1 | """ |
---|
2 | |
---|
3 | Have the script here that produces the data and graphs for the Anuga paper. |
---|
4 | |
---|
5 | |
---|
6 | Duncan Gray, GA - 2007 |
---|
7 | |
---|
8 | |
---|
9 | |
---|
10 | """ |
---|
11 | |
---|
12 | import shutil |
---|
13 | from os import path |
---|
14 | |
---|
15 | from run_dam import main, paras2outputdir_tag |
---|
16 | from calc_rmsd import auto_plot_test_rmsd, auto_rrms |
---|
17 | from plot import plot_exp_sim_comparision, auto_plot_compare_csv_subfigures |
---|
18 | |
---|
19 | # |
---|
20 | # INPUT PARAMETERS |
---|
21 | # |
---|
22 | |
---|
23 | END_TAG = '_I' |
---|
24 | END_TAG = '_Ole' |
---|
25 | |
---|
26 | |
---|
27 | WIDTH = 0.1 |
---|
28 | |
---|
29 | # run_type 1 is the standard |
---|
30 | RUN_TYPE = 1 |
---|
31 | MAXIMUM_TRIANGLE_AREA=0.0001 |
---|
32 | YIELDSTEP = 0.01 |
---|
33 | FRICTION = 0.0 |
---|
34 | USE_LIMITS = False |
---|
35 | OUTPUTDIR_NAME = "" |
---|
36 | #OUTPUTDIR_NAME = "_no_velocity" |
---|
37 | |
---|
38 | def data(): |
---|
39 | """ |
---|
40 | Produce the data for the Hinwood part of the anuga paper. |
---|
41 | eg run the scenario. |
---|
42 | """ |
---|
43 | from scenarios import scenarios |
---|
44 | |
---|
45 | |
---|
46 | #scenarios = [scenarios[0]] |
---|
47 | for run_data in scenarios: |
---|
48 | pro_instance = main( run_data['scenario_id'] + '_boundary.tsm', |
---|
49 | run_data, |
---|
50 | maximum_triangle_area=MAXIMUM_TRIANGLE_AREA, |
---|
51 | yieldstep=YIELDSTEP, |
---|
52 | width=WIDTH, |
---|
53 | run_type=RUN_TYPE, |
---|
54 | outputdir_name=run_data['scenario_id'], |
---|
55 | use_limits=USE_LIMITS, |
---|
56 | friction=FRICTION, |
---|
57 | end_tag=END_TAG) |
---|
58 | |
---|
59 | |
---|
60 | def graph_RMSD(): |
---|
61 | """ |
---|
62 | Produce the graphs for the Hinwood part of the anuga paper. |
---|
63 | """ |
---|
64 | from scenarios import scenarios, to_publish_indexes |
---|
65 | |
---|
66 | |
---|
67 | # Workout where these plots are |
---|
68 | outputdir_tag = paras2outputdir_tag(mta=MAXIMUM_TRIANGLE_AREA, |
---|
69 | yieldstep=YIELDSTEP, |
---|
70 | width=WIDTH, |
---|
71 | use_limits=USE_LIMITS, |
---|
72 | friction=FRICTION, |
---|
73 | end_tag=END_TAG, |
---|
74 | outputdir_name=OUTPUTDIR_NAME) |
---|
75 | paper_dir = path.join('..','..','publications','anuga_2007') |
---|
76 | |
---|
77 | # Calculate the RMSD's |
---|
78 | auto_rrms(outputdir_tag, scenarios, "stage", y_location_tag=':0.0') |
---|
79 | |
---|
80 | # All of the RMSD's , one per TEST |
---|
81 | |
---|
82 | file_names = auto_plot_test_rmsd(scenarios, outputdir_tag, |
---|
83 | to_publish_indexes, |
---|
84 | #add_run_info=True) |
---|
85 | add_run_info=False) |
---|
86 | |
---|
87 | # Move the files to the dir where the paper is being put together |
---|
88 | for plot_in in file_names: |
---|
89 | head, tail = path.split(plot_in) |
---|
90 | dest = path.join(paper_dir, tail) |
---|
91 | #print "plot_in", plot_in |
---|
92 | #print "dest", dest |
---|
93 | shutil.copyfile(plot_in,dest) |
---|
94 | |
---|
95 | |
---|
96 | |
---|
97 | def graph_stage_plots(): |
---|
98 | """ |
---|
99 | Produce the graphs for the Hinwood part of the anuga paper. |
---|
100 | """ |
---|
101 | from scenarios import scenarios, to_publish_indexes |
---|
102 | |
---|
103 | # Workout where these plots are |
---|
104 | outputdir_tag = paras2outputdir_tag(mta=MAXIMUM_TRIANGLE_AREA, |
---|
105 | yieldstep=YIELDSTEP, |
---|
106 | width=WIDTH, |
---|
107 | use_limits=USE_LIMITS, |
---|
108 | friction=FRICTION, |
---|
109 | end_tag=END_TAG, |
---|
110 | outputdir_name=OUTPUTDIR_NAME) |
---|
111 | paper_dir = path.join('..','..','publications','anuga_2007') |
---|
112 | |
---|
113 | # the graphs I want |
---|
114 | # stage comparison plots for T1R5, T2R7, T3R29, T4R32. |
---|
115 | |
---|
116 | plot_files = plot_exp_sim_comparision(scenarios, outputdir_tag, |
---|
117 | y_location_tag=':0.0') |
---|
118 | for key in to_publish_indexes.iterkeys(): |
---|
119 | for plot_i in to_publish_indexes[key]: |
---|
120 | plot_file_path_name = plot_files[key][plot_i] |
---|
121 | head, tail = path.split(plot_file_path_name) |
---|
122 | dest = path.join(paper_dir, tail) |
---|
123 | shutil.copyfile(plot_file_path_name,dest) |
---|
124 | |
---|
125 | def graph_4_stage_plots(): |
---|
126 | from scenarios import scenarios, to_publish_indexes |
---|
127 | |
---|
128 | #scenarios = scenarios[:2] |
---|
129 | outputdir_tag = paras2outputdir_tag(mta=MAXIMUM_TRIANGLE_AREA, |
---|
130 | yieldstep=YIELDSTEP, |
---|
131 | width=WIDTH, |
---|
132 | use_limits=USE_LIMITS, |
---|
133 | friction=FRICTION, |
---|
134 | end_tag=END_TAG, |
---|
135 | outputdir_name=OUTPUTDIR_NAME) |
---|
136 | paper_dir = path.join('..','..','publications','anuga_2007') |
---|
137 | |
---|
138 | save_as_list = auto_plot_compare_csv_subfigures(scenarios, outputdir_tag, |
---|
139 | to_publish_indexes, |
---|
140 | add_run_info=False, |
---|
141 | #add_run_info=True, |
---|
142 | is_interactive=False) |
---|
143 | for plot_in in save_as_list: |
---|
144 | head, tail = path.split(plot_in) |
---|
145 | dest = path.join(paper_dir, tail) |
---|
146 | #print "plot_in", plot_in |
---|
147 | #print "dest", dest |
---|
148 | shutil.copyfile(plot_in,dest) |
---|
149 | |
---|
150 | #------------------------------------------------------------- |
---|
151 | if __name__ == "__main__": |
---|
152 | # Edit the top of this file to change the general input parameters |
---|
153 | |
---|
154 | data() |
---|
155 | |
---|
156 | # Produce the graphs |
---|
157 | graph_RMSD() |
---|
158 | graph_4_stage_plots() |
---|