposely UNUSED (for compatibility with the numbering of our 3D codes)
+NOISE_TOMOGRAPHY = 0 # 0 = earthquake simulation, 1/2/3 = noise simulation
+SAVE_FORWARD = .false. # save the last frame, needed for adjoint simulation
+
+# parameters concerning partitioning
+nproc = 1 # number of processes
+partitioning_method = 3 # SCOTCH = 3, ascending order (very bad idea) = 1
+PERFORM_CUTHILL_MCKEE = .false. # perform inverse Cuthill-McKee (1969) optimization/permutation for mesh numbering (can be very costly and not very useful)
+
+ngnod = 4 # number of control nodes per element (4 or 9)
+initialfield = .false. # use a plane wave as source or not
+add_Bielak_conditions = .false. # add Bielak conditions or not if initial plane wave
+assign_external_model = .false. # define external earth model or not
+READ_EXTERNAL_SEP_FILE = .false. # Read external model from DATA/model_velocity.dat_input, or use routine
+ATTENUATION_VISCOELASTIC_SOLID = .false. # turn attenuation (viscoelasticity) on or off for non-poroelastic solid parts of the model
+ATTENUATION_PORO_FLUID_PART = .false. # turn viscous attenuation on or off for the fluid part of poroelastic parts of the model
+Q0 = 1 # quality factor for viscous attenuation
+freq0 = 10 # frequency for viscous attenuation
+p_sv = .true. # set the type of calculation (P-SV or SH/membrane waves)
+
+# time step parameters
+nt = 2000 # total number of time steps
+deltat = 55.e-9 # duration of a time step (see section "How to choose the time step" of the manual for how to do this)
+USER_T0 = 0.0d0 # use this t0 as earliest starting time rather than the automatically calculated one
+time_stepping_scheme = 1 # 1 = Newmark (2nd order), 2 = LDDRK4-6 (4th-order 6-stage low storage Runge-Kutta), 3 = classical RK4 4th-order 4-stage Runge-Kutta
+
+# source parameters
+NSOURCES = 1 # number of sources (source info read from DATA/CMTSOLUTION file)
+force_normal_to_surface = .false. # angleforce normal to surface (external mesh and curve file needed)
+
+# constants for attenuation
+N_SLS = 2 # number of standard linear solids for attenuation
+f0_attenuation = 5.196152422706633 # (Hz) relevant only if source is a Dirac or a Heaviside, otherwise it is f0 the dominant frequency of the source in the CMTSOLUTION file
+
+# receiver set parameters for seismograms
+seismotype = 1 # record 1=displ 2=veloc 3=accel 4=pressure 5=curl of displ 6=the fluid potential
+NSTEP_BETWEEN_OUTPUT_SEISMOS = 5000000 # every how many time steps we save the seismograms (costly, do not use a very small value; if you use a very large value that is larger than the total number of time steps of the run, the seismograms will automatically be saved once at the end of the run anyway)
+save_ASCII_seismograms = .true. # save seismograms in ASCII format or not
+save_binary_seismograms_single = .false. # save seismograms in single precision binary format or not (can be used jointly with ASCII above to save both)
+save_binary_seismograms_double = .false. # save seismograms in double precision binary format or not (can be used jointly with both flags above to save all)
+SU_FORMAT = .false. # output single precision binary seismograms in Seismic Unix format (adjoint traces will be read in the same format)
+subsamp_seismos = 1 # subsampling of the seismograms to create smaller files (but less accurately sampled in time)
+use_existing_STATIONS = .false. # use an existing STATION file found in ./DATA or create a new one from the receiver positions below in this Par_file
+nreceiversets = 1 # number of receiver sets
+anglerec = 0.d0 # angle to rotate components at receivers
+rec_normal_to_surface = .false. # base anglerec normal to surface (external mesh and curve file needed)
+save_ASCII_kernels = .true. # save sensitivity kernels in ASCII format (much bigger files, but compatible with current GMT scripts) or in binary format
+
+# first receiver set (repeat these 6 lines and adjust nreceiversets accordingly)
+nrec = 50 # number of receivers
+xdeb = 0.05 # first receiver x in meters
+zdeb = 0.2640 # first receiver z in meters
+xfin = 0.28 # last receiver x in meters (ignored if only one receiver)
+zfin = 0.2640 # last receiver z in meters (ignored if only one receiver)
+enreg_surf_same_vertical = .false. # receivers inside the medium or at the surface
+
+# display parameters
+NSTEP_BETWEEN_OUTPUT_INFO = 100 # every how many time steps we display information about the simulation (costly, do not use a very small value)
+####
+NSTEP_BETWEEN_OUTPUT_IMAGES = 100 # every how many time steps we draw JPEG or PostScript pictures of the simulation (costly, do not use a very small value)
+cutsnaps = 1. # minimum amplitude kept in % for the JPEG and PostScript snapshots; amplitudes below that are muted
+#### for JPEG color images ####
+output_color_image = .true. # output JPEG color image of the results every NSTEP_BETWEEN_OUTPUT_IMAGES time steps or not
+imagetype_JPEG = 2 # display 1=displ_Ux 2=displ_Uz 3=displ_norm 4=veloc_Vx 5=veloc_Vz 6=veloc_norm 7=accel_Ax 8=accel_Az 9=accel_norm 10=pressure
+factor_subsample_image = 1.0 # (double precision) factor to subsample color images output by the code (useful for very large models)
+POWER_DISPLAY_COLOR = 0.30d0 # non linear display to enhance small amplitudes in JPEG color images
+DRAW_SOURCES_AND_RECEIVERS = .true. # display sources as orange crosses and receivers as green squares in JPEG images or not
+DRAW_WATER_IN_BLUE = .true. # display acoustic layers as constant blue in JPEG images, because they likely correspond to water in the case of ocean acoustics or in the case of offshore oil industry experiments (if off, display them as greyscale, as for elastic or poroelastic elements, for instance for acoustic-only oil industry models of solid media)
+USE_SNAPSHOT_NUMBER_IN_FILENAME = .false. # use snapshot number in the file name of JPEG color snapshots instead of the time step (for instance to create movies in an easier way later)
+#### for PostScript snapshots ####
+output_postscript_snapshot = .true. # output Postscript snapshot of the results every NSTEP_BETWEEN_OUTPUT_IMAGES time steps or not
+imagetype_postscript = 1 # display 1=displ vector 2=veloc vector 3=accel vector; small arrows are displayed for the vectors
+meshvect = .true. # display mesh on PostScript plots or not
+modelvect = .false. # display velocity model on PostScript plots or not
+boundvect = .true. # display boundary conditions on PostScript plots or not
+interpol = .true. # interpolation of the PostScript display on a regular grid inside each spectral element, or use the non-evenly spaced GLL points
+pointsdisp = 6 # number of points in each direction for interpolation of PostScript snapshots (set to 1 for lower-left corner only)
+subsamp_postscript = 1 # subsampling of background velocity model in PostScript snapshots
+sizemax_arrows = 1.d0 # maximum size of arrows on PostScript plots in centimeters
+US_LETTER = .false. # use US letter or European A4 paper for PostScript plots
+####
+NSTEP_BETWEEN_OUTPUT_WAVE_DUMPS = 100 # every how many time steps we dump results of the simulation as ASCII or binary files (costly, do not use a very small value)
+output_wavefield_dumps = .false. # output wave field to a text file every NSTEP_BETWEEN_OUTPUT_TEXT_DUMPS time steps (creates very big files)
+imagetype_wavefield_dumps = 1 # display 1=displ vector 2=veloc vector 3=accel vector 4=pressure
+use_binary_for_wavefield_dumps = .false. # use ASCII or single-precision binary format for the wave field dumps
+####
+output_grid_Gnuplot = .false. # generate a GNUPLOT file containing the grid, and a script to plot it
+output_grid_ASCII = .false. # dump the grid in an ASCII text file consisting of a set of X,Y,Z points or not
+output_energy = .false. # compute and output total acoustic and elastic energy curves (slows down the code significantly)
+
+# velocity and density models
+nbmodels = 1 # nb of different models
+# define models as
+# I: (model_number 1 rho Vp Vs 0 0 QKappa Qmu 0 0 0 0 0 0) or
+# II: (model_number 2 rho c11 c13 c15 c33 c35 c55 c12 c23 c25 0 0 0) or
+# III: (model_number 3 rhos rhof phi c kxx kxz kzz Ks Kf Kfr etaf mufr Qmu).
