[7614] | 1 | """ |
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| 2 | This file contains all your file and directory definitions |
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| 3 | for elevation, meshes and outputs. |
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| 4 | """ |
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| 5 | |
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| 6 | import os |
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| 7 | from anuga.utilities.system_tools import get_user_name, get_host_name |
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| 8 | from time import localtime, strftime, gmtime |
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| 9 | from os.path import join, exists |
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| 10 | |
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| 11 | |
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| 12 | #------------------------------------------------------------------------------- |
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| 13 | # Directory setup |
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| 14 | #------------------------------------------------------------------------------- |
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| 15 | |
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| 16 | # this section needs to be updated to reflect the modelled community. |
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| 17 | # Note, the user needs to set up the directory system accordingly |
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| 18 | state = 'western_australia' |
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| 19 | #scenario_name = 'case_a' |
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| 20 | scenario_name = 'alby_waves' |
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| 21 | scenario_folder = 'mandurah_storm_surge_scenario_2009' |
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| 22 | |
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| 23 | #------------------------------------------------------------------------------- |
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| 24 | # Initial Conditions |
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| 25 | #------------------------------------------------------------------------------- |
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| 26 | |
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| 27 | # Model specific parameters. |
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| 28 | # One or all can be changed each time the run_model script is executed |
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| 29 | |
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| 30 | |
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| 31 | central_meridian = None # Central meridian for projection (optional) |
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| 32 | zone = 50 # UTM zone for projection |
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| 33 | |
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| 34 | event = 'alby_waves' |
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| 35 | #event = 'case_a' # case_a - baseline historic TC Alby event |
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| 36 | # case_b - worst case scenarion current climate (current coastline) |
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| 37 | # case_c - worst case 1.1m SLR current climate (current coastline) |
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| 38 | # case_d - worst case 0.8m SLR current climate (current coastline) |
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| 39 | # case_e - worst case 0.5m SLR current climate (current coastline) |
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| 40 | tide = 0 # Mean Sea Level = 0, |
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| 41 | # Highest Astronomical Tide = 0.6 m for Bunbury - CHECK THIS! |
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| 42 | alpha = 0.1 # smoothing parameter for mesh |
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| 43 | friction = 0.01 # manning's friction coefficient |
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| 44 | starttime = 0 # start time for simulation |
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| 45 | finaltime = 86400 # final time for simulation - 24 hours for TC Alby |
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| 46 | |
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| 47 | setup = 'storm_surge_final' # This can be one of four values |
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| 48 | # trial - coarsest mesh, fast |
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| 49 | # basic - coarse mesh |
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| 50 | # final - fine mesh, slowest |
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| 51 | # storm_surge_final - as 'final' but with a longer yieldstep (12 mins) |
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| 52 | |
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| 53 | #------------------------------------------------------------------------------- |
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| 54 | # Output filename |
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| 55 | # |
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| 56 | # Your output filename should be unique between different runs on different data. |
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| 57 | # The list of items below will be used to create a file in your output directory. |
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| 58 | # Your user name and time+date will be automatically added. For example, |
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| 59 | # [setup, tide, event_number] |
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| 60 | # will result in a filename like |
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| 61 | # 20090212_091046_run_final_0_27283_rwilson |
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| 62 | #------------------------------------------------------------------------------- |
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| 63 | |
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| 64 | output_comment = [setup, tide, event] # event_number will have to |
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| 65 | # change to something relevent |
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| 66 | # for storm surge |
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| 67 | |
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| 68 | #------------------------------------------------------------------------------- |
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| 69 | # Input Data |
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| 70 | #------------------------------------------------------------------------------- |
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| 71 | |
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| 72 | # ELEVATION DATA |
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| 73 | # Used in build_elevation.py |
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| 74 | # Format for ascii grids, as produced in ArcGIS + a projection file |
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[7627] | 75 | |
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| 76 | # This set of ascii files is utilising the original input data, not the GEMS elevation model |
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| 77 | ascii_grid_filenames = ['m_peel_aoi', # Original 1m lidar for PEEL, clipped to AOI |
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| 78 | 'ph10m_ss'] # Mosiaced PEEL-HARVEY Lidar, resampled to 10m, |
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| 79 | # clipped to bounding polygon |
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| 80 | |
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| 81 | # This set of ascii files utilises the GEMS elevation model - for comparison with GEMS inundation |
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| 82 | # ascii_grid_filenames = ['Man_25m', # this is the latest 25m DEM from GEMS |
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| 83 | # 'ph10m_ss'] # this is to fill in areas not covered by the |
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[7614] | 84 | # GEMS grid and is derived from the 10m resampled LiDAR from DoT |
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| 85 | |
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| 86 | # Format for point is x,y,elevation (with header) |
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[7627] | 87 | # Don't use these for comparison with GEMS inundation |
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| 88 | point_filenames = ['MA-46893-SNDS_AHD.csv', # These files contain inf-fill bathymetry for |
