[1280] | 1 | """Class Domain - 2D triangular domains for finite-volume computations of |
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| 2 | the shallow water wave equation |
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| 3 | |
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| 4 | |
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| 5 | Copyright 2004 |
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| 6 | Ole Nielsen, Stephen Roberts, Duncan Gray, Christopher Zoppou |
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| 7 | Geoscience Australia |
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| 8 | """ |
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| 9 | |
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| 10 | from mesh import Mesh |
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| 11 | from generic_boundary_conditions import * |
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| 12 | import types |
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| 13 | |
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| 14 | class Domain(Mesh): |
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| 15 | |
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| 16 | def __init__(self, coordinates, vertices, boundary = None, |
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| 17 | conserved_quantities = None, other_quantities = None, |
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[1753] | 18 | tagged_elements = None, geo_reference = None, |
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| 19 | use_inscribed_circle=False): |
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[1280] | 20 | |
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| 21 | Mesh.__init__(self, coordinates, vertices, boundary, |
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[1360] | 22 | tagged_elements, geo_reference, use_inscribed_circle) |
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[1280] | 23 | |
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[1508] | 24 | from Numeric import zeros, Float, Int |
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[1280] | 25 | from quantity import Quantity, Conserved_quantity |
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| 26 | |
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| 27 | #List of quantity names entering |
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| 28 | #the conservation equations |
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| 29 | #(Must be a subset of quantities) |
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| 30 | if conserved_quantities is None: |
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| 31 | self.conserved_quantities = [] |
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| 32 | else: |
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| 33 | self.conserved_quantities = conserved_quantities |
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| 34 | |
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| 35 | if other_quantities is None: |
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| 36 | self.other_quantities = [] |
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| 37 | else: |
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| 38 | self.other_quantities = other_quantities |
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| 39 | |
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| 40 | |
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| 41 | #Build dictionary of Quantity instances keyed by quantity names |
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| 42 | self.quantities = {} |
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| 43 | |
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| 44 | #FIXME: remove later - maybe OK, though.... |
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| 45 | for name in self.conserved_quantities: |
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| 46 | self.quantities[name] = Conserved_quantity(self) |
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| 47 | for name in self.other_quantities: |
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| 48 | self.quantities[name] = Quantity(self) |
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| 49 | |
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| 50 | #Create an empty list for explicit forcing terms |
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| 51 | self.forcing_terms = [] |
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| 52 | |
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| 53 | |
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| 54 | #Defaults |
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| 55 | from config import max_smallsteps, beta_w, beta_h, epsilon, CFL |
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| 56 | self.beta_w = beta_w |
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| 57 | self.beta_h = beta_h |
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| 58 | self.epsilon = epsilon |
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| 59 | |
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| 60 | #FIXME: Maybe have separate orders for h-limiter and w-limiter? |
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| 61 | #Or maybe get rid of order altogether and use beta_w and beta_h |
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| 62 | self.default_order = 1 |
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| 63 | self.order = self.default_order |
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| 64 | self.smallsteps = 0 |
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| 65 | self.max_smallsteps = max_smallsteps |
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| 66 | self.number_of_steps = 0 |
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| 67 | self.number_of_first_order_steps = 0 |
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| 68 | self.CFL = CFL |
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| 69 | |
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| 70 | #Model time |
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| 71 | self.time = 0.0 |
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| 72 | self.finaltime = None |
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| 73 | self.min_timestep = self.max_timestep = 0.0 |
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| 74 | self.starttime = 0 #Physical starttime if any (0 is 1 Jan 1970 00:00:00) |
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[1662] | 75 | |
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| 76 | ######OBSOLETE |
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[1280] | 77 | #Origin in UTM coordinates |
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| 78 | #FIXME: This should be set if read by a msh file |
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| 79 | #self.zone = zone |
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| 80 | #self.xllcorner = xllcorner |
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| 81 | #self.yllcorner = yllcorner |
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| 82 | |
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| 83 | |
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| 84 | #Checkpointing and storage |
