source: anuga_work/production/busselton/project.py @ 6201

Last change on this file since 6201 was 6201, checked in by kristy, 15 years ago

Updating scripts

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1"""Common filenames and locations for elevation, meshes and outputs.
2This script is the heart of all scripts in the folder
3"""
4#------------------------------------------------------------------------------
5# Import necessary modules
6#------------------------------------------------------------------------------
7
8from os import sep, environ, getenv, getcwd
9from os.path import expanduser
10import sys
11from time import localtime, strftime, gmtime
12from anuga.utilities.polygon import read_polygon, plot_polygons, is_inside_polygon, number_mesh_triangles
13from anuga.utilities.system_tools import get_user_name, get_host_name
14from anuga.shallow_water.data_manager import urs2sts,create_sts_boundary
15from anuga.utilities.polygon import read_polygon, plot_polygons, polygon_area, is_inside_polygon
16
17#------------------------------------------------------------------------------
18# Directory setup
19#------------------------------------------------------------------------------
20# Note: INUNDATIONHOME is the inundation directory, not the data directory.
21
22home = getenv('INUNDATIONHOME') + sep +'data'+sep #Sandpit's parent diruser = get_user_name()
23muxhome = getenv('MUXHOME')
24user = get_user_name()
25host = get_host_name()
26
27# determines time for setting up output directories
28time = strftime('%Y%m%d_%H%M%S',localtime()) 
29gtime = strftime('%Y%m%d_%H%M%S',gmtime()) 
30build_time = time+'_build'
31run_time = time+'_run'
32
33#------------------------------------------------------------------------------
34# Initial Conditions
35#------------------------------------------------------------------------------
36
37# this section needs to be updated to reflect the modelled community.
38# Note, the user needs to set up the directory system accordingly
39state = 'western_australia'
40scenario_name = 'busselton'
41scenario = 'busselton_tsunami_scenario'
42
43# Model specific parameters. One or all can be changed each time the
44# run_scenario script is executed
45tide = 0              #0.6
46#event_number = 27255 # Java 9.3 worst case for Perth
47#event_number = 68693 # Sumatra 9.2
48event_number = 27283  # Java 9.3 original
49alpha = 0.1             # smoothing parameter for mesh
50friction=0.01           # manning's friction coefficient
51starttime=0             
52finaltime=80000         # final time for simulation
53
54setup='final'  # Final can be replaced with trial or basic.
55               # Either will result in a coarser mesh that will allow a
56               # faster, but less accurate, simulation.
57
58if setup =='trial':
59    print'trial'
60    res_factor=10
61    time_thinning=48
62    yieldstep=240
63if setup =='basic': 
64    print'basic'
65    res_factor=4
66    time_thinning=12
67    yieldstep=120
68if setup =='final': 
69    print'final'
70    res_factor=1
71    time_thinning=4
72    yieldstep=60
73
74#------------------------------------------------------------------------------
75# Revision numbers - for comparisons study
76#------------------------------------------------------------------------------
77rev_num = 'newExtent'
78#rev_num = '5449'
79#rev_num = '4695' # 2nd Sept 2007
80#rev_num = '4743' # 3nd Oct 2007
81#rev_num = '4777' # 1st Nov 2007
82#rev_num = '4874' # 3rd Dec 2007
83#rev_num = '4901' # 3rd Jan 2007
84#rev_num = '4990' # 5th Feb 2007
85#rev_num = '5103' # 3rd March 2007
86#rev_num = '5120' # 5th March 2007
87#rev_num = '5140' # 7th March 2007
88#rev_num = '5160' # 11th March 2007
89#rev_num = '5185' # 1st April 2007
90#rev_num = '5273' # 2nd May 2007
91
92
93#------------------------------------------------------------------------------
94# Output Filename
95#------------------------------------------------------------------------------
96# Important to distinguish each run - ensure str(user) is included!
