- Timestamp:
- May 20, 2009, 2:40:47 PM (14 years ago)
- File:
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- 1 edited
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anuga_work/production/new_south_wales/batemans_bay/project.py
r7051 r7060 8 8 from time import localtime, strftime, gmtime 9 9 from os.path import join, exists 10 import csv 10 11 11 12 … … 17 18 # Note, the user needs to set up the directory system accordingly 18 19 state = 'new_south_wales' 19 scenario_name = ' batemans_bay'20 scenario_folder = ' batemans_bay_tsunami_scenario_2009'20 scenario_name = 'gosford' 21 scenario_folder = 'gosford_tsunami_scenario_2009' 21 22 22 23 #------------------------------------------------------------------------------- 23 24 # Initial Conditions 24 25 #------------------------------------------------------------------------------- 26 25 27 26 28 # Model specific parameters. 27 29 # One or all can be changed each time the run_model script is executed 28 tide = 0.0 # difference between MSL and HAT (1.0) 29 30 # the event number or the mux file name 31 ##event_number = 58129 #1 in 200 yr Puyesgur 32 ##event_number = 58115 #1 in 500 yr 33 ##event_number = 58226 #1 in 1000 yr 34 ##event_number = 58284 #1 in 2000 yr 35 ##event_number = 58286 #1 in 5000 yr 36 event_number = 58272 #1 in 10000 yr Puysegur 37 ##event_number = 51445 #1 in 10000 yr New Hebrides 38 ##event_number = 58368 #1 in 100 000 yr Puysegur!!! 39 ##event_number = 51436 #1 in 100 000 yr New Hebrides!!! 30 tide = 1.0 # difference between MSL and HAT in metres 31 zone = 56 # specify zone of model 32 event_number = 58242 # Puysegur 1 in 10 000 # the event number or the mux file name 33 #event_number = 51436 # New Hebrides 1 in 10 000 34 #event_number = 58349 # Puysegur 1 in 5000 35 #event_number = 58284 # Puysegur 1 in 2000 36 #event_number = 58187 # Puysegur 1 in 1000 37 #event_number = 58113 # Puysegur 1 in 500 38 event_number = 58025 # Puysegur 1 in 200 39 40 40 41 41 alpha = 0.1 # smoothing parameter for mesh … … 69 69 # Used in build_elevation.py 70 70 # Format for ascii grids, as produced in ArcGIS + a projection file 71 ascii_grid_filenames = ['1a',# Topographic data 72 '1b', 73 '2b', 74 '2a_3', 75 '3b', 76 '3a', 77 '4a_2', 78 '4b', 79 'off1', 80 'off2', 81 'off3', 82 'bbhd', 83 'sd100031996_p', 84 'sd100031996_p2', 85 'sd100031996_p3', 86 'sd100031996_p4'] 71 ascii_grid_filenames = ['e151_s34_clip2', 72 'aus197_topo2raster_clip', 73 'hydro_topo2raster_clip'] 74 #'aus197_topo2raster_terrigal'] #GA data?? 87 75 76 77 78 #Get long list of Lidar filenames. 79 ENV_INUNDATIONHOME = 'INUNDATIONHOME' 80 home = join(os.getenv(ENV_INUNDATIONHOME), 'data') 81 anuga_folder = join(home, state, scenario_folder, 'anuga') 82 topographies_folder = join(anuga_folder, 'topographies/original') 83 84 file_list = join(topographies_folder, 'file_list.csv') 85 ###file_list2 = join(topographies_folder, 'file_list2.csv') 86 fid = csv.reader(open(file_list)) 87 ###fid2 = csv.reader(open(file_list2)) 88 lidar_filenames = [] 89 for row in fid: 90 lidar_filenames.append(','.join(row)) 91 ##for row in fid2: 92 ## lidar_filenames.append(','.join(row)) 93 ###print lidar_filenames 94 #lidar_filenames = list(lidar_filenames) 95 #print lidar_filenames 96 88 97 # Format for point is x,y,elevation (with header) 89 point_filenames = ['SD100031996_jgriffin_clip.csv', 90 'tomaga_offshore_AHD_MGA_1997.csv', 91 'Batemans_BBHD_MGA_1995.csv', 92 'moruya_AHD_MGA_2000.csv'] 98 point_filenames = ['estuaries.txt', 99 ## 'XYHI341_HSDB_SD100035103', 100 ## 'XYAHD', 101 ## 'XYSCHOOL_11_99_HSDB_SD100021002_MGA', 102 'ENT5C1S08_03_AHD_prepared.txt', 103 'ENT5C1S09_03_AHD_prepared.txt', 104 'ENT5C1S10_03_AHD_prepared.txt', 105 ## 'XYAHD', 106 ## 'XYHI341_HSDB_SD100035103_MGA', 107 ## 'XYHI339_F_HSDB_SD100031669_MGA', 108 ## 'AUS197_MGA_AHD_1972.txt', 109 'hydro_neg.txt' 110 ] 111 point_filenames.extend(lidar_filenames) 112 #print point_filenames 93 113 94 114 … … 108 128 # Format for points easting,northing (no header) 109 129 110 interior_regions_data = [['area_of_interest.csv', 500], 111 ['area_of_significance.csv', 2500], 112 ['shallow_water.csv', 10000]] 130 interior_regions_data =[['aoi_umina.csv', 500], 131 ['aoi_terrigal.csv', 500], 132 ['aos_umina.csv', 2500], 133 ['aos_terrigal.csv', 2500]] 113 134 114 135 … … 135 156 # Thinned ordering file from Hazard Map (geographic) 136 157 # Format is index,latitude,longitude (with header) 137 urs_order_filename = ' thinned_boundary_ordering_extend.csv'158 urs_order_filename = 'urs_order.csv' 138 159 139 160 # Landward bounding points 140 161 # Format easting,northing (no header) 141 landward_boundary_filename = 'landward_boundary _extend.csv'162 landward_boundary_filename = 'landward_boundary.csv' 142 163 143 164 # MUX input filename. … … 211 232 # check various directories/files that must exist 212 233 anuga_folder = join(home, state, scenario_folder, 'anuga') 213 topographies_folder = join(anuga_folder, 'topographies ')234 topographies_folder = join(anuga_folder, 'topographies/original') 214 235 polygons_folder = join(anuga_folder, 'polygons') 215 236 boundaries_folder = join(anuga_folder, 'boundaries')
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