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| 85 | from config import default_datadir |
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| 86 | self.datadir = default_datadir |
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| 87 | self.filename = 'domain' |
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| 88 | self.checkpoint = False |
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| 89 | |
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[1508] | 90 | #MH310505 To avoid calculating the flux across each edge twice, keep an integer (boolean) array, |
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| 91 | #to be used during the flux calculation |
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| 92 | N=self.number_of_elements |
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| 93 | self.already_computed_flux = zeros((N, 3), Int) |
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[1280] | 94 | |
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| 95 | #Public interface to Domain |
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| 96 | def get_conserved_quantities(self, vol_id, vertex=None, edge=None): |
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| 97 | """Get conserved quantities at volume vol_id |
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| 98 | |
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| 99 | If vertex is specified use it as index for vertex values |
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| 100 | If edge is specified use it as index for edge values |
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| 101 | If neither are specified use centroid values |
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| 102 | If both are specified an exeception is raised |
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| 103 | |
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| 104 | Return value: Vector of length == number_of_conserved quantities |
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| 105 | |
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| 106 | """ |
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| 107 | |
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| 108 | from Numeric import zeros, Float |
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| 109 | |
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| 110 | if not (vertex is None or edge is None): |
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| 111 | msg = 'Values for both vertex and edge was specified.' |
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| 112 | msg += 'Only one (or none) is allowed.' |
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| 113 | raise msg |
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| 114 | |
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| 115 | q = zeros( len(self.conserved_quantities), Float) |
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| 116 | |
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| 117 | for i, name in enumerate(self.conserved_quantities): |
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| 118 | Q = self.quantities[name] |
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| 119 | if vertex is not None: |
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| 120 | q[i] = Q.vertex_values[vol_id, vertex] |
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| 121 | elif edge is not None: |
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| 122 | q[i] = Q.edge_values[vol_id, edge] |
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| 123 | else: |
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| 124 | q[i] = Q.centroid_values[vol_id] |
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| 125 | |
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| 126 | return q |
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| 127 | |
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[2204] | 128 | def set_time(self, time=0.0): |
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| 129 | """Set the time""" |
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[1280] | 130 | |
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[2204] | 131 | self.time = time |
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| 132 | |
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[1280] | 133 | def set_quantity_vertices_dict(self, quantity_dict): |
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| 134 | """Set values for named quantities. |
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| 135 | The index is the quantity |
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| 136 | |
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| 137 | name: Name of quantity |
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| 138 | X: Compatible list, Numeric array, const or function (see below) |
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| 139 | |
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| 140 | The values will be stored in elements following their |
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| 141 | internal ordering. |
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| 142 | |
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| 143 | """ |
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| 144 | for key in quantity_dict.keys(): |
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| 145 | self.set_quantity(key, quantity_dict[key], location='vertices') |
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| 146 | |
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| 147 | |
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[1753] | 148 | def set_quantity(self, name, *args, **kwargs): |
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[1280] | 149 | """Set values for named quantity |
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| 150 | |
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| 151 | |
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[1924] | 152 | One keyword argument is documented here: |
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| 153 | expression = None, # Arbitrary expression |
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[1280] | 154 | |
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[1924] | 155 | expression: |
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| 156 | Arbitrary expression involving quantity names |
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[1280] | 157 | |
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[1924] | 158 | See Quantity.set_values for further documentation. |
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[1280] | 159 | """ |
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| 160 | |
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[1928] | 161 | #FIXME (Ole): Allow new quantities here |
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[1280] | 162 | #from quantity import Quantity, Conserved_quantity |
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| 163 | #Create appropriate quantity object |
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| 164 | ##if name in self.conserved_quantities: |
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| 165 | ## self.quantities[name] = Conserved_quantity(self) |