+#
+# For istropic elastic/acoustic material use I and set Vs to zero to make a given model acoustic, for anisotropic elastic use II,
+# and for isotropic poroelastic material use III. The mesh can contain acoustic, elastic, and poroelastic models simultaneously.
+#
+# For anisotropic media in the most general 2D case we have the following convention for the stress-strain relationship:
+# ! implement anisotropy in 2D
+# sigma_xx = c11*dux_dx + c13*duz_dz + c15*(duz_dx + dux_dz)
+# sigma_zz = c13*dux_dx + c33*duz_dz + c35*(duz_dx + dux_dz)
+# sigma_xz = c15*dux_dx + c35*duz_dz + c55*(duz_dx + dux_dz)
+# sigma_yy is not equal to zero in the plane strain formulation
+# but is used only in post-processing if needed,
+# to compute pressure for display or seismogram recording purposes
+# sigma_yy = c12*dux_dx + c23*duz_dz + c25*(duz_dx + dux_dz)
+# where the notations are for instance duz_dx = d(Uz) / dx.
+#
+# For anisotropic elastic media the last three parameters, c12 c23 c25, are used only when the user asks the code to compute pressure for display
+# or seismogram recording purposes. Thus, if you do not know these parameters for your anisotropic material and/or if you do not plan to display or record pressure you
+# can ignore them and set them to zero. When pressure is used these three parameters are needed because the code needs to compute sigma_yy,
+# which is not equal to zero in the plane strain formulation.
+#
+1 2 7100. 16.5d10 5.d10 0 6.2d10 0 3.96d10 0 0 0 0 0 0
+
+# external mesh or not
+read_external_mesh = .false.
+
+# absorbing boundary active or not
+PML_BOUNDARY_CONDITIONS = .false.
+NELEM_PML_THICKNESS = 3
+ROTATE_PML_ACTIVATE = .false.
+ROTATE_PML_ANGLE = 30.
+STACEY_ABSORBING_CONDITIONS = .false.
+ADD_SPRING_TO_STACEY = .false.
+
+# for horizontal periodic conditions: detect common points between left and right edges
+ADD_PERIODIC_CONDITIONS = .false.
+
+# horizontal periodicity distance for periodic conditions
+PERIODIC_horiz_dist = 0.3597d0
+
+# grid point detection tolerance for periodic conditions
+PERIODIC_DETECT_TOL = 3.3334d-6
+
+#-----------------------------------------------------------------------------
+# PARAMETERS FOR EXTERNAL MESHING
+
+# data concerning mesh, when generated using third-party app (more info in README)
+# (see also absorbing_conditions above)
+mesh_file = ./DATA/Mesh_canyon/canyon_mesh_file # file containing the mesh
+nodes_coords_file = ./DATA/Mesh_canyon/canyon_nodes_coords_file # file containing the nodes coordinates
+materials_file = ./DATA/Mesh_canyon/canyon_materials_file # file containing the material number for each element
+free_surface_file = ./DATA/Mesh_canyon/canyon_free_surface_file # file containing the free surface
+absorbing_surface_file = ./DATA/Mesh_canyon/canyon_absorbing_surface_file # file containing the absorbing surface
+CPML_element_file = Elements_CPML_list # file containing the CPML element numbers
+tangential_detection_curve_file = ./DATA/courbe_eros_nodes # file containing the curve delimiting the velocity model
+
+#-----------------------------------------------------------------------------
+# PARAMETERS FOR INTERNAL MESHING
+
+# file containing interfaces for internal mesh
+interfacesfile = topoaniso.dat
+
+# geometry of the model (origin lower-left corner = 0,0) and mesh description
+xmin = 0.0d0 # abscissa of left side of the model
+xmax = 0.33 # abscissa of right side of the model
+nx = 60 # number of elements along X
+
+# absorbing boundary parameters (see absorbing_conditions above)
+absorbbottom = .false.
+absorbright = .false.
+absorbtop = .false.
+absorbleft = .false.
+
+# define the different regions of the model in the (nx,nz) spectral element mesh
+nbregions = 1 # nb of regions and model number for each
+1 60 1 60 1
Added: seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/SOURCE
===================================================================
--- seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/SOURCE (rev 0)
+++ seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/SOURCE 2013-09-16 23:48:28 UTC (rev 22792)
@@ -0,0 +1,17 @@
+# The components of a moment tensor source must be given in N.m, not in dyne.cm as in the DATA/CMTSOLUTION source file of the 3D version of the code.
+# source 1
+source_surf = .false. # source inside the medium or at the surface
+xs = 0.165 # source location x in meters
+zs = 0.165 # source location z in meters
+# source type: elastic force or acoustic pressure = 1 or moment tensor = 2;
+# for a plane wave including converted and reflected waves at the free surface, P wave = 1, S wave = 2, Rayleigh wave = 3
+# for a plane wave without converted nor reflected waves at the free surface, i.e. with the incident wave only, P wave = 4, S wave = 5
+source_type = 1
+time_function_type = 1 # Ricker = 1, first derivative = 2, Gaussian = 3, Dirac = 4, Heaviside = 5
+f0 = 170000. # dominant source frequency (Hz) if not Dirac or Heaviside
+tshift = 0.0 # time shift when multi sources (if one source, must be zero)
+anglesource = 0.0 # angle of the source (for a force only); for a plane wave, this is the incidence angle; for moment tensor sources this is unused
+Mxx = 1. # Mxx component (for a moment tensor source only)
+Mzz = 1. # Mzz component (for a moment tensor source only)
+Mxz = 0. # Mxz component (for a moment tensor source only)
+factor = 1.d10 # amplification factor
Added: seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/topoaniso.dat
===================================================================
--- seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/topoaniso.dat (rev 0)
+++ seismo/2D/SPECFEM2D/trunk/EXAMPLES/anisotropic_zinc_crystal/topoaniso.dat 2013-09-16 23:48:28 UTC (rev 22792)
@@ -0,0 +1,26 @@
+#
+# number of interfaces
+#
+ 2
+#
+# for each interface below, we give the number of points and then x,z for each point
+#
+#
+# interface number 1 (bottom of the mesh)
+#
+ 2
+ 0 0
+ 0.33 0
+#
+# interface number 2 (topography, top of the mesh)
+#
+ 2
+ 0 0.33
+ 0.33 0.33
+#
+# for each layer, we give the number of spectral elements in the vertical direction
+#
+#
+# layer number 1 (bottom layer)
+#
+ 60
Modified: seismo/2D/SPECFEM2D/trunk/doc/USER_MANUAL/manual_SPECFEM2D.pdf
===================================================================
--- seismo/2D/SPECFEM2D/trunk/doc/USER_MANUAL/manual_SPECFEM2D.pdf 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/doc/USER_MANUAL/manual_SPECFEM2D.pdf 2013-09-16 23:48:28 UTC (rev 22792)
@@ -4576,7 +4576,7 @@
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%%EOF
Modified: seismo/2D/SPECFEM2D/trunk/doc/USER_MANUAL/manual_SPECFEM2D.tex
===================================================================
--- seismo/2D/SPECFEM2D/trunk/doc/USER_MANUAL/manual_SPECFEM2D.tex 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/doc/USER_MANUAL/manual_SPECFEM2D.tex 2013-09-16 23:48:28 UTC (rev 22792)
@@ -893,9 +893,13 @@
%
\begin{verbatim}
! implement anisotropy in 2D
-sigma_xx = c11*dux_dx + c15*(duz_dx + dux_dz) + c13*duz_dz
-sigma_zz = c13*dux_dx + c35*(duz_dx + dux_dz) + c33*duz_dz
-sigma_xz = c15*dux_dx + c55*(duz_dx + dux_dz) + c35*duz_dz
+sigma_xx = c11*dux_dx + c13*duz_dz + c15*(duz_dx + dux_dz)
+sigma_zz = c13*dux_dx + c33*duz_dz + c35*(duz_dx + dux_dz)
+sigma_xz = c15*dux_dx + c35*duz_dz + c55*(duz_dx + dux_dz)
+! sigma_yy is not equal to zero in the plane strain formulation
+! but is used only in post-processing if needed,
+! to compute pressure for display or seismogram recording purposes
+sigma_yy = c12*dux_dx + c23*duz_dz + c25*(duz_dx + dux_dz)
\end{verbatim}
%
where the notations are for instance \texttt{duz\_dx = d(Uz) / dx}.