97# Note, the user is free to include as many parameters as desired
98dir_comment='_'+setup+'_'+str(tide)+'_'+str(event_number)+'_'+ 'alpha' +str(alpha)+'_'+str(user)
99
100#------------------------------------------------------------------------------
101# Input Data
102#------------------------------------------------------------------------------
103
104# elevation data used in build_busselton.py
105# onshore data: format ascii grid with accompanying projection file
106onshore_name = 'busselton_v2_gda94_mga50' 
107# coastline: format x,y,elevation (with title)
108coast_name = 'Busselton_Contour0.txt'
109coast_name1 = 'Busselton_BeachSurvey.txt'
110# bathymetry: format x,y,elevation (with title)
111offshore_name = 'Busselton_NavyFinal.txt'
112offshore_name1 = 'Busselton_Chart.txt'
113offshore_name2 = 'Busselton_Digitised.txt'
114offshore_name3 = 'Busselton_250m.txt' # for areas that were heading to zero - 2005 Bathymetry grid
115offshore_name4 = 'DPI.txt' # for area within Bunbury 500 mesh less than zero generated from TIN
116offshore_name5 = 'topo_20m_buss_1km' # for area within Busselton 500 mesh less than zero generated from TIN
117
118# gauges - used in get_timeseries.py
119#gauge_name = scenario_name+'.txt'
120gauge_name = 'Gauges.csv'
121# buildings - used in run_building_inundation.py
122building = 'busselton_res_clip'
123
124
125# BOUNDING POLYGON - used in build_boundary.py and run_busselton.py respectively
126# NOTE: when files are put together the points must be in sequence - for ease go clockwise!
127# Check the run_busselton.py for boundary_tags
128# thinned ordering file from Hazard Map: format is index,latitude,longitude (with title)
129order_filename = 'thinned_boundary_ordering.csv'
130#landward bounding points
131landward = 'landward_bounding_polygon.csv'
132
133#------------------------------------------------------------------------------
134# Output Elevation Data
135#------------------------------------------------------------------------------
136# Output filename for elevation
137# this is a combination of all the data (utilisied in build_boundary)
138combined_name ='busselton_combined_elevation'
139combined_smaller_name = 'busselton_combined_elevation_smaller'
140
141#------------------------------------------------------------------------------
142# Directory Structure
143#------------------------------------------------------------------------------
144anuga_dir = home+state+sep+scenario+sep+'anuga'+sep
145topographies_in_dir = home+state+sep+scenario+sep+'elevation_final'+sep+'points'+sep
146topographies_dir = anuga_dir+'topographies'+sep
147polygons_dir = anuga_dir+'polygons'+sep
148tide_dir = anuga_dir+'tide_data'+sep
149boundaries_dir = anuga_dir+'boundaries'+ sep
150output_dir = anuga_dir+'outputs'+sep
151gauges_dir = anuga_dir+'gauges'+sep
152meshes_dir = anuga_dir+'meshes'+sep
153
154#------------------------------------------------------------------------------
155# Location of input and output data
156#------------------------------------------------------------------------------
157# where the input data sits
158onshore_in_dir_name = topographies_in_dir + onshore_name #topo
159coast_in_dir_name = topographies_in_dir + coast_name #coastline
160coast_in_dir_name1 = topographies_in_dir + coast_name1 #beach survey
161offshore_in_dir_name = topographies_in_dir + offshore_name #bathymetry
162offshore_in_dir_name1 = topographies_in_dir + offshore_name1 #bathymetry Charts
163offshore_in_dir_name2 = topographies_in_dir + offshore_name2 #Digitised Fairsheet
164offshore_in_dir_name3 = topographies_in_dir + offshore_name3 #250m
165offshore_in_dir_name4 = topographies_in_dir + offshore_name4 #Bunbury DPI
166offshore_in_dir_name5 = topographies_in_dir + offshore_name5 #Busselton Topo
167
168# where the output data sits
169onshore_dir_name = topographies_dir + onshore_name
170
171coast_dir_name = topographies_dir + coast_name
172coast_dir_name1 = topographies_dir + coast_name1
173
174offshore_dir_name = topographies_dir + offshore_name
175offshore_dir_name1 = topographies_dir + offshore_name1
176offshore_dir_name2 = topographies_dir + offshore_name2
