[5001] | 1 | # -*- coding: cp1252 -*- |
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| 2 | """Common filenames and locations for topographic data, meshes and outputs. |
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| 3 | Also includes origin for slump scenario. |
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| 4 | """ |
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| 5 | |
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| 6 | from os import sep, environ, getenv, getcwd,umask |
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| 7 | from os.path import expanduser, basename |
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| 8 | from anuga.utilities.polygon import read_polygon, plot_polygons, polygon_area, is_inside_polygon, number_mesh_triangles |
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| 9 | import sys |
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| 10 | from anuga.coordinate_transforms.redfearn import degminsec2decimal_degrees |
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| 11 | from time import localtime, strftime, gmtime |
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| 12 | from anuga.utilities.system_tools import get_user_name, get_host_name |
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| 13 | |
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| 14 | codename = 'project.py' |
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| 15 | |
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| 16 | home = getenv('INUNDATIONHOME') + sep +'data'+sep #Sandpit's parent dir |
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| 17 | user = get_user_name() |
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| 18 | host = get_host_name() |
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| 19 | #needed when running using mpirun, mpirun doesn't inherit umask from .bashrc |
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| 20 | umask(002) |
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| 21 | |
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| 22 | |
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| 23 | #Making assumptions about the location of scenario data |
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| 24 | state = 'western_australia' |
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| 25 | scenario_name = 'broome' |
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| 26 | scenario = 'broome_tsunami_scenario_2006' |
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| 27 | |
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| 28 | #time stuff |
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| 29 | time = strftime('%Y%m%d_%H%M%S',gmtime()) #gets time for new dir |
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| 30 | build_time = time+'_build' |
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| 31 | run_time = time+'_run' |
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| 32 | |
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| 33 | #tide = -5.3 |
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| 34 | #tide = 0 |
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| 35 | tide = 4.9 |
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| 36 | |
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| 37 | #Maybe will try to make project a class to allow these parameters to be passed in. |
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| 38 | alpha = 0.1 |
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| 39 | friction=0.01 |
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| 40 | starttime=3600 |
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| 41 | finaltime=25000 |
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[5148] | 42 | setup='trial' |
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[5001] | 43 | source='dampier' |
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| 44 | |
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| 45 | if setup =='trial': |
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| 46 | print'trial' |
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| 47 | res_factor=10 |
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| 48 | time_thinning=48 |
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| 49 | yieldstep=240 |
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| 50 | if setup =='basic': |
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| 51 | print'basic' |
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| 52 | res_factor=4 |
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| 53 | time_thinning=12 |
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| 54 | yieldstep=120 |
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| 55 | if setup =='final': |
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| 56 | print'final' |
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| 57 | res_factor=1 |
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| 58 | time_thinning=4 |
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| 59 | yieldstep=60 |
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| 60 | |
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| 61 | dir_comment='_'+setup+'_'+str(tide)+'_'+str(source)+'_'+str(user) |
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| 62 | |
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| 63 | # onshore data from 30m DTED level 2 |
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| 64 | #onshore_name = 'Broome_topography_DLI' # original |
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| 65 | onshore_name = 'town_topo_10m' # original |
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| 66 | onshore_name1 = 'other_topo_250m' # original |
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| 67 | |
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| 68 | # offshore |
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| 69 | offshore_name = 'Broome_Bathymetry' |
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| 70 | #offshore_name1 = 'inferred_north' |
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| 71 | #offshore_name2 = 'inferred_south' |
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| 72 | offshore_name1 = 'north_250m' |
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| 73 | offshore_name2 = 'south_250m' |
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| 74 | offshore_name3 = 'cable_250m' |
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| 75 | coast_name = 'Broome_coastline' |
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| 76 | |
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| 77 | #final topo name |
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[5148] | 78 | combined_name ='broome_combined_elevation' |
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[5001] | 79 | combined_name1 ='broome_combined_elevation1' |