@@ -948,11 +952,17 @@
\item In section {\bf "\# define models...."}:\\
There are three possible types of models:\\
\texttt{I}: (model\_number 1 rho Vp Vs 0 0 QKappa Qmu 0 0 0 0 0 0) or\\
- \texttt{II}: (model\_number 2 rho c11 c13 c15 c33 c35 c55 0 0 0 0 0 0) or\\
+ \texttt{II}: (model\_number 2 rho c11 c13 c15 c33 c35 c55 c12 c23 c25 0 0 0) or\\
\texttt{III}: (model\_number 3 rhos rhof phi c kxx kxz kzz Ks Kf Kfr etaf mufr Qmu). \\
For istropic elastic/acoustic material use \texttt{I} and set Vs to zero to make a given model acoustic, for anisotropic elastic use \texttt{II},
and for isotropic poroelastic material use \texttt{III}. The mesh can contain acoustic, elastic, and poroelastic models simultaneously.
+
+For anisotropic elastic media the last three parameters, c12 c23 c25, are used only when the user asks the code to compute pressure for display
+or seismogram recording purposes. Thus, if you do not know these parameters for your anisotropic material and/or if you do not plan to display or record pressure you
+can ignore them and set them to zero. When pressure is used these three parameters are needed because the code needs to compute $\sigma_{yy}$,
+which is not equal to zero in the plane strain formulation.
+
rho\_s = solid density\\
rho\_f = fluid density\\
phi = porosity\\
Modified: seismo/2D/SPECFEM2D/trunk/src/meshfem2D/meshfem2D.F90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/meshfem2D/meshfem2D.F90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/meshfem2D/meshfem2D.F90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -457,7 +457,7 @@
endif
else
call read_regions(nbregion,nb_materials,icodemat,cp,cs, &
- rho_s,QKappa,Qmu,aniso3,aniso4,aniso5,aniso6,aniso7,aniso8, &
+ rho_s,QKappa,Qmu,aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,aniso9,aniso10,aniso11, &
nelmnts,num_material,nxread,nzread)
endif
Modified: seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_materials.f90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_materials.f90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_materials.f90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -43,7 +43,7 @@
!========================================================================
subroutine read_materials(nb_materials,icodemat,cp,cs, &
- aniso3,aniso4,aniso5,aniso6,aniso7,aniso8, &
+ aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,aniso9,aniso10,aniso11, &
QKappa,Qmu,rho_s,rho_f,phi,tortuosity, &
permxx,permxz,permzz,kappa_s,kappa_f,kappa_fr, &
eta_f,mu_fr)
@@ -58,7 +58,7 @@
integer, dimension(nb_materials) :: icodemat
double precision, dimension(nb_materials) :: rho_s,cp,cs, &
- aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,QKappa,Qmu
+ aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,aniso9,aniso10,aniso11,QKappa,Qmu
double precision, dimension(nb_materials) :: rho_f,phi,tortuosity,permxx,permxz,&
permzz,kappa_s,kappa_f,kappa_fr,eta_f,mu_fr
@@ -77,6 +77,9 @@
aniso6(:) = 0.d0
aniso7(:) = 0.d0
aniso8(:) = 0.d0
+ aniso9(:) = 0.d0
+ aniso10(:) = 0.d0
+ aniso11(:) = 0.d0
QKappa(:) = 9999.d0
Qmu(:) = 9999.d0
rho_s(:) = 0.d0
@@ -139,16 +142,10 @@
aniso6(i) = val4read
aniso7(i) = val5read
aniso8(i) = val6read
- QKappa(i) = val7read
- Qmu(i) = val8read
- cp(i) = sqrt(val4read/val0read)
- cs(i) = sqrt(val6read/val0read)
+ aniso9(i) = val7read
+ aniso10(i) = val8read
+ aniso11(i) = val9read
-! for Cs we use a less restrictive test because acoustic media have Cs exactly equal to zero
- if(rho_s(i) <= 0.00000001d0 .or. cp(i) <= 0.00000001d0 .or. cs(i) < 0.d0) &
- stop 'negative value of velocity or density'
- if(QKappa(i) <= 0.00000001d0 .or. Qmu(i) <= 0.00000001d0) stop 'non-positive value of QKappa or Qmu'
-
else
! poroelastic materials
@@ -200,7 +197,8 @@
else
print *,'Material #',i,' anisotropic'
print *,'rho,cp,cs = ',rho_s(i),cp(i),cs(i)
- print*,'c11,c13,c15,c33,c35,c55 = ',aniso3(i),aniso4(i),aniso5(i),aniso6(i),aniso7(i),aniso8(i)
+ print*,'c11,c13,c15,c33,c35,c55,c12,c23,c25 = ',aniso3(i),aniso4(i),aniso5(i),aniso6(i),aniso7(i),aniso8(i), &
+ aniso9(i),aniso10(i),aniso11(i)
print *,'QKappa,Qmu = ',QKappa(i),Qmu(i)
endif
print *
Modified: seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_parameter_file.F90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_parameter_file.F90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_parameter_file.F90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -116,7 +116,7 @@
integer :: nb_materials
integer, dimension(:),pointer :: icodemat
double precision, dimension(:),pointer :: rho_s,cp,cs, &
- aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,QKappa,Qmu
+ aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,aniso9,aniso10,aniso11,QKappa,Qmu
double precision, dimension(:),pointer :: rho_f,phi,tortuosity,permxx,permxz,&
permzz,kappa_s,kappa_f,kappa_fr,eta_f,mu_fr
@@ -435,6 +435,9 @@
allocate(aniso6(nb_materials))
allocate(aniso7(nb_materials))
allocate(aniso8(nb_materials))
+ allocate(aniso9(nb_materials))
+ allocate(aniso10(nb_materials))
+ allocate(aniso11(nb_materials))
allocate(QKappa(nb_materials))
allocate(Qmu(nb_materials))
allocate(rho_s(nb_materials))
@@ -451,7 +454,7 @@
allocate(mu_fr(nb_materials))
call read_materials(nb_materials,icodemat,cp,cs, &
- aniso3,aniso4,aniso5,aniso6,aniso7,aniso8, &
+ aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,aniso9,aniso10,aniso11, &
QKappa,Qmu,rho_s,rho_f,phi,tortuosity, &
permxx,permxz,permzz,kappa_s,kappa_f,kappa_fr, &
eta_f,mu_fr)
Modified: seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_regions.f90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_regions.f90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/meshfem2D/read_regions.f90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -43,7 +43,7 @@