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| 166 | ##else: |
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| 167 | ## self.quantities[name] = Quantity(self) |
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| 168 | |
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[1924] | 169 | |
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| 170 | #Do the expression stuff |
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| 171 | if kwargs.has_key('expression'): |
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| 172 | expression = kwargs['expression'] |
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[2204] | 173 | del kwargs['expression'] |
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[1924] | 174 | |
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[1928] | 175 | Q = self.create_quantity_from_expression(expression) |
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[1924] | 176 | kwargs['quantity'] = Q |
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| 177 | |
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| 178 | |
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[2204] | 179 | #Assign values |
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[1753] | 180 | self.quantities[name].set_values(*args, **kwargs) |
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[1280] | 181 | |
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| 182 | |
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[1751] | 183 | def get_quantity(self, name, location='vertices', indices = None): |
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[1280] | 184 | """Get values for named quantity |
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| 185 | |
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| 186 | name: Name of quantity |
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| 187 | |
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[1290] | 188 | In case of location == 'centroids' the dimension values must |
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[1280] | 189 | be a list of a Numerical array of length N, N being the number |
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| 190 | of elements. Otherwise it must be of dimension Nx3. |
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| 191 | |
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[1751] | 192 | Indices is the set of element ids that the operation applies to. |
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[1280] | 193 | |
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| 194 | The values will be stored in elements following their |
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| 195 | internal ordering. |
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| 196 | """ |
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| 197 | |
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[1751] | 198 | return self.quantities[name].get_values( location, indices = indices) |
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[1280] | 199 | |
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| 200 | |
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[1928] | 201 | def create_quantity_from_expression(self, expression): |
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| 202 | """Create new quantity from other quantities using arbitrary expression |
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[1916] | 203 | |
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[1928] | 204 | Combine existing quantities in domain using expression and return |
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| 205 | result as a new quantity. |
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[1916] | 206 | |
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[1928] | 207 | Note, the new quantity could e.g. be used in set_quantity |
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[1916] | 208 | |
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[1928] | 209 | Valid expressions are limited to operators defined in class Quantity |
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| 210 | |
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| 211 | Example: |
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[2204] | 212 | |
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| 213 | |
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[1928] | 214 | """ |
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| 215 | |
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| 216 | from util import apply_expression_to_dictionary |
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| 217 | return apply_expression_to_dictionary(expression, self.quantities) |
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| 218 | |
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| 219 | |
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| 220 | |
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[2204] | 221 | |
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[1280] | 222 | def set_boundary(self, boundary_map): |
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| 223 | """Associate boundary objects with tagged boundary segments. |
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| 224 | |
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| 225 | Input boundary_map is a dictionary of boundary objects keyed |
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| 226 | by symbolic tags to matched against tags in the internal dictionary |
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| 227 | self.boundary. |
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| 228 | |
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| 229 | As result one pointer to a boundary object is stored for each vertex |
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| 230 | in the list self.boundary_objects. |
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| 231 | More entries may point to the same boundary object |
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| 232 | |
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| 233 | Schematically the mapping is from two dictionaries to one list |
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| 234 | where the index is used as pointer to the boundary_values arrays |
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| 235 | within each quantity. |
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| 236 | |
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| 237 | self.boundary: (vol_id, edge_id): tag |
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| 238 | boundary_map (input): tag: boundary_object |
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| 239 | ---------------------------------------------- |
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| 240 | self.boundary_objects: ((vol_id, edge_id), boundary_object) |
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| 241 | |
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| 242 | |
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| 243 | Pre-condition: |
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| 244 | self.boundary has been built. |
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| 245 | |