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| 89 | 'MS0205HY_AHD.csv', # the Peel & Harvey estuaries, as well as around |
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| 90 | 'MS0404_AHD.csv', # the canals |
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| 91 | 'YU0403HY_AHD.csv', |
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| 92 | 'original_data_ss.csv'] # This data is from what we had available for the 2007 |
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| 93 | # tsunami simulations for SW WA, clipped to bounding polygon |
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[7614] | 94 | |
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| 95 | # BOUNDING POLYGON - for data clipping and estimate of triangles in mesh |
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| 96 | # Used in build_elevation.py & run_model.py |
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| 97 | # Format for points easting,northing (no header) |
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| 98 | bounding_polygon_filename = 'bounding_polygon_ss.csv' |
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| 99 | bounding_polygon_maxarea = 50000 |
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| 100 | |
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| 101 | # INTERIOR REGIONS - for designing the mesh |
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| 102 | # Used in run_model.py |
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| 103 | # Format for points easting,northing (no header) |
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| 104 | interior_regions_data = [['intermediate.csv', 2500], |
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| 105 | ['area_of_interest.csv', 100], |
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| 106 | ['canals_nth_2.csv', 100], # Canal regions used to force mesh to fit canals |
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| 107 | ['canals_nth_3.csv', 100], |
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| 108 | ['canals_nth_4.csv', 100], |
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| 109 | ['canals_nth_5.csv', 100], |
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| 110 | ['canals_nth_6.csv', 100], |
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| 111 | ['canals_nth_7.csv', 100], |
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| 112 | ['canals_nth_8.csv', 100], |
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| 113 | ['canals_nth_9.csv', 100], |
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| 114 | ['canals_nth_10.csv', 100], |
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| 115 | ['canals_nth_11.csv', 100], |
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| 116 | ['canals_nth_12.csv', 100], |
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| 117 | ['canals_sth_1.csv', 100], |
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| 118 | ['canals_sth_2.csv', 100], |
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| 119 | ['canals_sth_3.csv', 100], |
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| 120 | ['canals_sth_4.csv', 100], |
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| 121 | ['canals_sth_5.csv', 100], |
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| 122 | ['canals_sth_6.csv', 100]] |
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| 123 | |
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| 124 | # LAND - used to set the initial stage/water to be offcoast only |
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| 125 | # Used in run_model.py. Format for points easting,northing (no header) |
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| 126 | land_initial_conditions_filename = [['initial_conditions.csv', 0]] |
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| 127 | |
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| 128 | # GEMS order filename |
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| 129 | # Format is index,northing, easting, elevation (without header) |
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| 130 | gems_order_filename = 'gems_boundary_order_thinned.csv' |
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| 131 | |
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| 132 | # GAUGES - for creating timeseries at a specific point |
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| 133 | # Used in get_timeseries.py. |
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| 134 | # Format easting,northing,name,elevation (with header) |
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[7627] | 135 | gauges_filename = 'gauges_mandurah_edited.csv' |
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[7614] | 136 | |
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| 137 | # BUILDINGS EXPOSURE - for identifying inundated houses |
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| 138 | # Used in run_building_inundation.py |
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| 139 | # Format latitude,longitude etc (geographic) |
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| 140 | building_exposure_filename = '' # from NEXIS |
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| 141 | |
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| 142 | # Landward bounding points |
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| 143 | # Format easting,northing (no header) |
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| 144 | landward_boundary_filename = 'landward_boundary.csv' |
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| 145 | |
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| 146 | ### MUX input filename. |
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| 147 | ### If a meta-file from EventSelection is used, set 'multi-mux' to True. |
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| 148 | ### If a single MUX stem filename (*.grd) is used, set 'multi-mux' to False. |
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| 149 | ####mux_input_filename = event_number # to be found in event_folder |
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| 150 | ## # (ie boundaries/event_number/) |
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| 151 | ####multi_mux = False |
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| 152 | ##mux_input_filename = 'event.list' |
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| 153 | ##multi_mux = True |
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| 154 | |
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| 155 | #------------------------------------------------------------------------------- |
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| 156 | # Clipping regions for export to asc and regions for clipping data |
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| 157 | # Final inundation maps should only be created in regions of the finest mesh |
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| 158 | #------------------------------------------------------------------------------- |
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| 159 | |
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| 160 | # Elevation clip box - used when there are multiple overlapping datasets and you want to use |
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| 161 | # one over another in an area of overlap |
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[7627] | 162 | #elevation_clip_box_filename = 'gems_elevation_clip_box.csv' |
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| 163 | elevation_clip_box_filename = 'area_of_interest.csv' |
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[7614] | 164 | |
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| 165 | ################################################################################ |
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| 166 | ################################################################################ |
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| 167 | #### NOTE: NOTHING WOULD NORMALLY CHANGE BELOW THIS POINT. #### |
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| 168 | ################################################################################ |
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| 169 | ################################################################################ |
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| 170 | |
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| 171 | # Get system user and host names. |
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| 172 | # These values can be used to distinguish between two similar runs by two |
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| 173 | # different users or runs by the same user on two different machines. |
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| 174 | user = get_user_name() |