!========================================================================
subroutine read_regions(nbregion,nb_materials,icodemat,cp,cs, &
- rho_s,QKappa,Qmu,aniso3,aniso4,aniso5,aniso6,aniso7,aniso8, &
+ rho_s,QKappa,Qmu,aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,aniso9,aniso10,aniso11, &
nelmnts,num_material,nxread,nzread)
! reads in material definitions in DATA/Par_file
@@ -54,7 +54,7 @@
integer :: nbregion,nb_materials
integer, dimension(nb_materials) :: icodemat
double precision, dimension(nb_materials) :: rho_s,cp,cs, &
- aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,QKappa,Qmu
+ aniso3,aniso4,aniso5,aniso6,aniso7,aniso8,aniso9,aniso10,aniso11,QKappa,Qmu
integer :: nelmnts
integer,dimension(nelmnts) :: num_material
@@ -128,6 +128,9 @@
print *,'c33 = ',aniso6(imaterial_number)
print *,'c35 = ',aniso7(imaterial_number)
print *,'c55 = ',aniso8(imaterial_number)
+ print *,'c12 = ',aniso9(imaterial_number)
+ print *,'c23 = ',aniso10(imaterial_number)
+ print *,'c25 = ',aniso11(imaterial_number)
print *,'rho = ',rho_s(imaterial_number)
print *,'QKappa = ',QKappa(imaterial_number)
print *,'Qmu = ',Qmu(imaterial_number)
Modified: seismo/2D/SPECFEM2D/trunk/src/meshfem2D/save_databases.f90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/meshfem2D/save_databases.f90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/meshfem2D/save_databases.f90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -271,7 +271,7 @@
nedges_elporo_coupled_loc,nnodes_tangential_curve
write(15,*) 'Material sets (num 1 rho vp vs 0 0 QKappa Qmu 0 0 0 0 0 0) or '
- write(15,*) '(num 2 rho c11 c13 c33 c44 QKappa Qmu 0 0 0 0 0 0) or '
+ write(15,*) '(num 2 rho c11 c13 c15 c33 c35 c55 c12 c23 c25 0 0 0) or '
write(15,*) '(num 3 rhos rhof phi c k_xx k_xz k_zz Ks Kf Kfr etaf mufr Qmu)'
do i=1,nb_materials
if (icodemat(i) == ISOTROPIC_MATERIAL) then
@@ -283,13 +283,13 @@
else
write(15,*) i,icodemat(i),rho_s(i), &
aniso3(i),aniso4(i),aniso5(i),aniso6(i),&
- aniso7(i),aniso8(i),QKappa(i),Qmu(i),0,0,0,0
+ aniso7(i),aniso8(i),aniso9(i),aniso10(i),aniso11(i),0,0,0
endif
enddo
write(15,*) 'Arrays kmato and knods for each bloc:'
-! DK DK add support for using pml in mpi mode with external mesh
+! DK DK add support for using pml in MPI mode with external mesh
! call write_partition_database(15, iproc, nspec, num_material, ngnod, 2)
call write_partition_database(15, iproc, nspec, num_material, region_pml_external_mesh, ngnod, 2)
Modified: seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_energy.f90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_energy.f90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_energy.f90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -49,7 +49,7 @@
elastic,poroelastic,hprime_xx,hprime_zz, &
nspec,nglob_acoustic,nglob_elastic,nglob_poroelastic, &
assign_external_model,kmato,poroelastcoef,density,porosity,tortuosity, &
- vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext, &
+ vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext, &
anisotropic,anisotropy,wxgll,wzgll,numat, &
pressure_element,vector_field_element,e1,e11, &
potential_dot_acoustic,potential_dot_dot_acoustic, &
@@ -92,7 +92,7 @@
double precision, dimension(4,3,numat) :: poroelastcoef
double precision, dimension(NGLLX,NGLLZ,nspec) :: vpext,vsext,rhoext
double precision, dimension(NGLLX,NGLLZ,nspec) :: c11ext,c15ext,c13ext, &
- c33ext,c35ext,c55ext
+ c33ext,c35ext,c55ext,c12ext,c23ext,c25ext
integer :: nglob_elastic
real(kind=CUSTOM_REAL), dimension(3,nglob_elastic) :: displ_elastic,veloc_elastic
@@ -345,7 +345,7 @@
xix,xiz,gammax,gammaz,ibool,hprime_xx,hprime_zz,nspec, &
nglob_acoustic,nglob_elastic,nglob_poroelastic,assign_external_model, &
numat,kmato,density,porosity,tortuosity,poroelastcoef,vpext,vsext,rhoext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy,ispec,e1,e11, &
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy,ispec,e1,e11, &
ATTENUATION_VISCOELASTIC_SOLID,Mu_nu1,Mu_nu2,N_SLS)
! compute velocity vector field in this element
Modified: seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_forces_acoustic.f90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_forces_acoustic.f90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_forces_acoustic.f90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -971,7 +971,7 @@
ispec = numabs(ispecabs)
if (is_PML(ispec)) then
- ispec_PML=spec_to_PML(ispec)
+ ispec_PML=spec_to_PML(ispec)
!--- left absorbing boundary
if(codeabs(IEDGE4,ispecabs)) then
i = 1
Modified: seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_forces_viscoelastic.F90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_forces_viscoelastic.F90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_forces_viscoelastic.F90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -49,7 +49,7 @@
deltatover2,deltatsquareover2,ibool,kmato,numabs,elastic,codeabs, &
accel_elastic,veloc_elastic,displ_elastic, &
density,poroelastcoef,xix,xiz,gammax,gammaz, &
- jacobian,vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy, &
+ jacobian,vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy, &
source_time_function,sourcearray,adj_sourcearrays,e1,e11, &
e13,e1_veloc,e11_veloc,e13_veloc,e1_accel,e11_accel,e13_accel,dux_dxl_n,duz_dzl_n,duz_dxl_n,dux_dzl_n, &
dvx_dxl_n,dvz_dzl_n,dvz_dxl_n,dvx_dzl_n,hprime_xx,hprimewgll_xx, &
@@ -112,10 +112,10 @@
real(kind=CUSTOM_REAL), dimension(3,nglob) :: accel_elastic,veloc_elastic,displ_elastic
double precision, dimension(2,numat) :: density
double precision, dimension(4,3,numat) :: poroelastcoef
