source: anuga_validation/okushiri_2005/run_okushiri.py @ 3882

Last change on this file since 3882 was 3882, checked in by ole, 16 years ago

Added the parallel capability to run_okushiri.py

File size: 2.7 KB
Line 
1"""Validation of the AnuGA implementation of the shallow water wave equation.
2
3This script sets up Okushiri Island benchmark as published at the
4
5THE THIRD INTERNATIONAL WORKSHOP ON LONG-WAVE RUNUP MODELS
6June 17-18 2004
7Wrigley Marine Science Center
8Catalina Island, California
9http://www.cee.cornell.edu/longwave/
10
11
12The validation data was downloaded and made available in this directory
13for convenience but the original data is available at
14http://www.cee.cornell.edu/longwave/index.cfm?page=benchmark&problem=2
15where a detailed description of the problem is also available.
16
17
18Run create_okushiri.py to process the boundary condition and build a the
19mesh before running this script.
20
21"""
22
23# Module imports
24from anuga.shallow_water import Domain
25from anuga.shallow_water import Reflective_boundary
26from anuga.shallow_water import Transmissive_Momentum_Set_Stage_boundary
27from anuga.abstract_2d_finite_volumes.util import file_function
28
29from anuga_parallel.parallel_api import myid, numprocs, distribute
30
31import project
32
33
34#-------------------------
35# Create Domain from mesh
36#-------------------------
37domain = Domain(project.mesh_filename, use_cache=True, verbose=True)
38print domain.statistics()
39
40#-------------------------
41# Initial Conditions
42#-------------------------
43domain.set_quantity('friction', 0.0)
44domain.set_quantity('stage', 0.0)
45domain.set_quantity('elevation',
46                    filename=project.bathymetry_filename,
47                    alpha=0.02,                   
48                    verbose=True,
49                    use_cache=True)
50
51#-------------------------
52# Distribute domain
53#-------------------------
54domain = distribute(domain)
55
56# Parameters
57domain.set_name(project.output_filename)  # Name of output sww file
58domain.set_default_order(2)               # Apply second order scheme
59domain.set_all_limiters(0.9)              # Max second order scheme (old lim)
60domain.set_minimum_storable_height(0.001) # Don't store w < 0.001m
61domain.set_maximum_allowed_speed(0.1)     # Allow a little runoff (0.1 is OK)
62
63
64#-------------------------
65# Boundary Conditions
66#-------------------------
67
68# Create boundary function from timeseries provided in file
69function = file_function(project.boundary_filename,
70                         domain, verbose=True)
71
72# Create and assign boundary objects
73Bts = Transmissive_Momentum_Set_Stage_boundary(domain, function)
74Br = Reflective_boundary(domain)
75domain.set_boundary({'wave': Bts, 'wall': Br})
76
77
78#-------------------------
79# Evolve through time
80#-------------------------
81import time
82t0 = time.time()
83
84for t in domain.evolve(yieldstep = 0.05, finaltime = 22.5):
85    domain.write_time()
86
87print 'That took %.2f seconds' %(time.time()-t0)
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