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| 246 | Post-condition: |
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| 247 | self.boundary_objects is built |
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| 248 | |
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| 249 | If a tag from the domain doesn't appear in the input dictionary an |
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| 250 | exception is raised. |
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| 251 | However, if a tag is not used to the domain, no error is thrown. |
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| 252 | FIXME: This would lead to implementation of a |
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| 253 | default boundary condition |
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| 254 | |
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| 255 | Note: If a segment is listed in the boundary dictionary and if it is |
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| 256 | not None, it *will* become a boundary - |
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| 257 | even if there is a neighbouring triangle. |
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| 258 | This would be the case for internal boundaries |
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| 259 | |
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| 260 | Boundary objects that are None will be skipped. |
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| 261 | |
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| 262 | FIXME: If set_boundary is called multiple times and if Boundary |
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| 263 | object is changed into None, the neighbour structure will not be |
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| 264 | restored!!! |
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| 265 | |
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| 266 | |
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| 267 | """ |
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| 268 | |
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| 269 | self.boundary_objects = [] |
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| 270 | self.boundary_map = boundary_map #Store for use with eg. boundary_stats. |
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| 271 | |
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| 272 | #FIXME: Try to remove the sorting and fix test_mesh.py |
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| 273 | x = self.boundary.keys() |
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| 274 | x.sort() |
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[1387] | 275 | |
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[1464] | 276 | #Loop through edges that lie on the boundary and associate them with |
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| 277 | #callable boundary objects depending on their tags |
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[1280] | 278 | for k, (vol_id, edge_id) in enumerate(x): |
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| 279 | tag = self.boundary[ (vol_id, edge_id) ] |
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| 280 | |
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| 281 | if boundary_map.has_key(tag): |
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[1464] | 282 | B = boundary_map[tag] #Get callable boundary object |
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[1280] | 283 | |
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| 284 | if B is not None: |
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| 285 | self.boundary_objects.append( ((vol_id, edge_id), B) ) |
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| 286 | self.neighbours[vol_id, edge_id] = -len(self.boundary_objects) |
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| 287 | else: |
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| 288 | pass |
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| 289 | #FIXME: Check and perhaps fix neighbour structure |
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| 290 | |
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| 291 | |
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| 292 | else: |
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| 293 | msg = 'ERROR (domain.py): Tag "%s" has not been ' %tag |
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| 294 | msg += 'bound to a boundary object.\n' |
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| 295 | msg += 'All boundary tags defined in domain must appear ' |
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| 296 | msg += 'in the supplied dictionary.\n' |
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| 297 | msg += 'The tags are: %s' %self.get_boundary_tags() |
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| 298 | raise msg |
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| 299 | |
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| 300 | |
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| 301 | def set_region(self, functions): |
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| 302 | # The order of functions in the list is used. |
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| 303 | if type(functions) not in [types.ListType,types.TupleType]: |
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| 304 | functions = [functions] |
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| 305 | for function in functions: |
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| 306 | for tag in self.tagged_elements.keys(): |
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| 307 | function(tag, self.tagged_elements[tag], self) |
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| 308 | |
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| 309 | #Do we need to do this sort of thing? |
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| 310 | #self = function(tag, self.tagged_elements[tag], self) |
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| 311 | |
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| 312 | #MISC |
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| 313 | def check_integrity(self): |
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| 314 | Mesh.check_integrity(self) |
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| 315 | |
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| 316 | for quantity in self.conserved_quantities: |
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| 317 | msg = 'Conserved quantities must be a subset of all quantities' |
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| 318 | assert quantity in self.quantities, msg |
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| 319 | |
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| 320 | ##assert hasattr(self, 'boundary_objects') |
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| 321 | |
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| 322 | def write_time(self): |
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[1826] | 323 | print self.timestepping_statistics() |
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| 324 | |
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| 325 | #Old version |