- double precision, dimension(6,numat) :: anisotropy
+ double precision, dimension(9,numat) :: anisotropy
real(kind=CUSTOM_REAL), dimension(NGLLX,NGLLZ,nspec) :: xix,xiz,gammax,gammaz,jacobian
double precision, dimension(NGLLX,NGLLZ,nspec) :: vpext,vsext,rhoext
- double precision, dimension(NGLLX,NGLLZ,nspec) :: c11ext,c15ext,c13ext,c33ext,c35ext,c55ext
+ double precision, dimension(NGLLX,NGLLZ,nspec) :: c11ext,c15ext,c13ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext
real(kind=CUSTOM_REAL), dimension(NSOURCES,NSTEP,stage_time_scheme) :: source_time_function
real(kind=CUSTOM_REAL), dimension(NSOURCES,NDIM,NGLLX,NGLLZ) :: sourcearray
@@ -196,7 +196,7 @@
real(kind=CUSTOM_REAL) :: phinu1,phinu2,tauinvnu1,tauinvnu2,theta_n_u,theta_n_v
! for anisotropy
- double precision :: c11,c15,c13,c33,c35,c55
+ double precision :: c11,c15,c13,c33,c35,c55,c12,c23,c25
! for analytical initial plane wave for Bielak's conditions
double precision :: veloc_horiz,veloc_vert,dxUx,dzUx,dxUz,dzUz,traction_x_t0,traction_z_t0
@@ -685,7 +685,7 @@
rmemory_dux_dz(i,j,ispec_PML) = coef0 * rmemory_dux_dz(i,j,ispec_PML) &
+ PML_dux_dzl_new(i,j) * coef1 + PML_dux_dzl(i,j) * coef2
rmemory_duz_dx(i,j,ispec_PML) = coef0 * rmemory_duz_dx(i,j,ispec_PML) &
- + PML_duz_dxl_new(i,j) * coef1 + PML_duz_dxl(i,j) * coef2
+ + PML_duz_dxl_new(i,j) * coef1 + PML_duz_dxl(i,j) * coef2
rmemory_duz_dz(i,j,ispec_PML) = coef0 * rmemory_duz_dz(i,j,ispec_PML) &
+ PML_duz_dzl_new(i,j) * coef1 + PML_duz_dzl(i,j) * coef2
else
@@ -1023,6 +1023,9 @@
c33 = c33ext(i,j,ispec)
c35 = c35ext(i,j,ispec)
c55 = c55ext(i,j,ispec)
+ c12 = c12ext(i,j,ispec)
+ c23 = c23ext(i,j,ispec)
+ c25 = c25ext(i,j,ispec)
else
c11 = anisotropy(1,kmato(ispec))
c13 = anisotropy(2,kmato(ispec))
@@ -1030,12 +1033,15 @@
c33 = anisotropy(4,kmato(ispec))
c35 = anisotropy(5,kmato(ispec))
c55 = anisotropy(6,kmato(ispec))
+ c12 = anisotropy(7,kmato(ispec))
+ c23 = anisotropy(8,kmato(ispec))
+ c25 = anisotropy(9,kmato(ispec))
endif
! implement anisotropy in 2D
- sigma_xx = c11*dux_dxl + c15*(duz_dxl + dux_dzl) + c13*duz_dzl
- sigma_zz = c13*dux_dxl + c35*(duz_dxl + dux_dzl) + c33*duz_dzl
- sigma_xz = c15*dux_dxl + c55*(duz_dxl + dux_dzl) + c35*duz_dzl
+ sigma_xx = c11*dux_dxl + c13*duz_dzl + c15*(duz_dxl + dux_dzl)
+ sigma_zz = c13*dux_dxl + c33*duz_dzl + c35*(duz_dxl + dux_dzl)
+ sigma_xz = c15*dux_dxl + c35*duz_dzl + c55*(duz_dxl + dux_dzl)
endif
Modified: seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_pressure.f90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_pressure.f90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/specfem2D/compute_pressure.f90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -47,7 +47,7 @@
xix,xiz,gammax,gammaz,ibool,hprime_xx,hprime_zz,nspec, &
nglob,nglob_acoustic,nglob_elastic,nglob_poroelastic,assign_external_model, &
numat,kmato,density,porosity,tortuosity,poroelastcoef,vpext,vsext,rhoext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy,e1,e11, &
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy,e1,e11, &
ATTENUATION_VISCOELASTIC_SOLID,Mu_nu1,Mu_nu2,N_SLS)
! compute pressure in acoustic elements and in elastic elements
@@ -65,9 +65,9 @@
double precision, dimension(2,numat) :: density
double precision, dimension(numat) :: porosity,tortuosity
double precision, dimension(4,3,numat) :: poroelastcoef
- double precision, dimension(6,numat) :: anisotropy
+ double precision, dimension(9,numat) :: anisotropy
double precision, dimension(NGLLX,NGLLX,nspec) :: vpext,vsext,rhoext
- double precision, dimension(NGLLX,NGLLZ,nspec) :: c11ext,c15ext,c13ext,c33ext,c35ext,c55ext
+ double precision, dimension(NGLLX,NGLLZ,nspec) :: c11ext,c15ext,c13ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext
real(kind=CUSTOM_REAL), dimension(NGLLX,NGLLZ,nspec) :: xix,xiz,gammax,gammaz
@@ -106,7 +106,7 @@
xix,xiz,gammax,gammaz,ibool,hprime_xx,hprime_zz,nspec, &
nglob_acoustic,nglob_elastic,nglob_poroelastic,assign_external_model, &
numat,kmato,density,porosity,tortuosity,poroelastcoef,vpext,vsext,rhoext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy,ispec,e1,e11, &
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy,ispec,e1,e11, &
ATTENUATION_VISCOELASTIC_SOLID,Mu_nu1,Mu_nu2,N_SLS)
! use vector_field_display as temporary storage, store pressure in its second component
@@ -130,7 +130,7 @@
xix,xiz,gammax,gammaz,ibool,hprime_xx,hprime_zz,nspec, &
nglob_acoustic,nglob_elastic,nglob_poroelastic,assign_external_model, &
numat,kmato,density,porosity,tortuosity,poroelastcoef,vpext,vsext,rhoext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy,ispec,e1,e11, &
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy,ispec,e1,e11, &
ATTENUATION_VISCOELASTIC_SOLID,Mu_nu1,Mu_nu2,N_SLS)
! compute pressure in acoustic elements and in elastic elements
@@ -147,9 +147,9 @@
double precision, dimension(2,numat) :: density
double precision, dimension(numat) :: porosity,tortuosity
double precision, dimension(4,3,numat) :: poroelastcoef
- double precision, dimension(6,numat) :: anisotropy
+ double precision, dimension(9,numat) :: anisotropy
double precision, dimension(NGLLX,NGLLX,nspec) :: vpext,vsext,rhoext
- double precision, dimension(NGLLX,NGLLZ,nspec) :: c11ext,c15ext,c13ext,c33ext,c35ext,c55ext
+ double precision, dimension(NGLLX,NGLLZ,nspec) :: c11ext,c15ext,c13ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext
real(kind=CUSTOM_REAL), dimension(NGLLX,NGLLZ,nspec) :: xix,xiz,gammax,gammaz
@@ -200,7 +200,7 @@
real(kind=CUSTOM_REAL) :: mul_G,lambdal_G,lambdalplus2mul_G
! for anisotropy
- double precision :: c11,c15,c13,c33,c35,c55
+ double precision :: c11,c15,c13,c33,c35,c55,c12,c23,c25
! if elastic element
!
