source: anuga_work/production/australia_ph2/dampier/Arc_asc2raster_GDA94z50.py @ 6594

Last change on this file since 6594 was 6594, checked in by jgriffin, 15 years ago

different events

File size: 4.0 KB
Line 
1# ---------------------------------------------------------------------------
2# This python script is an ArcGIS script that can only be run on a computer
3# with and ArcGIS licence and version 2.4.1 python.
4# This script is designed to read in .asc files and deliever rasters with
5# projection (GDA94z50) held in a file geodatabase (called raster)
6# written by Kristy Van Putten and Ross Wilson
7# ---------------------------------------------------------------------------
8
9# Import system modules
10import sys, string, os, arcgisscripting, glob, os.path
11
12# Create the Geoprocessor object
13gp = arcgisscripting.create()
14
15# Check out any necessary licenses
16gp.CheckOutExtension("spatial")
17
18# Load required toolboxes...
19gp.AddToolbox("C:/Program Files/ArcGIS/ArcToolbox/Toolboxes/Spatial Analyst Tools.tbx")
20gp.AddToolbox("C:/Program Files/ArcGIS/ArcToolbox/Toolboxes/Conversion Tools.tbx")
21gp.AddToolbox("C:/Program Files/ArcGIS/ArcToolbox/Toolboxes/Data Management Tools.tbx")
22gp.overwriteoutput = 1
23
24scenario_dir = "\\\\nas2\\gemd\\georisk_models\\inundation\\data\\australia_ph2\\dampier\\"
25output_dir="anuga\\outputs\\"
26
27##time_dir1 = '20081209_155330_run_final_0_27255_250m_none_lfountai'
28##time_dir2 = '20081209_161229_run_final_0_68693_250m_none_lfountai'
29##time_dirs = [time_dir1, time_dir2]
30
31#time_dir1 = '20090311_152848_run_final_0_70385_1203_Bf_jgriffin'
32time_dir2 = '20090323_165436_run_final_0_70385_1203_Tb_jgriffin' 
33#time_dir3 = '20090311_153009_run_final_0_70454_1203_Bf_jgriffin'
34#time_dir4 = '20090311_153054_run_final_0_70339_1203_Bf_jgriffin'
35##time_dir5 = '20081211_095614_run_final_0.0_27283_alpha0.1_jgriffin'
36##time_dir6 = '20081117_141717_run_final_0.6_68693_alpha0.1_kvanputt'
37##
38time_dirs = [time_dir2]#, time_dir2, time_dir3, time_dir4] #, time_dir3, time_dir4, time_dir5, time_dir6]
39
40for time_dir in time_dirs:
41
42    # Local variables...
43    folder = scenario_dir + output_dir +  time_dir +'\\'
44    raster_gbd = folder + 'raster.gdb'
45##    land = scenario_dir + "map_work\\\port_hedland.gdb\\outlines\\initial_condition"
46##    ocean = scenario_dir + "map_work\\\port_hedland.gdb\\outlines\\initial_conditions_ocean"
47
48    print 'Process: Create File GDB'
49    gp.CreateFileGDB_management(folder, "raster")
50
51    gp.Workspace = raster_gbd
52
53    print gp.Workspace
54   
55    #replication dictionary
56    replicate = (('dampier', ''),('_', ''),('max','_M'),
57                 ('CBD', 'CDB'),
58                 ('depth','_depth'),('speed', '_speed'),
59                 ('elevation', '_ele_'), ('stage','_stage'))
60
61    generate_filename = []
62    input_ascii = glob.glob(folder + 'dampier_All_stage.asc')
63
64    for infile in input_ascii:
65        output_DEM = os.path.basename(infile)[:-4]
66        for (key, rep) in replicate:
67            output_DEM = output_DEM.replace(key,rep)
68        output_DEM = output_DEM[:10]
69        if output_DEM in generate_filename:
70            print 'Output_DEM filename (%s) already in use' % output_DEM
71            sys.exit(10)
72        generate_filename.append(output_DEM)
73
74        print 'Output DEM ',output_DEM
75       
76        print 'Process: ASCII to Raster'
77        gp.ASCIIToRaster_conversion(infile, output_DEM, "FLOAT")
78
79        print 'Process: Define Projection' 
80        gp.DefineProjection_management(output_DEM, "PROJCS['GDA_1994_MGA_Zone_50',GEOGCS['GCS_GDA_1994',DATUM['D_GDA_1994',SPHEROID['GRS_1980',6378137.0,298.257222101]],PRIMEM['Greenwich',0.0],UNIT['Degree',0.0174532925199433]]"
81                                                   ",PROJECTION['Transverse_Mercator'],PARAMETER['False_Easting',500000.0],PARAMETER['False_Northing',10000000.0],PARAMETER['Central_Meridian',117.0],PARAMETER['Scale_Factor',0.9996]"
82                                                   ",PARAMETER['Latitude_Of_Origin',0.0],UNIT['Meter',1.0]]")
83##        output_extract = output_DEM + 'E'
84##        print 'Output Extract ',output_extract
85##        print 'Process: Extract by Mask'
86##        gp.ExtractByMask_sa(output_DEM, land, output_extract)
87
88
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