[4895] | 1 | """Script for running a dam break simulation of UQ's dam break tank, |
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| 2 | focusing on a friction comparison. |
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| 3 | |
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| 4 | The simulation will |
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| 5 | form part of the ANUGA validation paper. |
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| 6 | |
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| 7 | Ole Nielsen and Duncan Gray, GA - 2006 |
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| 8 | |
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| 9 | """ |
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| 10 | |
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| 11 | |
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| 12 | #---------------------------------------------------------------------------- |
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| 13 | # Import necessary modules |
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| 14 | #---------------------------------------------------------------------------- |
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| 15 | |
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| 16 | # Standard modules |
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| 17 | import time |
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| 18 | from time import localtime, strftime |
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| 19 | import sys |
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| 20 | from shutil import copy |
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| 21 | from os import path, sep |
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| 22 | from os.path import dirname #, basename |
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| 23 | |
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| 24 | # Related major packages |
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| 25 | from anuga.shallow_water import Domain, Reflective_boundary, \ |
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| 26 | Dirichlet_boundary, Time_boundary, File_boundary |
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| 27 | from anuga.abstract_2d_finite_volumes.region import Set_region |
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| 28 | from anuga.fit_interpolate.interpolate import interpolate_sww2csv |
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| 29 | from anuga.shallow_water.data_manager import start_screen_catcher, \ |
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| 30 | copy_code_files |
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| 31 | |
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| 32 | |
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| 33 | # Scenario specific imports |
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| 34 | import project # Definition of file names and polygons |
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| 35 | import create_mesh |
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| 36 | |
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| 37 | |
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| 38 | def main(friction, is_trial_run=False): |
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| 39 | if is_trial_run is True: |
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| 40 | add = '_test' |
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| 41 | yieldstep = 1 |
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| 42 | finaltime = 31 |
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| 43 | else: |
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| 44 | add = '' |
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| 45 | yieldstep = 0.01 |
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| 46 | finaltime = 31 |
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| 47 | basename = 'zz' + add + str(friction) |
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| 48 | |
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| 49 | mesh_filename = project.mesh_filename + add + '.msh' |
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| 50 | |
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| 51 | #-------------------------------------------------------------------------- |
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| 52 | # Copy scripts to output directory and capture screen |
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| 53 | # output to file |
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| 54 | #-------------------------------------------------------------------------- |
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| 55 | |
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| 56 | |
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| 57 | if is_trial_run is False: |
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| 58 | start_screen_catcher('.', int(friction*100)) |
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| 59 | |
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| 60 | #------------------------------------------------------------------------- |
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| 61 | # Create the triangular mesh |
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| 62 | #------------------------------------------------------------------------- |
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| 63 | |
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| 64 | gate_position = 0.85 |
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| 65 | create_mesh.generate(mesh_filename, |
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| 66 | gate_position, |
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| 67 | is_coarse=is_trial_run) # this creates the mesh |
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| 68 | |
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| 69 | #------------------------------------------------------------------------- |
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| 70 | # Setup computational domain |
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| 71 | #------------------------------------------------------------------------- |
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| 72 | domain = Domain(mesh_filename, use_cache = False, verbose = True) |
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| 73 | |
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| 74 | |
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| 75 | print 'Number of triangles = ', len(domain) |
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| 76 | print 'The extent is ', domain.get_extent() |
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| 77 | print domain.statistics() |
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| 78 | |
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| 79 | |
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| 80 | domain.set_name(basename) |
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| 81 | domain.set_datadir('.') |
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| 82 | domain.set_quantities_to_be_stored(['stage', 'xmomentum', 'ymomentum']) |
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| 83 | domain.set_minimum_storable_height(0.01) |
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| 84 | #domain.set_store_vertices_uniquely(True) # for writting to sww |
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| 85 | |
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| 86 | #------------------------------------------------------------------------- |
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| 87 | # Setup initial conditions |
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| 88 | #------------------------------------------------------------------------- |
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| 89 | |
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| 90 | slope = 0.05 |
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| 91 | |
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| 92 | def elevation_tilt(x, y): |
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| 93 | return x*slope |
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| 94 | |
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| 95 | domain.set_quantity('stage', elevation_tilt) |
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| 96 | domain.set_quantity('friction', friction) |
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| 97 | domain.set_quantity('elevation',elevation_tilt) |
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| 98 | |
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| 99 | print 'Available boundary tags', domain.get_boundary_tags() |
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| 100 | domain.set_region('dam','stage',0.20, |
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| 101 | location = 'unique vertices') |
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| 102 | |
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| 103 | Br = Reflective_boundary(domain) |
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| 104 | Bd = Dirichlet_boundary([0,0,0]) # to drain the water out. |
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| 105 | domain.set_boundary( {'wall': Br, 'edge': Bd} ) |
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| 106 | |
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| 107 | #------------------------------------------------------------------------- |
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| 108 | # Evolve system through time |
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| 109 | #------------------------------------------------------------------------- |
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| 110 | t0 = time.time() |
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| 111 | |
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| 112 | for t in domain.evolve(yieldstep, finaltime): |
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| 113 | domain.write_time() |
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| 114 | |
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| 115 | print 'That took %.2f seconds' %(time.time()-t0) |
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| 116 | print 'finished' |
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| 117 | |
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| 118 | points = [[gate_position - 0.65,0.2], |
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| 119 | [gate_position - 0.55,0.2], |
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| 120 | [gate_position - 0.45,0.2], |
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| 121 | [gate_position - 0.35,0.2], |
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| 122 | [gate_position - 0.25,0.2] |
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| 123 | ] |
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| 124 | |
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| 125 | #------------------------------------------------------------------------- |
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| 126 | # Calculate gauge info |
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| 127 | #------------------------------------------------------------------------- |
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| 128 | |
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| 129 | interpolate_sww2csv(basename +".sww", |
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| 130 | points, |
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| 131 | basename + "_depth.csv", |
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| 132 | basename + "_velocity_x.csv", |
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| 133 | basename + "_velocity_y.csv") |
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| 134 | |
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| 135 | |
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| 136 | #------------------------------------------------------------- |
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| 137 | if __name__ == "__main__": |
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| 138 | for friction in [ 0.0, 0.01]: |
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| 139 | main(friction, is_trial_run = False) |
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| 140 | |
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