@@ -340,6 +340,9 @@
c33 = c33ext(i,j,ispec)
c35 = c35ext(i,j,ispec)
c55 = c55ext(i,j,ispec)
+ c12 = c12ext(i,j,ispec)
+ c23 = c23ext(i,j,ispec)
+ c25 = c25ext(i,j,ispec)
else
c11 = anisotropy(1,kmato(ispec))
c13 = anisotropy(2,kmato(ispec))
@@ -347,16 +350,20 @@
c33 = anisotropy(4,kmato(ispec))
c35 = anisotropy(5,kmato(ispec))
c55 = anisotropy(6,kmato(ispec))
+ c12 = anisotropy(7,kmato(ispec))
+ c23 = anisotropy(8,kmato(ispec))
+ c25 = anisotropy(9,kmato(ispec))
endif
duz_dxl = duz_dxi*xixl + duz_dgamma*gammaxl
dux_dzl = dux_dxi*xizl + dux_dgamma*gammazl
! implement anisotropy in 2D
- sigma_xx = c11*dux_dxl + c15*(duz_dxl + dux_dzl) + c13*duz_dzl
+ sigma_xx = c11*dux_dxl + c13*duz_dzl + c15*(duz_dxl + dux_dzl)
! sigma_yy is not equal to zero in a 2D medium because of the plane strain formulation
- sigma_yy = 0 !!!! 33333333333333333 YYYYYYYYYYYYYYYYYYYYYYYYY to define later
- sigma_zz = c13*dux_dxl + c35*(duz_dxl + dux_dzl) + c33*duz_dzl
+ if(c12 < 1.e-7 .or. c23 < 1.e-7) stop 'cannot compute pressure for an anisotropic material if c12 or c23 are zero'
+ sigma_yy = c12*dux_dxl + c23*duz_dzl + c25*(duz_dxl + dux_dzl)
+ sigma_zz = c13*dux_dxl + c33*duz_dzl + c35*(duz_dxl + dux_dzl)
endif
Modified: seismo/2D/SPECFEM2D/trunk/src/specfem2D/define_external_model.f90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/specfem2D/define_external_model.f90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/specfem2D/define_external_model.f90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -43,7 +43,7 @@
!========================================================================
subroutine define_external_model(coord,material_element,ibool,rho,vp,vs,QKappa_attenuation,Qmu_attenuation, &
- c11,c13,c15,c33,c35,c55,nspec,nglob)
+ c11,c13,c15,c33,c35,c55,c12,c23,c25,nspec,nglob)
implicit none
@@ -61,7 +61,7 @@
integer, dimension(NGLLX,NGLLZ,nspec), intent(in) :: ibool
double precision, dimension(NGLLX,NGLLZ,nspec), intent(out) :: rho,vp,vs,QKappa_attenuation,Qmu_attenuation, &
- c11,c15,c13,c33,c35,c55
+ c11,c15,c13,c33,c35,c55,c12,c23,c25
integer :: i,j,ispec,iglob
@@ -92,6 +92,9 @@
c33(i,j,ispec) = c11(i,j,ispec)
c35(i,j,ispec) = 0.d0
c55(i,j,ispec) = 75.3d9
+ c12(i,j,ispec) = 0.d0
+ c23(i,j,ispec) = 0.d0
+ c25(i,j,ispec) = 0.d0
else if(material_element(ispec) == 2) then
rho(i,j,ispec) = 2500.d0
@@ -105,6 +108,9 @@
c33(i,j,ispec) = 0.d0
c35(i,j,ispec) = 0.d0
c55(i,j,ispec) = 0.d0
+ c12(i,j,ispec) = 0.d0
+ c23(i,j,ispec) = 0.d0
+ c25(i,j,ispec) = 0.d0
else
write(IOUT,*) 'flag number in external model is equal to ',material_element(ispec)
@@ -125,7 +131,7 @@
!========================================================================
subroutine define_external_model_ak135f(coord,material_element,ibool,rho,vp,vs,QKappa_attenuation,Qmu_attenuation, &
- c11,c13,c15,c33,c35,c55,nspec,nglob)
+ c11,c13,c15,c33,c35,c55,c12,c23,c25,nspec,nglob)
implicit none
@@ -168,7 +174,7 @@
integer, dimension(NGLLX,NGLLZ,nspec), intent(in) :: ibool
double precision, dimension(NGLLX,NGLLZ,nspec), intent(out) :: rho,vp,vs,QKappa_attenuation,Qmu_attenuation, &
- c11,c15,c13,c33,c35,c55
+ c11,c15,c13,c33,c35,c55,c12,c23,c25
! number of layers in ak135-f
integer, parameter :: NR_AK135F_NO_MUD = 136
@@ -1101,6 +1107,9 @@
c33(:,:,:) = 0.d0
c35(:,:,:) = 0.d0
c55(:,:,:) = 0.d0
+ c12(:,:,:) = 0.d0
+ c23(:,:,:) = 0.d0
+ c25(:,:,:) = 0.d0
end subroutine define_external_model_ak135f
Modified: seismo/2D/SPECFEM2D/trunk/src/specfem2D/gmat01.f90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/specfem2D/gmat01.f90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/specfem2D/gmat01.f90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -54,7 +54,7 @@
integer :: numat,myrank,ipass
double precision :: density_array(2,numat),poroelastcoef(4,3,numat),porosity_array(numat)
- double precision :: aniso_array(6,numat),tortuosity_array(numat),permeability(3,numat)
+ double precision :: aniso_array(9,numat),tortuosity_array(numat),permeability(3,numat)
double precision :: QKappa_array(numat),Qmu_array(numat)
double precision :: f0,Q0,freq0
logical :: ATTENUATION_PORO_FLUID_PART
@@ -67,7 +67,7 @@
double precision :: cpIsquare,cpIIsquare,cssquare,mu_s,mu_fr,eta_f,lambda_s,lambda_fr
double precision :: val1,val2,val3,val4,val5,val6
double precision :: val7,val8,val9,val10,val11,val12,val0
- double precision :: c11,c13,c15,c33,c35,c55
+ double precision :: c11,c13,c15,c33,c35,c55,c12,c23,c25
double precision :: D_biot,H_biot,C_biot,M_biot
double precision :: w_c
integer in,n,indic
@@ -142,6 +142,9 @@
c33 = val4
c35 = val5
c55 = val6
+ c12 = val7
+ c23 = val8
+ c25 = val9
! P and S velocity
cp = sqrt(c33/density(1))
@@ -251,6 +254,9 @@
aniso_array(4,n) = c33
aniso_array(5,n) = c35
aniso_array(6,n) = c55
+ aniso_array(7,n) = c12
+ aniso_array(8,n) = c23
+ aniso_array(9,n) = c25
porosity_array(n) = 0.d0
else if (indic == 3) then
density_array(1,n) = density(1)
@@ -291,7 +297,7 @@
write(IOUT,300) n,cp,density(1),kappa,QKappa,Qmu
endif
else if(indic == 2) then ! elastic (anisotropic)
- write(IOUT,400) n,density(1),c11,c13,c15,c33,c35,c55
+ write(IOUT,400) n,density(1),c11,c13,c15,c33,c35,c55,c12,c23,c25
else if(indic == 3) then
! material is poroelastic (solid/fluid)
write(iout,500) n,sqrt(cpIsquare),sqrt(cpIIsquare),sqrt(cssquare)
@@ -346,7 +352,7 @@
'Qmu_attenuation. . . . . . . . . . .(Qmu) =',1pe15.8)
400 format(//5x,'-------------------------------------',/5x, &
- '-- Transverse anisotropic material --',/5x, &
+ '-- Anisotropic material --',/5x, &
'-------------------------------------',/5x, &
'Material set number. . . . . . . . (jmat) =',i6,/5x, &
'Mass density. . . . . . . . . . (density) =',1pe15.8,/5x, &
@@ -355,7 +361,10 @@
'c15 coefficient (Pascal). . . . . . (c15) =',1pe15.8,/5x, &
'c33 coefficient (Pascal). . . . . . (c33) =',1pe15.8,/5x, &
'c35 coefficient (Pascal). . . . . . (c35) =',1pe15.8,/5x, &
- 'c55 coefficient (Pascal). . . . . . (c55) =',1pe15.8,/5x)
+ 'c55 coefficient (Pascal). . . . . . (c55) =',1pe15.8,/5x, &
+ 'c12 coefficient (Pascal). . . . . . (c12) =',1pe15.8,/5x, &
+ 'c23 coefficient (Pascal). . . . . . (c23) =',1pe15.8,/5x, &
+ 'c25 coefficient (Pascal). . . . . . (c25) =',1pe15.8,/5x)
500 format(//5x,'----------------------------------------',/5x, &
'-- Poroelastic isotropic material --',/5x, &
Modified: seismo/2D/SPECFEM2D/trunk/src/specfem2D/pml_init.F90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/specfem2D/pml_init.F90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/specfem2D/pml_init.F90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -605,10 +605,10 @@
