1 | """ Designed from run_perth 08/08/2008 """ |
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2 | |
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3 | # -*- coding: cp1252 -*- |
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4 | """Common filenames and locations for topographic data, meshes and outputs. |
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5 | """ |
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6 | |
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7 | from os import sep, environ, getenv, getcwd |
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8 | from os.path import expanduser |
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9 | import sys |
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10 | from time import localtime, strftime, gmtime |
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11 | from anuga.utilities.polygon import read_polygon, plot_polygons, is_inside_polygon, number_mesh_triangles |
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12 | #from anuga.coordinate_transforms.redfearn import degminsec2decimal_degrees, convert_points_from_latlon_to_utm |
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13 | from anuga.utilities.system_tools import get_user_name, get_host_name |
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14 | from anuga.shallow_water.data_manager import urs2sts,create_sts_boundary |
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15 | from anuga.utilities.polygon import read_polygon, plot_polygons, polygon_area, is_inside_polygon |
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16 | |
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17 | # file and system info |
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18 | #--------------------------------- |
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19 | #codename = 'project.py' |
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20 | |
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21 | home = getenv('INUNDATIONHOME') + sep +'data'+sep #Sandpit's parent diruser = get_user_name() |
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22 | muxhome = getenv('MUXHOME') |
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23 | user = get_user_name() |
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24 | host = get_host_name() |
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25 | |
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26 | # INUNDATIONHOME is the inundation directory, not the data directory. |
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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',localtime()) #gets time for new dir |
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30 | gtime = strftime('%Y%m%d_%H%M%S',gmtime()) #gets time for new dir |
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31 | build_time = time+'_build' |
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32 | run_time = time+'_run' |
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33 | print 'gtime: ', gtime |
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34 | |
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35 | #Making assumptions about the location of scenario data |
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36 | state = 'western_australia' |
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37 | #scenario_name = 'perth_44unitsources' |
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38 | scenario_name = 'onslow_2008' |
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39 | scenario = 'onslow_tsunami_scenario_2008' |
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40 | |
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41 | |
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42 | tide = 1.5 |
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43 | |
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44 | alpha = 0.1 |
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45 | friction=0.01 |
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46 | starttime=5000 |
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47 | finaltime=80000 |
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48 | export_cellsize=25 |
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49 | setup='trial' |
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50 | source='polyline' |
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51 | |
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52 | if setup =='trial': |
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53 | print'trial' |
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54 | res_factor=10 |
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55 | time_thinning=48 |
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56 | yieldstep=240 |
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57 | if setup =='basic': |
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58 | print'basic' |
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59 | res_factor=4 |
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60 | time_thinning=12 |
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61 | yieldstep=120 |
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62 | if setup =='final': |
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63 | print'final' |
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64 | res_factor=1 |
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65 | time_thinning=4 |
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66 | yieldstep=60 |
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67 | |
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68 | dir_comment='_'+setup+'_'+str(tide)+'_'+str(source)+'_'+ 'alpha' +str(alpha)+'_'+str(user) |
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69 | |
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70 | # onshore data provided by WA DLI |
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71 | onshore_name = 'revised_onshore_20m_dli' #revised |
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72 | |
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73 | #island |
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74 | island_name = 'onslow_islands_dted2' # revised |
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75 | |
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76 | # AHO + DPI data + colin French coastline |
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77 | coast_name = 'revised_coastline' |
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78 | offshore_name = 'onslow_offshore_points' |
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79 | offshore_name1 = 'beach_survey' |
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80 | offshore_name2 = 'ONS16FINAL' |
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81 | offshore_name3 = 'ONS17FINAL' |
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82 | offshore_name4 = 'ONS18FINAL' |
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83 | |
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84 | |
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85 | #final topo name |
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86 | combined_name ='onslow_combined_elevation' |
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87 | combined_smaller_name = 'onslow_combined_elevation_smaller' |
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88 | |
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89 | anuga_dir = home+state+sep+scenario+sep+'anuga'+sep |
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90 | |
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91 | topographies_in_dir = home+state+sep+scenario+sep+'elevation_final'+sep+'points'+sep |
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92 | topographies_dir = anuga_dir+'topographies'+sep |
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93 | #topographies_time_dir = topographies_dir+build_time+sep |
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94 | |
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95 | # input topo file location |
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96 | onshore_in_dir_name = topographies_in_dir + onshore_name |
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97 | island_in_dir_name = topographies_in_dir + island_name |
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98 | |
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99 | coast_in_dir_name = topographies_in_dir + coast_name |
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100 | offshore_in_dir_name = topographies_in_dir + offshore_name |
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101 | offshore_in_dir_name1 = topographies_in_dir + offshore_name1 |
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102 | offshore_in_dir_name2 = topographies_in_dir + offshore_name2 |
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103 | offshore_in_dir_name3 = topographies_in_dir + offshore_name3 |
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104 | offshore_in_dir_name4 = topographies_in_dir + offshore_name4 |
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105 | |
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106 | onshore_dir_name = topographies_dir + onshore_name |
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107 | island_dir_name = topographies_dir + island_name |
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108 | |
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109 | coast_dir_name = topographies_dir + coast_name |
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110 | offshore_dir_name = topographies_dir + offshore_name |
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111 | offshore_dir_name1 = topographies_dir + offshore_name1 |
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112 | offshore_dir_name2 = topographies_dir + offshore_name2 |
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113 | offshore_dir_name3 = topographies_dir + offshore_name3 |
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114 | offshore_dir_name4 = topographies_dir + offshore_name4 |
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115 | |