177offshore_dir_name3 = topographies_dir + offshore_name3
178offshore_dir_name4 = topographies_dir + offshore_name4
179offshore_dir_name5 = topographies_dir + offshore_name5
180
181# where the combined elevation file sits
182combined_dir_name = topographies_dir + combined_name
183combined_smaller_name_dir = topographies_dir + combined_smaller_name
184
185# where the mesh sits (this is created during the run_busselton.py)
186meshes_dir_name = meshes_dir + scenario_name+'.msh'
187
188# where the boundary ordering files sit (this is used within build_boundary.py)
189order_filename_dir = boundaries_dir + order_filename
190
191# where the landward points of boundary extent sit (this is used within run_busselton.py)
192landward_dir = boundaries_dir + landward
193
194# where the event sts files sits (this is created during the build_boundary.py)
195boundaries_dir_event = boundaries_dir + str(event_number) + sep
196boundaries_dir_mux = muxhome
197
198# where the directory of the output filename sits
199output_build_time_dir = output_dir+build_time+dir_comment+sep   #used for build_busselton.py
200output_run_time_dir = output_dir+run_time+dir_comment+sep       #used for run_busselton.py
201output_run_time_dir_name = output_run_time_dir + scenario_name  #Used by post processing
202
203#w here the directory of the gauges sit
204gauges_dir_name = gauges_dir + gauge_name       #used for get_timeseries.py
205building_in_dir_name = gauges_dir + building + '.csv'    #used for run_building_inundation.py
206
207#------------------------------------------------------------------------------
208# Interior region definitions
209#------------------------------------------------------------------------------
210
211#Land, to set the initial stage/water to be offcoast only
212poly_mainland = read_polygon(polygons_dir+'initial_condition.csv')
213
214#Land, to set the initial stage/water to be offcoast only
215poly_marina = read_polygon(polygons_dir+'initial_condition_marina.csv')
216
217# Initial bounding polygon for data clipping
218poly_all = read_polygon(polygons_dir+'poly_all_extend.csv')
219res_poly_all = 100000*res_factor
220
221# Area of Interest 1 (Busselton)
222poly_aoi1 = read_polygon(polygons_dir+'busselton_1km.csv')
223res_aoi1 = 500*res_factor
224
225# Area of Interest 2 (Bunbury)
226poly_aoi2 = read_polygon(polygons_dir+'bunbury_1km.csv')
227res_aoi2 = 500*res_factor
228
229# Area of Significance 1 (Busselton)
230poly_aos1 = read_polygon(polygons_dir+'busselton_2km.csv')
231res_aos1 = 10000*res_factor
232
233# Area of Significance 2 (Bunbury)
234poly_aos2 = read_polygon(polygons_dir+'busselton_2km.csv')
235res_aos2 = 10000*res_factor
236
237# Refined areas
238# Polygon designed to islands
239poly_aos3 = read_polygon(polygons_dir+'island1.csv')
240res_aos3 = 10000*res_factor
241poly_aos4 = read_polygon(polygons_dir+'island2.csv')
242res_aos4 = 10000*res_factor
243
244# Shallow water 1
245poly_sw1 = read_polygon(polygons_dir+'coast_5km_d20m.csv')
246res_sw1 = 40000*res_factor
247
248# Combined all regions, must check that all are included!
249interior_regions = [[poly_aoi1,res_aoi1],[poly_aoi2,res_aoi2]
250                     ,[poly_aos1,res_aos1],[poly_aos2,res_aos2]
251                     ,[poly_aos3,res_aos3],[poly_aos4,res_aos4]
252                     ,[poly_sw1,res_sw1]]
253
254   
255trigs_min = number_mesh_triangles(interior_regions, poly_all, res_poly_all)
256print 'min estimated number of triangles', trigs_min
257   
258#------------------------------------------------------------------------------
259# Clipping regions for export to asc and regions for clipping data
260# Final inundation maps should only be created in regions of the finest mesh
261#------------------------------------------------------------------------------
262
263# exporting asc grid for Busselton
264xminBusselton = 340000
265xmaxBusselton = 352000
266yminBusselton = 6271500
267ymaxBusselton = 6280000
268
269# exporting asc grid for Bunbury
270xminBunbury = 369000
271xmaxBunbury = 381000
272yminBunbury = 6308000
273ymaxBunbury = 6316500
274
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