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| 80 | combined_name_unclipped1 ='broome_combined_elevation_unclipped1' |
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[5148] | 81 | combined_small_name = 'broome_combined_elevation_z51_reduced' |
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[5001] | 82 | |
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| 83 | anuga_dir = home+state+sep+scenario+sep+'anuga'+sep |
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| 84 | |
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| 85 | topographies_in_dir = home+state+sep+scenario+sep+'elevation_final'+sep+'points'+sep+'Feb07'+sep |
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| 86 | topographies_dir = anuga_dir+'topographies'+sep |
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| 87 | |
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| 88 | # input topo file location |
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| 89 | onshore_in_dir_name = topographies_in_dir + onshore_name |
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| 90 | onshore_in_dir_name1 = topographies_in_dir + onshore_name1 |
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| 91 | coast_in_dir_name = topographies_in_dir + coast_name |
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| 92 | offshore_in_dir_name = topographies_in_dir + offshore_name |
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| 93 | offshore_in_dir_name1 = topographies_in_dir + offshore_name1 |
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| 94 | offshore_in_dir_name2 = topographies_in_dir + offshore_name2 |
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| 95 | offshore_in_dir_name3 = topographies_in_dir + offshore_name3 |
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| 96 | |
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| 97 | onshore_dir_name = topographies_dir + onshore_name |
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| 98 | onshore_dir_name1 = topographies_dir + onshore_name1 |
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| 99 | coast_dir_name = topographies_dir + coast_name |
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| 100 | offshore_dir_name = topographies_dir + offshore_name |
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| 101 | offshore_dir_name1 = topographies_dir + offshore_name1 |
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| 102 | offshore_dir_name2 = topographies_dir + offshore_name2 |
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| 103 | offshore_dir_name3 = topographies_dir + offshore_name3 |
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| 104 | |
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| 105 | #final topo files |
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| 106 | combined_dir_name = topographies_dir + combined_name |
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| 107 | combined_dir_name_unclipped1 = topographies_dir + combined_name_unclipped1 |
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| 108 | combined_dir_name1 = topographies_dir + combined_name1 |
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| 109 | combined_small_name_dir = topographies_dir + combined_small_name |
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| 110 | |
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| 111 | meshes_dir = anuga_dir+'meshes'+sep |
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| 112 | meshes_dir_name = meshes_dir + scenario_name |
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| 113 | |
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| 114 | polygons_dir = anuga_dir+'polygons'+sep |
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| 115 | tide_dir = anuga_dir+'tide_data'+sep |
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| 116 | |
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| 117 | if source =='dampier': |
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| 118 | boundaries_name = 'broome_3854_17042007' #Dampier gun |
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| 119 | boundaries_in_dir = anuga_dir+'boundaries'+sep+'urs'+sep+'dampier'+sep+'1_10000'+sep |
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| 120 | |
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| 121 | if source=='onslow': |
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| 122 | boundaries_name = 'broome_3859_16052007' #onslow_hedland_broome gun |
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| 123 | boundaries_in_dir = anuga_dir+'boundaries'+sep+'urs'+sep+'onslow_hedland_broome'+sep+'1_10000'+sep |
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| 124 | |
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| 125 | if source=='exmouth': |
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| 126 | boundaries_name = 'broome_3103_18052007' #exmouth gun |
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| 127 | boundaries_in_dir = anuga_dir+'boundaries'+sep+'urs'+sep+'exmouth'+sep+'1_10000'+sep |
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| 128 | |
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| 129 | boundaries_in_dir_name = boundaries_in_dir + boundaries_name |
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| 130 | boundaries_dir = anuga_dir+'boundaries'+sep |
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| 131 | boundaries_dir_name = boundaries_dir + boundaries_name |
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| 132 | |
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| 133 | #output locations |
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| 134 | output_dir = anuga_dir+'outputs'+sep |
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| 135 | output_build_time_dir = output_dir+build_time+'_'+source+sep |
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[5148] | 136 | output_run_time_dir = output_dir +run_time+dir_comment+sep |
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| 137 | #output_run_time_dir = output_dir +'20070703_062312_run_final_4.9_dampier_nbartzis'+sep |
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[5001] | 138 | output_run_time_dir_name = output_run_time_dir + scenario_name #Used by post processing |
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| 139 | |
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| 140 | #gauges |
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| 141 | gauge_name = 'broome_gauges.csv' |
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| 142 | gauges_dir = home+sep+state+sep+scenario+sep+'anuga'+sep+'gauges'+sep |
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| 143 | gauges_dir_name = gauges_dir + gauge_name |
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| 144 | |
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| 145 | community_filename = gauges_dir + 'CHINS_v2.csv' |