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| 326 | #if self.min_timestep == self.max_timestep: |
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| 327 | # print 'Time = %.4f, delta t = %.8f, steps=%d (%d)'\ |
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| 328 | # %(self.time, self.min_timestep, self.number_of_steps, |
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| 329 | # self.number_of_first_order_steps) |
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| 330 | #elif self.min_timestep > self.max_timestep: |
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| 331 | # print 'Time = %.4f, steps=%d (%d)'\ |
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| 332 | # %(self.time, self.number_of_steps, |
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| 333 | # self.number_of_first_order_steps) |
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| 334 | #else: |
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| 335 | # print 'Time = %.4f, delta t in [%.8f, %.8f], steps=%d (%d)'\ |
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| 336 | # %(self.time, self.min_timestep, |
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| 337 | # self.max_timestep, self.number_of_steps, |
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[2204] | 338 | # self.number_of_first_order_steps) |
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| 339 | |
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[1826] | 340 | def timestepping_statistics(self): |
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| 341 | """Return string with time stepping statistics for printing or logging |
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| 342 | """ |
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| 343 | |
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| 344 | msg = '' |
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[1280] | 345 | if self.min_timestep == self.max_timestep: |
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[1835] | 346 | msg += 'Time = %.4f, delta t = %.8f, steps=%d (%d)'\ |
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[1826] | 347 | %(self.time, self.min_timestep, self.number_of_steps, |
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| 348 | self.number_of_first_order_steps) |
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[1280] | 349 | elif self.min_timestep > self.max_timestep: |
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[1835] | 350 | msg += 'Time = %.4f, steps=%d (%d)'\ |
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[1826] | 351 | %(self.time, self.number_of_steps, |
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| 352 | self.number_of_first_order_steps) |
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[1280] | 353 | else: |
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[1835] | 354 | msg += 'Time = %.4f, delta t in [%.8f, %.8f], steps=%d (%d)'\ |
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[1826] | 355 | %(self.time, self.min_timestep, |
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| 356 | self.max_timestep, self.number_of_steps, |
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| 357 | self.number_of_first_order_steps) |
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[1280] | 358 | |
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[2204] | 359 | return msg |
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| 360 | |
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| 361 | |
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[1829] | 362 | def write_boundary_statistics(self, quantities = None, tags = None): |
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[1830] | 363 | print self.boundary_statistics(quantities, tags) |
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[2204] | 364 | |
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[1826] | 365 | def boundary_statistics(self, quantities = None, tags = None): |
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[1824] | 366 | """Output statistics about boundary forcing at each timestep |
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[1280] | 367 | |
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[1824] | 368 | Example |
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| 369 | Tag 'wall': |
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| 370 | stage in [2, 5.5] |
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| 371 | xmomentum in [] |
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| 372 | ymomentum in [] |
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| 373 | Tag 'ocean' |
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[1280] | 374 | |
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[1824] | 375 | quantities and tags can be either None, a string or a list of strings |
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| 376 | |
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[1830] | 377 | If quantities are specified only report on those. Otherwise take all conserved quantities. |
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[1824] | 378 | If tags are specified only report on those, otherwise take all tags. |
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| 379 | |
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[1280] | 380 | """ |
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| 381 | |
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[1824] | 382 | #Input checks |
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[1826] | 383 | import types, string |
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[2204] | 384 | |
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[1280] | 385 | if quantities is None: |
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| 386 | quantities = self.conserved_quantities |
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[1824] | 387 | elif type(quantities) == types.StringType: |
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| 388 | quantities = [quantities] #Turn it into a list |
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[1280] | 389 | |
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[1824] | 390 | msg = 'Keyword argument quantities must be either None, ' |
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[2204] | 391 | msg += 'string or list. I got %s' %str(quantities) |
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[1824] | 392 | assert type(quantities) == types.ListType, msg |
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[1280] | 393 | |
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[2204] | 394 | |
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[1825] | 395 | if tags is None: |
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[1824] | 396 | tags = self.get_boundary_tags() |
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| 397 | elif type(tags) == types.StringType: |
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| 398 | tags = [tags] #Turn it into a list |
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| 399 | |
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| 400 | msg = 'Keyword argument tags must be either None, ' |
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[2204] | 401 | msg += 'string or list. I got %s' %str(tags) |
