cngf-pf

continuum model for granular flows with pore-pressure dynamics
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1d_fd_simple_shear.1 (7350B)


      1 .Dd $Mdocdate$
      2 .Dt 1D_FD_SIMPLE_SHEAR 1
      3 .Os
      4 .Sh NAME
      5 .Nm 1d_fd_simple_shear
      6 .Nd simulate granular flows with pore-pressure dynamics
      7 .\" .Sh LIBRARY
      8 .\" For sections 2, 3, and 9 only.
      9 .\" Not used in OpenBSD.
     10 .Sh SYNOPSIS
     11 .Nm
     12 .Op Fl A Ar grain-nonlocal-ampl
     13 .Op Fl a Ar fluid-pressure-ampl
     14 .Op Fl b Ar grain-rate-dependence
     15 .Op Fl C Ar fluid-compressibility
     16 .Op Fl c Ar grain-cohesion
     17 .Op Fl D Ar fluid-diffusivity
     18 .Op Fl d Ar grain-size
     19 .Op Fl e Ar end-time
     20 .Op Fl F
     21 .Op Fl f Ar applied-shear-friction
     22 .Op Fl g Ar gravity-accel
     23 .Op Fl H Ar fluid-pressure-phase
     24 .Op Fl h
     25 .Op Fl I Ar file-interval
     26 .Op Fl i Ar fluid-viscosity
     27 .Op Fl K Ar dilatancy-constant
     28 .Op Fl k Ar fluid-permeability
     29 .Op Fl L Ar length
     30 .Op Fl l Ar applied-shear-vel-limit
     31 .Op Fl m Ar grain-friction
     32 .Op Fl N
     33 .Op Fl n Ar normal-stress
     34 .Op Fl O Ar fluid-pressure-top
     35 .Op Fl o Ar origo
     36 .Op Fl P Ar grain-compressibility
     37 .Op Fl p Ar grain-porosity
     38 .Op Fl q Ar fluid-pressure-freq
     39 .Op Fl R Ar fluid-density
     40 .Op Fl r Ar grain-density
     41 .Op Fl S Ar fluid-pressure-pulse-shape
     42 .Op Fl s Ar applied-shear-vel
     43 .Op Fl T
     44 .Op Fl t Ar curr-time
     45 .Op Fl U Ar resolution
     46 .Op Fl u Ar fluid-pulse-time
     47 .Op Fl V Ar bot-vel
     48 .Op Fl v
     49 .Op Fl Y Ar max-porosity
     50 .Op Fl y Ar min-porosity
     51 .Op name
     52 .Sh DESCRIPTION
     53 The
     54 .Nm
     55 utility simulates the coupled continuum dynamics of granular
     56 deformation and pore pressure.  The simulation space is one-dimensional
     57 and undergoes confined, simple shear at a pretedermined velocity
     58 or friction ratio.  The effective stress is modulated by pore-pressure
     59 dynamics when fluid dynamics are enabled.
     60 .Pp
     61 The arguments are as follows:
     62 .Bl -tag -width Ds
     63 .It Fl A Ar grain-nonlocal-ampl
     64 Amplitude of granular non-locality [-] (default 0.4).
     65 .It Fl a Ar fluid-pressure-ampl
     66 Amplitude of fluid-pressure perturbations [Pa] (default 0).
     67 Only relevant with fluid dynamics enabled
     68 .Fl ( F ) .
     69 .It Fl b Ar grain-rate-dependence
     70 Granular rate dependence beyond yield [-], (default 0.9377).
     71 .It Fl C Ar fluid-compressibility
     72 Fluid adiabatic compressibility [Pa^-1] (default 3.9e-10).
     73 Only relevant with fluid dynamics enabled
     74 .Fl ( F ) .
     75 .It Fl c Ar grain-cohesion
     76 Granular material cohesion [Pa] (default 0).
     77 .It Fl D Ar fluid-diffusivity
     78 Fluid diffusion coefficient [m^2/s] (default -1). Overrides fluid
     79 permeability (-k), grain compressibility (-P), fluid compressibility
     80 (-C), and fluid viscosity (-i). Do not use for transient simulations
     81 (-T).  Disabled when set to a negative value.
     82 .It Fl d Ar grain-size
     83 Granular material representative grain size [m] (default 0.04).
     84 .It Fl e Ar end-time
     85 Simulation end time [s] (default 1).
     86 .It Fl F
     87 Enable pore-space fluid dynamics.
     88 .It Fl f Ar applied-shear-friction
     89 Applied ratio between shear stress and normal stress at the top
     90 boundary [-] (default 0.45), overridden by
     91 .Fl s
     92 and
     93 .Fl l
     94 if these are set.
     95 .It Fl g Ar gravity-accel
     96 Gravity magnitude [m/s^2] (default 9.81).
     97 .It Fl H Ar fluid-pressure-phase
     98 Phase of fluid-pressure perturbations [s] (default 0).
     99 Only relevant with fluid dynamics enabled
    100 .Fl ( F ) .
    101 .It Fl h
    102 Show usage information.
    103 .It Fl I Ar file-interval
    104 Simulation time interval between writing output to disk [s] (default
    105 1.0).
    106 .It Fl i Ar fluid-viscosity
    107 Fluid dynamic viscosity [Pa*s] (1.787e-3).
    108 Only relevant with fluid dynamics enabled
    109 .Fl ( F ) .
    110 .It Fl K Ar dilatancy-constant
    111 Factor relating dilatancy and shear stress [TODO] (default 1.0).
    112 Only relevant with transient granular dynamics enabled
    113 .Fl ( T ) .
    114 .It Fl k Ar fluid-permeability
    115 Darcian intrinsic permeability of granular material [m^2] (default
    116 1.9e-15).