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| 175 | host = get_host_name() |
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| 176 | |
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| 177 | # Environment variable names. |
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| 178 | # The inundation directory, not the data directory. |
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| 179 | ENV_INUNDATIONHOME = 'INUNDATIONHOME' |
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| 180 | |
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| 181 | #------------------------------------------------------------------------------- |
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| 182 | # Output Elevation Data |
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| 183 | #------------------------------------------------------------------------------- |
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| 184 | |
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| 185 | # Output filename for elevation |
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| 186 | # this is a combination of all the data generated in build_elevation.py |
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| 187 | combined_elevation_basename = scenario_name + '_combined_elevation' |
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| 188 | |
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| 189 | #------------------------------------------------------------------------------- |
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| 190 | # Directory Structure |
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| 191 | #------------------------------------------------------------------------------- |
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| 192 | |
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| 193 | # determines time for setting up output directories |
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| 194 | time = strftime('%Y%m%d_%H%M%S', localtime()) |
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| 195 | gtime = strftime('%Y%m%d_%H%M%S', gmtime()) |
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| 196 | build_time = time + '_build' |
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| 197 | run_time = time + '_run_' |
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| 198 | |
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| 199 | # create paths generated from environment variables. |
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| 200 | home = join(os.getenv(ENV_INUNDATIONHOME), 'data') # Absolute path for data folder |
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| 201 | |
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| 202 | # check various directories/files that must exist |
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| 203 | anuga_folder = join(home, state, scenario_folder, 'anuga') |
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| 204 | topographies_folder = join(anuga_folder, 'topographies') |
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| 205 | polygons_folder = join(anuga_folder, 'polygons') |
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| 206 | boundaries_folder = join(anuga_folder, 'boundaries') |
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| 207 | output_folder = join(anuga_folder, 'outputs') |
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| 208 | gauges_folder = join(anuga_folder, 'gauges') |
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| 209 | event_folder = join(boundaries_folder, str(event)) |
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| 210 | |
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| 211 | #------------------------------------------------------------------------------- |
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| 212 | # Location of input and output data |
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| 213 | #------------------------------------------------------------------------------- |
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| 214 | |
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| 215 | # Convert the user output_comment to a string for run_model.py |
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| 216 | output_comment = ('_'.join([str(x) for x in output_comment if x != user]) |
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| 217 | + '_' + user) |
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| 218 | |
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| 219 | # The absolute pathname of the all elevation, generated in build_elevation.py |
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| 220 | combined_elevation = join(topographies_folder, combined_elevation_basename) |
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| 221 | |
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| 222 | |
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| 223 | # The pathname for the GEMS order points |
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| 224 | if gems_order_filename: |
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| 225 | gems_order = join(boundaries_folder, gems_order_filename) |
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| 226 | |
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| 227 | # The absolute pathname for the landward points of the bounding polygon, |
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| 228 | # Used within run_model.py) |
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| 229 | if landward_boundary_filename: |
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| 230 | landward_boundary = join(boundaries_folder, landward_boundary_filename) |
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| 231 | |
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| 232 | # The absolute pathname for the .sts file, generated in build_boundary.py |
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| 233 | event_sts = join(event_folder, scenario_name) |
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| 234 | |
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| 235 | # The absolute pathname for the output folder names |
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| 236 | # Used for build_elevation.py |
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| 237 | output_build = join(output_folder, build_time) + '_' + str(user) |
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| 238 | # Used for run_model.py |
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| 239 | output_run = join(output_folder, run_time) + output_comment |
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| 240 | # Used by post processing |
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| 241 | output_run_time = join(output_run, scenario_name) |
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| 242 | |
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| 243 | # The absolute pathname of the mesh, generated in run_model.py |
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| 244 | meshes = join(output_run, scenario_name) + '.msh' |
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| 245 | |
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| 246 | # The absolute pathname for the gauges file |
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| 247 | # Used for get_timeseries.py |
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| 248 | if gauges_filename: |
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| 249 | gauges = join(gauges_folder, gauges_filename) |
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| 250 | |
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| 251 | # The absolute pathname for the building file |
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| 252 | # Used for run_building_inundation.py |
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| 253 | if building_exposure_filename: |
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| 254 | building_exposure = join(gauges_folder, building_exposure_filename) |
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| 255 | |
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| 256 | ### The absolute pathname for the image file |
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| 257 | ### Used for get_runup.py |
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| 258 | ##if images_filename: |
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| 259 | ## images = join(polygons_folder, images_filename) |
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| 260 | |
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| 261 | ### full path to where MUX files (or meta-files) live |
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| 262 | ##mux_input = join(event_folder, mux_input_filename) |
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| 263 | |
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| 264 | |
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