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116 | #final topo files |
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117 | combined_dir_name = topographies_dir + combined_name |
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118 | #combined_time_dir_name = topographies_time_dir + combined_name |
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119 | combined_smaller_name_dir = topographies_dir + combined_smaller_name |
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120 | #combined_time_dir_final_name = topographies_time_dir + combined_final_name |
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121 | |
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122 | meshes_dir = anuga_dir+'meshes'+sep |
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123 | meshes_dir_name = meshes_dir + scenario_name |
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124 | |
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125 | polygons_dir = anuga_dir+'polygons'+sep |
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126 | tide_dir = anuga_dir+'tide_data'+sep |
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127 | |
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128 | |
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129 | #boundaries_source = '1' |
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130 | |
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131 | if source=='polyline': |
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132 | boundaries_name = 'perth_3103_28052008' #polyline gun |
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133 | boundaries_in_dir = anuga_dir+'boundaries'+sep+'urs'+sep+'polyline'+sep+'1_10000'+sep |
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134 | |
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135 | if source=='test': |
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136 | boundaries_name = 'other' #polyline |
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137 | boundaries_in_dir = anuga_dir+'boundaries'+sep |
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138 | |
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139 | |
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140 | #boundaries locations |
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141 | boundaries_in_dir_name = boundaries_in_dir + boundaries_name |
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142 | boundaries_dir = anuga_dir+'boundaries'+sep |
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143 | boundaries_dir_name = boundaries_dir + scenario_name # what it creates??? |
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144 | boundaries_dir_mux = muxhome |
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145 | |
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146 | #output locations |
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147 | output_dir = anuga_dir+'outputs'+sep |
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148 | output_build_time_dir = anuga_dir+'outputs'+sep+build_time+dir_comment+sep |
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149 | output_run_time_dir = anuga_dir+'outputs'+sep+run_time+dir_comment+sep |
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150 | output_run_time_dir_name = output_run_time_dir + scenario_name #Used by post processing |
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151 | |
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152 | vertex_filename = output_run_time_dir + 'mesh_vertex.csv' |
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153 | |
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154 | #gauges |
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155 | gauge_name = 'gauge_location_onslow.csv' |
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156 | gauge_name2 = 'thinned_MGA50+1.csv' |
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157 | |
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158 | gauges_dir = home+sep+state+sep+scenario+sep+'anuga'+sep+'gauges'+sep |
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159 | beach_gauges = gauges_dir + 'beach_gauges.csv' |
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160 | gauges_dir_name = gauges_dir + gauge_name |
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161 | gauges_dir_name2 = gauges_dir + gauge_name2 |
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162 | |
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163 | |
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164 | #buildings_filename = gauges_dir + 'Onslow_res_Project.csv' |
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165 | #buildings_filename_out = 'Onslow_res_Project_modified.csv' |
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166 | |
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167 | |
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168 | ############################### |
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169 | # Interior region definitions |
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170 | ############################### |
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171 | |
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172 | #Initial bounding polygon for data clipping |
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173 | poly_all = read_polygon(polygons_dir+'domain.csv') |
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174 | res_poly_all = 100000*res_factor |
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175 | |
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176 | #Polygon designed by 20m contours, or 3km from the coastline |
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177 | poly_inner_region = read_polygon(polygons_dir+'inner_region.csv') |
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178 | res_inner_region = 5000*res_factor |
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179 | |
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180 | #Polygon designed to cut out the rottnest island land. |
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181 | poly_region_50m = read_polygon(polygons_dir+'region_50m.csv') |
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182 | res_region_50m = 50000*res_factor |
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183 | |
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184 | #Polygon designed to incorporate Garden Island and sand bank infront of Rockingham |
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185 | poly_onslow_v2 = read_polygon(polygons_dir+'onslow_v2.csv') |
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186 | res_onslow_v2 = 500*res_factor |
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187 | |
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188 | #Polygon designed to incorporate coastline of rottnest |
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189 | poly_beach_left = read_polygon(polygons_dir+'beach_left.csv') |
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190 | res_beach_left = 200*res_factor |
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191 | |
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192 | #Polygon designed to incorporate perth and Fremantle CBD |
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193 | poly_beach_right = read_polygon(polygons_dir+'beach_right.csv') |
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194 | res_beach_right = 200*res_factor |
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195 | |
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196 | |
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197 | |
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198 | #assert zone == refzone |
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199 | |
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200 | interior_regions = [[poly_inner_region,res_inner_region],[poly_region_50m,res_region_50m] |
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201 | ,[poly_onslow_v2,res_onslow_v2],[poly_beach_left,res_beach_left] |
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202 | ,[poly_beach_right,res_beach_right]] |
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203 | |
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204 | |
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205 | trigs_min = number_mesh_triangles(interior_regions, poly_all, res_poly_all) |
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206 | print 'min number triangles', trigs_min |
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207 | |
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208 | |
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209 | poly_mainland = read_polygon(topographies_in_dir+'InitialCondition_points.csv') |
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210 | |
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211 | ################################################################### |
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212 | # Clipping regions for export to asc and regions for clipping data |
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213 | ################################################################### |
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214 | |
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215 | # region to export (used from export_results.py) |
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216 | e_min_area = 300000 # Eastings min |
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217 | e_max_area = 310000 |
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218 | n_min_area = 7600000 |
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219 | n_max_area = 7610000 |
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220 | # for old onslow town |
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221 | ##e_min_area = 300000 # Eastings min |
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222 | ##e_max_area = 310000 |
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223 | ##n_min_area = 7600000 |
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224 | ##n_max_area = 7610000 |
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