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| 146 | community_broome = gauges_dir + 'community_broome.csv' |
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| 147 | |
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| 148 | buildings_filename = gauges_dir + 'Broome_res_Project.csv' |
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| 149 | buildings_filename_out = output_run_time_dir+'Broome_res_Project_modified.csv' |
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| 150 | |
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| 151 | ############################### |
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| 152 | # Domain definitions |
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| 153 | ############################### |
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| 154 | from anuga.utilities.polygon import read_polygon, plot_polygons, polygon_area, is_inside_polygon |
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| 155 | |
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| 156 | poly_all = read_polygon(polygons_dir+'extent_small.csv') |
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| 157 | # to test update of plot_polygons - now allows points and polygon to be |
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| 158 | # plotted together |
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| 159 | #point = read_polygon(polygons_dir+'neg20_coast_contour_pts.csv') |
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| 160 | #p2 = read_polygon(polygons_dir+'broome_north_coast_inside_extent.csv') |
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| 161 | #label=None |
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| 162 | #plot_polygons([poly_all,point,p2],['line','point','outside'],figname='test',label=label) |
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| 163 | #plot_polygons([poly_all,point],figname='test') |
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| 164 | #poly_all = read_polygon(polygons_dir+'extent.csv') |
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| 165 | res_poly_all = 150000*res_factor |
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| 166 | |
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| 167 | ############################### |
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| 168 | # Interior region definitions |
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| 169 | ############################### |
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| 170 | |
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| 171 | poly_0 = read_polygon(polygons_dir+'neg20_coast_contour_pts.csv') |
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| 172 | res_0 = 20000*res_factor |
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| 173 | |
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| 174 | poly_1 = read_polygon(polygons_dir+'broome_north_coast_inside_extent.csv') |
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| 175 | res_1 = 5000*res_factor |
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| 176 | |
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| 177 | #poly_2 = read_polygon(polygons_dir+'broome_south_coast_inside_extent.csv') |
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| 178 | poly_2 = read_polygon(polygons_dir+'broome_south_coast_not_town_pts_new.csv') |
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| 179 | res_2 = 5000*res_factor |
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| 180 | |
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| 181 | #poly_3 = read_polygon(polygons_dir+'Broome_town_pts.csv') |
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| 182 | poly_3 = read_polygon(polygons_dir+'broome_town_new_ptsa.csv') |
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| 183 | res_3 = 2000*res_factor |
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| 184 | |
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| 185 | #poly_4 = read_polygon(polygons_dir+'Broome_inner_town_pts.csv') |
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| 186 | poly_4 = read_polygon(polygons_dir+'broome_inner_town_new_ptsa.csv') |
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| 187 | res_4 = 500*res_factor |
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| 188 | |
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| 189 | interior_regions = [[poly_0,res_0],[poly_1,res_1],[poly_2,res_2] |
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| 190 | ,[poly_3,res_3],[poly_4,res_4]] |
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| 191 | |
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| 192 | boundary_tags={'back': [1, 2], |
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| 193 | 'side': [0,3], |
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| 194 | 'ocean': [4]} |
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| 195 | |
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| 196 | trigs_min = number_mesh_triangles(interior_regions, poly_all, res_poly_all) |
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| 197 | |
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| 198 | print 'min number triangles', trigs_min |
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| 199 | |
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| 200 | poly_mainland = read_polygon(polygons_dir+'Initial_Condition.csv') |
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| 201 | |
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| 202 | ################################################################### |
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| 203 | # Clipping regions for export to asc and regions for clipping data |
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| 204 | ################################################################### |
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| 205 | |
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| 206 | # exporting asc grid |
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| 207 | eastingmin = 412000.0 |
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| 208 | eastingmax = 423000.0 |
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| 209 | northingmin = 8007000.0 |
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| 210 | northingmax = 8022000.0 |
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| 211 | |
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| 212 | # exporting asc grid for speed |
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| 213 | #eastingmin = 412900.0 |
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| 214 | #eastingmax = 422700.0 |
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| 215 | #northingmin = 8008555.0 |
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| 216 | #northingmax = 8021350.0 |
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