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| 402 | assert type(tags) == types.ListType, msg |
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[1824] | 403 | |
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[1826] | 404 | #Determine width of longest quantity name (for cosmetic purposes) |
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| 405 | maxwidth = 0 |
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| 406 | for name in quantities: |
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[2204] | 407 | w = len(name) |
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[1826] | 408 | if w > maxwidth: |
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| 409 | maxwidth = w |
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[2204] | 410 | |
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[1826] | 411 | #Output stats |
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| 412 | msg = 'Boundary values at time %.4f:\n' %self.time |
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[1824] | 413 | for tag in tags: |
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[1826] | 414 | msg += ' %s:\n' %tag |
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[2204] | 415 | |
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[1824] | 416 | for name in quantities: |
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| 417 | q = self.quantities[name] |
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[2204] | 418 | |
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| 419 | #Find range of boundary values for tag and q |
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[1280] | 420 | maxval = minval = None |
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[1826] | 421 | for i, ((vol_id, edge_id), B) in\ |
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| 422 | enumerate(self.boundary_objects): |
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[1280] | 423 | if self.boundary[(vol_id, edge_id)] == tag: |
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| 424 | v = q.boundary_values[i] |
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| 425 | if minval is None or v < minval: minval = v |
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| 426 | if maxval is None or v > maxval: maxval = v |
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[2204] | 427 | |
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[1280] | 428 | if minval is None or maxval is None: |
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[1826] | 429 | msg += ' Sorry no information available about' +\ |
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| 430 | ' tag %s and quantity %s\n' %(tag, name) |
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[1280] | 431 | else: |
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[1826] | 432 | msg += ' %s in [%12.8f, %12.8f]\n'\ |
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| 433 | %(string.ljust(name, maxwidth), minval, maxval) |
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[1280] | 434 | |
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| 435 | |
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[1826] | 436 | return msg |
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[1280] | 437 | |
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[2204] | 438 | |
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[1280] | 439 | def get_name(self): |
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| 440 | return self.filename |
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| 441 | |
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| 442 | def set_name(self, name): |
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| 443 | self.filename = name |
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| 444 | |
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| 445 | def get_datadir(self): |
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| 446 | return self.datadir |
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| 447 | |
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| 448 | def set_datadir(self, name): |
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| 449 | self.datadir = name |
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| 450 | |
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| 451 | |
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| 452 | |
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| 453 | #def set_defaults(self): |
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| 454 | # """Set default values for uninitialised quantities. |
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| 455 | # Should be overridden or specialised by specific modules |
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| 456 | # """# |
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| 457 | # |
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| 458 | # for name in self.conserved_quantities + self.other_quantities: |
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| 459 | # self.set_quantity(name, 0.0) |
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| 460 | |
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| 461 | |
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| 462 | ########################### |
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| 463 | #Main components of evolve |
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| 464 | |
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[1862] | 465 | def evolve(self, yieldstep = None, finaltime = None, |
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| 466 | skip_initial_step = False): |
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[1280] | 467 | """Evolve model from time=0.0 to finaltime yielding results |
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| 468 | every yieldstep. |
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| 469 | |
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| 470 | Internally, smaller timesteps may be taken. |
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| 471 | |
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| 472 | Evolve is implemented as a generator and is to be called as such, e.g. |
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| 473 | |
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| 474 | for t in domain.evolve(timestep, yieldstep, finaltime): |
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| 475 | <Do something with domain and t> |
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| 476 | |
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| 477 | """ |
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| 478 | |
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| 479 | from config import min_timestep, max_timestep, epsilon |
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| 480 | |
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| 481 | #FIXME: Maybe lump into a larger check prior to evolving |
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| 482 | msg = 'Boundary tags must be bound to boundary objects before evolving system, ' |
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| 483 | msg += 'e.g. using the method set_boundary.\n' |
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| 484 | msg += 'This system has the boundary tags %s ' %self.get_boundary_tags() |