xmin = xmin_glob
zmin = zmin_glob
xmax = xmax_glob
- zmax = zmax_glob
+ zmax = zmax_glob
call MPI_BARRIER(MPI_COMM_WORLD,ier)
xorigin = xmin + (xmax - xmin)/2.d0
- zorigin = zmin + (zmax - zmin)/2.d0
+ zorigin = zmin + (zmax - zmin)/2.d0
#endif
thickness_PML_z_min_bottom=1.d30
@@ -634,14 +634,14 @@
thickness_PML_z_max_bottom=max(coord(2,ibool(i,j,ispec)),thickness_PML_z_max_bottom)
thickness_PML_z_min_bottom=min(coord(2,ibool(i,j,ispec)),thickness_PML_z_min_bottom)
endif
- endif
+ endif
!!!right case
if(coord(1,ibool(i,j,ispec)) > xorigin) then
if (region_CPML(ispec) == CPML_X_ONLY .or. region_CPML(ispec) == CPML_XY_ONLY) then
thickness_PML_x_max_right=max(coord(1,ibool(i,j,ispec)),thickness_PML_x_max_right)
thickness_PML_x_min_right=min(coord(1,ibool(i,j,ispec)),thickness_PML_x_min_right)
endif
- endif
+ endif
!!!top case
if(coord(2,ibool(i,j,ispec)) > zorigin) then
if (region_CPML(ispec) == CPML_Y_ONLY .or. region_CPML(ispec) == CPML_XY_ONLY) then
@@ -800,7 +800,7 @@
if(region_CPML(ispec) == CPML_Y_ONLY)then
d_x = 0.d0
alpha_x = 0.d0
- K_x = 1.d0
+ K_x = 1.d0
endif
endif
@@ -813,7 +813,7 @@
abscissa_in_PML = zval - zorigintop
if(abscissa_in_PML >= 0.d0) then
abscissa_normalized = abscissa_in_PML / thickness_PML_z_top
-
+
d_z = d0_z_top / damping_modified_factor * abscissa_normalized**NPOWER
! alpha_z = ALPHA_MAX_PML * (1.d0 - abscissa_normalized) &
@@ -831,7 +831,7 @@
if(region_CPML(ispec) == CPML_Y_ONLY)then
d_x = 0.d0
alpha_x = 0.d0
- K_x = 1.d0
+ K_x = 1.d0
endif
endif
@@ -862,7 +862,7 @@
if(region_CPML(ispec) == CPML_X_ONLY)then
d_z = 0.d0
alpha_z = 0.d0
- K_z = 1.d0
+ K_z = 1.d0
endif
endif
@@ -893,7 +893,7 @@
if(region_CPML(ispec) == CPML_X_ONLY)then
d_z = 0.d0
alpha_z = 0.d0
- K_z = 1.d0
+ K_z = 1.d0
endif
endif
Modified: seismo/2D/SPECFEM2D/trunk/src/specfem2D/read_external_model.f90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/specfem2D/read_external_model.f90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/specfem2D/read_external_model.f90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -43,7 +43,6 @@
!
!========================================================================
-
subroutine read_external_model(any_acoustic,any_elastic,any_poroelastic, &
elastic,poroelastic,anisotropic,nspec,nglob,N_SLS,ibool, &
f0_attenuation,inv_tau_sigma_nu1_sent,phi_nu1_sent, &
@@ -51,7 +50,7 @@
inv_tau_sigma_nu1,inv_tau_sigma_nu2,phi_nu1,phi_nu2,Mu_nu1,Mu_nu2,&
coord,kmato,rhoext,vpext,vsext, &
QKappa_attenuationext,Qmu_attenuationext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,READ_EXTERNAL_SEP_FILE)
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,READ_EXTERNAL_SEP_FILE)
implicit none
include "constants.h"
@@ -81,7 +80,7 @@
! for anisotropy
logical, dimension(nspec) :: anisotropic
- double precision, dimension(NGLLX,NGLLZ,nspec) :: c11ext,c13ext,c15ext,c33ext,c35ext,c55ext
+ double precision, dimension(NGLLX,NGLLZ,nspec) :: c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext
! Local variables
integer :: i,j,ispec,iglob
@@ -114,7 +113,7 @@
else
call define_external_model(coord,kmato,ibool,rhoext,vpext,vsext,QKappa_attenuationext,Qmu_attenuationext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,nspec,nglob)
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,nspec,nglob)
! check that the external model that has just been defined makes sense
do ispec = 1,nspec
Modified: seismo/2D/SPECFEM2D/trunk/src/specfem2D/specfem2D.F90
===================================================================
--- seismo/2D/SPECFEM2D/trunk/src/specfem2D/specfem2D.F90 2013-09-16 20:00:43 UTC (rev 22791)
+++ seismo/2D/SPECFEM2D/trunk/src/specfem2D/specfem2D.F90 2013-09-16 23:48:28 UTC (rev 22792)
@@ -509,7 +509,7 @@
! anisotropy parameters
logical :: all_anisotropic
- double precision :: c11,c13,c15,c33,c35,c55
+ double precision :: c11,c13,c15,c33,c35,c55,c12,c23,c25
logical, dimension(:), allocatable :: anisotropic
double precision, dimension(:,:), allocatable :: anisotropy
@@ -540,7 +540,7 @@
double precision, dimension(:,:,:), allocatable :: vpext,vsext,rhoext
double precision, dimension(:,:,:), allocatable :: QKappa_attenuationext,Qmu_attenuationext
- double precision, dimension(:,:,:), allocatable :: c11ext,c13ext,c15ext,c33ext,c35ext,c55ext
+ double precision, dimension(:,:,:), allocatable :: c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext
double precision, dimension(:,:,:), allocatable :: shape2D,shape2D_display
real(kind=CUSTOM_REAL), dimension(:,:,:), allocatable :: xix,xiz,gammax,gammaz,jacobian
@@ -1230,7 +1230,7 @@
allocate(Uxinterp(pointsdisp,pointsdisp))
allocate(Uzinterp(pointsdisp,pointsdisp))
allocate(density(2,numat))
- allocate(anisotropy(6,numat))
+ allocate(anisotropy(9,numat))
allocate(porosity(numat))
allocate(tortuosity(numat))
allocate(permeability(3,numat))
@@ -2083,9 +2083,7 @@
! to display acoustic elements
allocate(vector_field_display(3,nglob))
-! if(assign_external_model) then
-
-! note: so far, full external array needed/defined in subroutine calls
+ if(assign_external_model) then
allocate(vpext(NGLLX,NGLLZ,nspec))
allocate(vsext(NGLLX,NGLLZ,nspec))
allocate(rhoext(NGLLX,NGLLZ,nspec))
@@ -2097,17 +2095,25 @@
allocate(c33ext(NGLLX,NGLLZ,nspec))
allocate(c35ext(NGLLX,NGLLZ,nspec))
allocate(c55ext(NGLLX,NGLLZ,nspec))
-! else
-! allocate(vpext(1,1,1))
-! allocate(vsext(1,1,1))
-! allocate(rhoext(1,1,1))
-! allocate(c11ext(1,1,1))
-! allocate(c13ext(1,1,1))
-! allocate(c15ext(1,1,1))
-! allocate(c33ext(1,1,1))
-! allocate(c35ext(1,1,1))
-! allocate(c55ext(1,1,1))
-! endif
+ allocate(c12ext(NGLLX,NGLLZ,nspec))
+ allocate(c23ext(NGLLX,NGLLZ,nspec))
+ allocate(c25ext(NGLLX,NGLLZ,nspec))
+ else
+ allocate(vpext(1,1,1))
+ allocate(vsext(1,1,1))
+ allocate(rhoext(1,1,1))
+ allocate(QKappa_attenuationext(1,1,1))
+ allocate(Qmu_attenuationext(1,1,1))
+ allocate(c11ext(1,1,1))
+ allocate(c13ext(1,1,1))
+ allocate(c15ext(1,1,1))
+ allocate(c33ext(1,1,1))
+ allocate(c35ext(1,1,1))
+ allocate(c55ext(1,1,1))
+ allocate(c12ext(1,1,1))
+ allocate(c23ext(1,1,1))
+ allocate(c25ext(1,1,1))
+ endif
endif
@@ -2238,7 +2244,7 @@
inv_tau_sigma_nu1,inv_tau_sigma_nu2,phi_nu1,phi_nu2,Mu_nu1,Mu_nu2,&
coord,kmato,rhoext,vpext,vsext, &
QKappa_attenuationext,Qmu_attenuationext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,READ_EXTERNAL_SEP_FILE)
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,READ_EXTERNAL_SEP_FILE)
endif
!