    117 Only relevant with fluid dynamics enabled
    118 .Fl ( F ) .
    119 .It Fl L Ar length
    120 Simulation domain length [m] (default 1).
    121 .It Fl l Ar applied-shear-vel-limit
    122 Upper limit to modeled shear velocity [m/s] (default nan), overrides
    123 .Fl f
    124 and
    125 .Fl s .
    126 .It Fl m Ar grain-friction
    127 Grain friction coefficient [-] (default 0.404026).
    128 .It Fl N
    129 Normalize output velocities to the range [0;1].
    130 .It Fl n Ar normal-stress
    131 Normal stress applied at the top boundary [Pa] (default 120e3).
    132 .It Fl O Ar fluid-pressure-top
    133 Fluid pressure applied at the top boundary [Pa] (default 0).
    134 Only relevant with fluid dynamics enabled
    135 .Fl ( F ) .
    136 .It Fl o Ar origo
    137 Simulation domain origo [m] (default 0).
    138 .It Fl P Ar grain-compressibility
    139 Granular material compressibility [Pa^-1] (default 1e-8).
    140 .It Fl p Ar grain-porosity
    141 Granular material porosity [-] (default 0.25).
    142 .It Fl q Ar fluid-pressure-freq
    143 Frequency of fluid-pressure perturbations [s^-1] (default 1).
    144 Only relevant with fluid dynamics enabled
    145 .Fl ( F ) .
    146 .It Fl R Ar fluid-density
    147 Fluid density [kg/m^3] (default 1000).
    148 Only relevant with fluid dynamics enabled
    149 .Fl ( F ) .
    150 .It Fl r Ar grain-density
    151 Granular material density [kg/m^3] (default 2600).
    152 .It Fl S Ar fluid-pressure-pulse-shape
    153 Shape of pulse perturbations in fluid pressure at the top boundary.
    154 Valid options are
    155 .Ar triangular
    156 (default) or
    157 .Ar square .
    158 Only relevant with fluid dynamics enabled
    159 .Fl ( F ) .
    160 .It Fl s Ar applied-shear-vel
    161 Shear the material under constant velocity [m/s] instead of a friction value.
    162 Overrides
    163 .Fl f
    164 and is overridden by
    165 .Fl l .
    166 .It Fl T
    167 Enable transient granular properties.
    168 .It Fl t Ar curr-time
    169 Simulation start time [s] (default 0).
    170 .It Fl U Ar resolution
    171 Numerical resolution of simulation domain [-] (default nan).  If
    172 not set, the cell size equals the grain size.
    173 .It Fl u Ar fluid-pulse-time
    174 Time of fluid-pressure pulse peak [s] (default nan).
    175 Only relevant with fluid dynamics enabled
    176 .Fl ( F ) .
    177 .It Fl V Ar bot-vel
    178 shear velocity at base [m/s] (default 0).
    179 .It Fl v
    180 Show version information.
    181 .It Fl Y Ar max-porosity
    182 Granular material porosity [-] at inertia number I=1 in transient
    183 simulations
    184 .Fl ( T ) 
    185 (default 0.55).
    186 .It Fl y Ar min-porosity
    187 Minimum granular material porosity [-] in transient simulations
    188 .Fl ( T )
    189 (default 0.20).
    190 .Pp
    191 .El
    192 The final simulation state is written to stdout, see
    193 .Sx OUTPUT FORMAT 
    194 for a description of the data format.
    195 .Sh OUTPUT FORMAT
    196 The output consists of the following tab-delimited fields, with one
    197 row per cell in the simulation domain:
    198 .Pp
    199 .Bl -enum -compact
    200 .It
    201 position [m]
    202 .It
    203 shear velocity [m/s]
    204 .It
    205 effective normal stress [Pa]
    206 .It
    207 fluid pressure [Pa]
    208 .It
    209 friction [-]
    210 .It
    211 shear strain rate [-]
    212 .It
    213 porosity [-]
    214 .It
    215 inertia number [-]
    216 .It
    217 shear stress [Pa]
    218 .El
    219 .Sh FILES
    220 If 
    221 .Ar name
    222 is set, the simulation state is written to files in the current
    223 directory named in the format
    224 .Pa <name>.outputDDDDD.txt .
    225 Here, DDDDD is a integer counter starting from 00000, and incrementing
    226 by 1 for each new file.  Each file contains the state at a single
    227 point in simulation time.  The output format is specified in the
    228 section
    229 .Sx OUTPUT FORMAT ,
    230 and output files are generated with the interval specified with
    231 .Fl I Ar file-interval .
    232 .Sh EXIT STATUS
    233 .Nm
    234 exits 0 on success, and >0 if a runtime error occurs:
    235 .Pp
    236 .Bl -tag -compact
    237 .It 0
    238 successful exit
    239 .It 1
    240 unspecified error
    241 .It 2
    242 .Xr pledge 2
    243 error (OpenBSD only)
    244 .It 10
    245 transient solver error
    246 .It 11
    247 fluid solver error
    248 .It 12
    249 granular solver error
    250 .It 20
    251 time step error
    252 .El
    253 .\" .Sh EXAMPLES
    254 .\" .Sh DIAGNOSTICS
    255 .\" For sections 1, 4, 6, 7, 8, and 9 printf/stderr messages only.
    256 .\" .Sh ERRORS
    257 .\" For sections 2, 3, 4, and 9 errno settings only.
    258 .Sh SEE ALSO
    259 .Xr max_depth_simple_shear 1
    260 .Xr shear_flux 1
    261 .Sh AUTHORS
    262 .An Anders Damsgaard Aq Mt anders@adamsgaard.dk