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| 485 | assert hasattr(self, 'boundary_objects'), msg |
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| 486 | |
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| 487 | ##self.set_defaults() |
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| 488 | |
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| 489 | if yieldstep is None: |
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| 490 | yieldstep = max_timestep |
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| 491 | else: |
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| 492 | yieldstep = float(yieldstep) |
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| 493 | |
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| 494 | self.order = self.default_order |
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| 495 | |
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| 496 | |
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| 497 | self.yieldtime = 0.0 #Time between 'yields' |
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| 498 | |
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| 499 | #Initialise interval of timestep sizes (for reporting only) |
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| 500 | self.min_timestep = max_timestep |
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| 501 | self.max_timestep = min_timestep |
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| 502 | self.finaltime = finaltime |
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| 503 | self.number_of_steps = 0 |
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| 504 | self.number_of_first_order_steps = 0 |
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| 505 | |
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[1581] | 506 | #update ghosts |
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| 507 | self.update_ghosts() |
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| 508 | |
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[1280] | 509 | #Initial update of vertex and edge values |
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| 510 | self.distribute_to_vertices_and_edges() |
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| 511 | |
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[1402] | 512 | #Initial update boundary values |
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| 513 | self.update_boundary() |
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[1280] | 514 | |
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| 515 | #Or maybe restore from latest checkpoint |
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| 516 | if self.checkpoint is True: |
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| 517 | self.goto_latest_checkpoint() |
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| 518 | |
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[2204] | 519 | if skip_initial_step is False: |
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[1862] | 520 | yield(self.time) #Yield initial values |
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[1280] | 521 | |
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| 522 | while True: |
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| 523 | |
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| 524 | #Compute fluxes across each element edge |
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| 525 | self.compute_fluxes() |
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| 526 | |
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| 527 | #Update timestep to fit yieldstep and finaltime |
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| 528 | self.update_timestep(yieldstep, finaltime) |
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| 529 | |
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| 530 | #Update conserved quantities |
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| 531 | self.update_conserved_quantities() |
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| 532 | |
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[1402] | 533 | #update ghosts |
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| 534 | self.update_ghosts() |
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| 535 | |
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[1280] | 536 | #Update vertex and edge values |
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| 537 | self.distribute_to_vertices_and_edges() |
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| 538 | |
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[1402] | 539 | #Update boundary values |
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| 540 | self.update_boundary() |
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| 541 | |
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[1280] | 542 | #Update time |
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| 543 | self.time += self.timestep |
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| 544 | self.yieldtime += self.timestep |
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| 545 | self.number_of_steps += 1 |
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| 546 | if self.order == 1: |
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| 547 | self.number_of_first_order_steps += 1 |
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| 548 | |
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| 549 | #Yield results |
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| 550 | if finaltime is not None and abs(self.time - finaltime) < epsilon: |
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| 551 | |
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| 552 | #FIXME: There is a rare situation where the |
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| 553 | #final time step is stored twice. Can we make a test? |
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| 554 | |
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| 555 | # Yield final time and stop |
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| 556 | yield(self.time) |
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| 557 | break |
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| 558 | |
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| 559 | |
---|
| 560 | if abs(self.yieldtime - yieldstep) < epsilon: |
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| 561 | # Yield (intermediate) time and allow inspection of domain |
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| 562 | |
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| 563 | if self.checkpoint is True: |
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| 564 | self.store_checkpoint() |
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| 565 | self.delete_old_checkpoints() |
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| 566 | |
---|
| 567 | #Pass control on to outer loop for more specific actions |
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| 568 | yield(self.time) |
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| 569 | |
---|
| 570 | # Reinitialise |
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| 571 | self.yieldtime = 0.0 |
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| 572 | self.min_timestep = max_timestep |