@@ -5762,7 +5768,7 @@
deltatover2,deltatsquareover2,ibool,kmato,numabs,elastic,codeabs, &
accel_elastic,veloc_elastic,displ_elastic, &
density,poroelastcoef,xix,xiz,gammax,gammaz, &
- jacobian,vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy, &
+ jacobian,vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy, &
source_time_function,sourcearray,adj_sourcearrays, &
e1,e11,e13,e1_veloc,e11_veloc,e13_veloc,e1_accel,e11_accel,e13_accel,dux_dxl_n,duz_dzl_n,duz_dxl_n,dux_dzl_n, &
dvx_dxl_n,dvz_dzl_n,dvz_dxl_n,dvx_dzl_n,hprime_xx,hprimewgll_xx, &
@@ -5819,7 +5825,7 @@
deltatover2,deltatsquareover2,ibool,kmato,numabs,elastic,codeabs, &
b_accel_elastic,b_veloc_elastic,b_displ_elastic, &
density,poroelastcoef,xix,xiz,gammax,gammaz, &
- jacobian,vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy, &
+ jacobian,vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy, &
source_time_function,sourcearray,adj_sourcearrays, &
e1,e11,e13,e1_veloc,e11_veloc,e13_veloc,e1_accel,e11_accel,e13_accel,dux_dxl_n,duz_dzl_n,duz_dxl_n,dux_dzl_n, &
dvx_dxl_n,dvz_dzl_n,dvz_dxl_n,dvx_dzl_n,hprime_xx,hprimewgll_xx, &
@@ -6253,6 +6259,9 @@
c33 = c33ext(ii2,jj2,ispec_elastic)
c35 = c35ext(ii2,jj2,ispec_elastic)
c55 = c55ext(ii2,jj2,ispec_elastic)
+ c12 = c12ext(ii2,jj2,ispec_elastic)
+ c23 = c23ext(ii2,jj2,ispec_elastic)
+ c25 = c25ext(ii2,jj2,ispec_elastic)
else
c11 = anisotropy(1,kmato(ispec_elastic))
c13 = anisotropy(2,kmato(ispec_elastic))
@@ -6260,6 +6269,9 @@
c33 = anisotropy(4,kmato(ispec_elastic))
c35 = anisotropy(5,kmato(ispec_elastic))
c55 = anisotropy(6,kmato(ispec_elastic))
+ c12 = anisotropy(7,kmato(ispec_elastic))
+ c23 = anisotropy(8,kmato(ispec_elastic))
+ c25 = anisotropy(9,kmato(ispec_elastic))
endif
sigma_xx = sigma_xx + c11*dux_dxl + c15*(duz_dxl + dux_dzl) + c13*duz_dzl
@@ -6930,6 +6942,9 @@
c33 = c33ext(i,j,ispec_elastic)
c35 = c35ext(i,j,ispec_elastic)
c55 = c55ext(i,j,ispec_elastic)
+ c12 = c12ext(i,j,ispec_elastic)
+ c23 = c23ext(i,j,ispec_elastic)
+ c25 = c25ext(i,j,ispec_elastic)
else
c11 = anisotropy(1,kmato(ispec_elastic))
c13 = anisotropy(2,kmato(ispec_elastic))
@@ -6937,6 +6952,9 @@
c33 = anisotropy(4,kmato(ispec_elastic))
c35 = anisotropy(5,kmato(ispec_elastic))
c55 = anisotropy(6,kmato(ispec_elastic))
+ c12 = anisotropy(7,kmato(ispec_elastic))
+ c23 = anisotropy(8,kmato(ispec_elastic))
+ c25 = anisotropy(9,kmato(ispec_elastic))
endif
sigma_xx = c11*dux_dxl + c15*(duz_dxl + dux_dzl) + c13*duz_dzl
sigma_zz = c13*dux_dxl + c35*(duz_dxl + dux_dzl) + c33*duz_dzl
@@ -7869,7 +7887,7 @@
xix,xiz,gammax,gammaz,jacobian,ibool,elastic,poroelastic,hprime_xx,hprime_zz, &
nspec,nglob_acoustic,nglob_elastic,nglob_poroelastic, &
assign_external_model,kmato,poroelastcoef,density,porosity,tortuosity, &
- vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext, &
+ vpext,vsext,rhoext,c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext, &
anisotropic,anisotropy,wxgll,wzgll,numat, &
pressure_element,vector_field_element,e1,e11, &
potential_dot_acoustic,potential_dot_dot_acoustic, &
@@ -7925,7 +7943,7 @@
xix,xiz,gammax,gammaz,ibool,hprime_xx,hprime_zz,nspec, &
nglob_acoustic,nglob_elastic,nglob_poroelastic,assign_external_model, &
numat,kmato,density,porosity,tortuosity,poroelastcoef,vpext,vsext,rhoext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy,ispec,e1,e11, &
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy,ispec,e1,e11, &
ATTENUATION_VISCOELASTIC_SOLID,Mu_nu1,Mu_nu2,N_SLS)
else if(.not. elastic(ispec) .and. .not. poroelastic(ispec)) then
@@ -8716,7 +8734,7 @@
xix,xiz,gammax,gammaz,ibool,hprime_xx,hprime_zz,nspec, &
nglob,nglob_acoustic,nglob_elastic,nglob_poroelastic,assign_external_model, &
numat,kmato,density,porosity,tortuosity,poroelastcoef,vpext,vsext,rhoext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy,e1,e11, &
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy,e1,e11, &
ATTENUATION_VISCOELASTIC_SOLID,Mu_nu1,Mu_nu2,N_SLS)
else if(imagetype_JPEG == 10 .and. .not. p_sv) then
@@ -8934,7 +8952,7 @@
xix,xiz,gammax,gammaz,ibool,hprime_xx,hprime_zz,nspec, &
nglob,nglob_acoustic,nglob_elastic,nglob_poroelastic,assign_external_model, &
numat,kmato,density,porosity,tortuosity,poroelastcoef,vpext,vsext,rhoext, &
- c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,anisotropic,anisotropy,e1,e11, &
+ c11ext,c13ext,c15ext,c33ext,c35ext,c55ext,c12ext,c23ext,c25ext,anisotropic,anisotropy,e1,e11, &
ATTENUATION_VISCOELASTIC_SOLID,Mu_nu1,Mu_nu2,N_SLS)
else if(imagetype_wavefield_dumps == 4 .and. .not. p_sv) then
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