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| 573 | self.max_timestep = min_timestep |
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| 574 | self.number_of_steps = 0 |
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| 575 | self.number_of_first_order_steps = 0 |
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| 576 | |
---|
| 577 | |
---|
| 578 | def evolve_to_end(self, finaltime = 1.0): |
---|
| 579 | """Iterate evolve all the way to the end |
---|
| 580 | """ |
---|
| 581 | |
---|
| 582 | for _ in self.evolve(yieldstep=None, finaltime=finaltime): |
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| 583 | pass |
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| 584 | |
---|
| 585 | |
---|
| 586 | |
---|
| 587 | def update_boundary(self): |
---|
| 588 | """Go through list of boundary objects and update boundary values |
---|
| 589 | for all conserved quantities on boundary. |
---|
| 590 | """ |
---|
| 591 | |
---|
| 592 | #FIXME: Update only those that change (if that can be worked out) |
---|
| 593 | for i, ((vol_id, edge_id), B) in enumerate(self.boundary_objects): |
---|
| 594 | q = B.evaluate(vol_id, edge_id) |
---|
| 595 | |
---|
| 596 | for j, name in enumerate(self.conserved_quantities): |
---|
| 597 | Q = self.quantities[name] |
---|
| 598 | Q.boundary_values[i] = q[j] |
---|
| 599 | |
---|
| 600 | |
---|
| 601 | def compute_fluxes(self): |
---|
| 602 | msg = 'Method compute_fluxes must be overridden by Domain subclass' |
---|
| 603 | raise msg |
---|
| 604 | |
---|
| 605 | |
---|
| 606 | def update_timestep(self, yieldstep, finaltime): |
---|
| 607 | |
---|
| 608 | from config import min_timestep |
---|
| 609 | |
---|
[1697] | 610 | # self.timestep is calculated from speed of characteristics |
---|
| 611 | # Apply CFL condition here |
---|
| 612 | timestep = self.CFL*self.timestep |
---|
[1280] | 613 | |
---|
| 614 | #Record maximal and minimal values of timestep for reporting |
---|
| 615 | self.max_timestep = max(timestep, self.max_timestep) |
---|
| 616 | self.min_timestep = min(timestep, self.min_timestep) |
---|
| 617 | |
---|
| 618 | #Protect against degenerate time steps |
---|
| 619 | if timestep < min_timestep: |
---|
| 620 | |
---|
| 621 | #Number of consecutive small steps taken b4 taking action |
---|
| 622 | self.smallsteps += 1 |
---|
| 623 | |
---|
| 624 | if self.smallsteps > self.max_smallsteps: |
---|
| 625 | self.smallsteps = 0 #Reset |
---|
| 626 | |
---|
| 627 | if self.order == 1: |
---|
| 628 | msg = 'WARNING: Too small timestep %.16f reached '\ |
---|
| 629 | %timestep |
---|
| 630 | msg += 'even after %d steps of 1 order scheme'\ |
---|
| 631 | %self.max_smallsteps |
---|
| 632 | print msg |
---|
| 633 | timestep = min_timestep #Try enforcing min_step |
---|
| 634 | |
---|
| 635 | #raise msg |
---|
| 636 | else: |
---|
| 637 | #Try to overcome situation by switching to 1 order |
---|
| 638 | self.order = 1 |
---|
| 639 | |
---|
| 640 | else: |
---|
| 641 | self.smallsteps = 0 |
---|
| 642 | if self.order == 1 and self.default_order == 2: |
---|
| 643 | self.order = 2 |
---|
| 644 | |
---|
| 645 | |
---|
| 646 | #Ensure that final time is not exceeded |
---|
| 647 | if finaltime is not None and self.time + timestep > finaltime: |
---|
| 648 | timestep = finaltime-self.time |
---|
| 649 | |
---|
| 650 | #Ensure that model time is aligned with yieldsteps |
---|
| 651 | if self.yieldtime + timestep > yieldstep: |
---|
| 652 | timestep = yieldstep-self.yieldtime |
---|
| 653 | |
---|
| 654 | self.timestep = timestep |
---|
| 655 | |
---|
| 656 | |
---|
| 657 | |
---|
| 658 | def compute_forcing_terms(self): |
---|
| 659 | """If there are any forcing functions driving the system |
---|
| 660 | they should be defined in Domain subclass and appended to |
---|
| 661 | the list self.forcing_terms |
---|
| 662 | """ |
---|
| 663 | |
---|
| 664 | for f in self.forcing_terms: |
---|
| 665 | f(self) |
---|
| 666 | |
---|
| 667 | |
---|
| 668 | |
---|
| 669 | def update_conserved_quantities(self): |
---|
| 670 | """Update vectors of conserved quantities using previously |
---|
| 671 | computed fluxes specified forcing functions. |
---|
| 672 | """ |
---|
| 673 | |
---|
| 674 | from Numeric import ones, sum, equal, Float |
---|
| 675 | |
---|
| 676 | N = self.number_of_elements |
---|
| 677 | d = len(self.conserved_quantities) |
---|
| 678 | |
---|
| 679 | timestep = self.timestep |
---|
| 680 | |
---|
| 681 | #Compute forcing terms |
---|
| 682 | self.compute_forcing_terms() |
---|
| 683 | |
---|
| 684 | #Update conserved_quantities |
---|
| 685 | for name in self.conserved_quantities: |
---|
| 686 | Q = self.quantities[name] |
---|
| 687 | Q.update(timestep) |
---|
| 688 | |
---|
| 689 | #Clean up |
---|
| 690 | #Note that Q.explicit_update is reset by compute_fluxes |
---|
| 691 | |
---|
[1506] | 692 | #MH090605 commented out the following since semi_implicit_update is now re-initialized |
---|
| 693 | #at the end of the _update function in quantity_ext.c (This is called by the |
---|
| 694 | #preceeding Q.update(timestep) statement above). |
---|
| 695 | #For run_profile.py with N=128, the time of update_conserved_quantities is cut from 14.00 secs |
---|
| 696 | #to 8.35 secs |
---|
| 697 | |
---|
[1581] | 698 | #Q.semi_implicit_update[:] = 0.0 |
---|
| 699 | |
---|
[1402] | 700 | def update_ghosts(self): |
---|
| 701 | pass |
---|
[1280] | 702 | |
---|
| 703 | def distribute_to_vertices_and_edges(self): |
---|
| 704 | """Extrapolate conserved quantities from centroid to |
---|
| 705 | vertices and edge-midpoints for each volume |
---|
| 706 | |
---|
| 707 | Default implementation is straight first order, |
---|
| 708 | i.e. constant values throughout each element and |
---|
| 709 | no reference to non-conserved quantities. |
---|
| 710 | """ |
---|
| 711 | |
---|
| 712 | for name in self.conserved_quantities: |
---|
| 713 | Q = self.quantities[name] |
---|
| 714 | if self.order == 1: |
---|
| 715 | Q.extrapolate_first_order() |
---|
| 716 | elif self.order == 2: |
---|
| 717 | Q.extrapolate_second_order() |
---|
| 718 | Q.limit() |
---|
| 719 | else: |
---|
| 720 | raise 'Unknown order' |
---|
| 721 | Q.interpolate_from_vertices_to_edges() |
---|
| 722 | |
---|
| 723 | |
---|
| 724 | |
---|
[1916] | 725 | |
---|
| 726 | |
---|
| 727 | |
---|
[1280] | 728 | ############################################## |
---|
| 729 | #Initialise module |
---|
| 730 | |
---|
| 731 | #Optimisation with psyco |
---|
| 732 | from config import use_psyco |
---|
| 733 | if use_psyco: |
---|
| 734 | try: |
---|
| 735 | import psyco |
---|
| 736 | except: |
---|
| 737 | import os |
---|
| 738 | if os.name == 'posix' and os.uname()[4] == 'x86_64': |
---|
| 739 | pass |
---|
| 740 | #Psyco isn't supported on 64 bit systems, but it doesn't matter |
---|
| 741 | else: |
---|
| 742 | msg = 'WARNING: psyco (speedup) could not import'+\ |
---|
| 743 | ', you may want to consider installing it' |
---|
| 744 | print msg |
---|
| 745 | else: |
---|
| 746 | psyco.bind(Domain.update_boundary) |
---|
| 747 | #psyco.bind(Domain.update_timestep) #Not worth it |
---|
| 748 | psyco.bind(Domain.update_conserved_quantities) |
---|
| 749 | psyco.bind(Domain.distribute_to_vertices_and_edges) |
---|
| 750 | |
---|
| 751 | |
---|
| 752 | if __name__ == "__main__": |
---|
| 753 | pass |
---|