hub/data/energy_systems/heat_pumps/w2w_parallel.txt

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B 1 MUL
149.1
264.1
B 2 MUL
259.1
190.1
B 3 MUL
296.1
160.1
289.2
298.1
83.1
B 4 MUL
252.1
79.1
151.1
B 5 MUL
79.1
205.1
B 6 MUL
33.1
178.1
B 7 MUL
162.1
260.1
B 8 MUL
171.1
297.1
B 9 MUL
176.1
79.1
169.1
B 10 MUL
176.1
79.1
170.1
B 11 MUL
255.1
40.1
B 12 MUL
176.1
164.1
B 13 MUL
304.1
231.1
256.1
B 14 MUL
245.1
233.1
299.1
B 15 MUL
282.1
153.1
B 16 MUL
79.1
192.1
B 17 MUL
252.1
176.1
79.1
195.1
B 18 MUL
304.1
13.1
B 19 MUL
281.1
89.1
84.1
81.1
B 20 MUL
202.1
258.1
B 21 MUL
261.1
199.1
B 22 MUL
146.1
263.1
B 23 MUL
252.1
79.1
186.1
B 24 MUL
252.1
189.1
B 25 MUL
242.1
175.1
B 26 MUL
283.1
193.1
148.1
B 27 MUL
252.1
155.1
B 28 MUL
289.1
257.1
B 29 MUL
252.1
176.1
79.1
163.1
B 30 MUL
253.1
88.1
B 31 MUL
240.1
161.1
B 32 MUL
286.1
145.1
144.1
B 33 MUL
241.1
200.1
B 34 MUL
194.1
262.1
B 35 MUL
252.1
176.1
201.1
B 36 MUL
172.1
76.1
B 37 MUL
252.1
176.1
198.1
B 38 MUL
295.1
86.1
B 39 MUL
302.1
157.1
B 40 MUL
79.1
281.1
B 41 MUL
281.1
85.1
84.1
81.1
B 42 MUL
176.1
166.1
B 61 NOP
72.1
B 62 NOP
30.1
B 63 NOP
80.1
B 64 NOP
38.1
B 65 NOP
71.1
B 66 NOP
80.1
B 67 NOP
68.1
B 68 NOP
289.2
B 69 NOP
11.1
B 70 NOP
279.1
B 71 NOP
176.1
B 72 NOP
71.1
B 73 NOP
287.1
B 74 NOP
38.1
B 75 SUM
28.1
39.1
B 76 SUM
176.1
229.1
B 77 SUM
224.1
277.1
B 78 SUM
197.1
280.2
B 79 SUM
8.1
14.1
20.1
B 80 SUM
75.1
227.1
B 81 SUM
18.1
303.1
B 82 SUM
67.1
226.1
B 83 SUM
177.1
223.1
B 84 SUM
294.1
254.1
B 85 SUM
1.1
27.1
21.1
42.1
34.1
16.1
37.1
4.1
10.1
29.1
196.1
B 86 SUM
230.1
234.1
B 87 SUM
69.1
225.1
B 88 SUM
69.1
228.1
B 89 SUM
22.1
24.1
2.1
12.1
7.1
5.1
35.1
23.1
9.1
17.1
179.1
B 144 CONST
P 144
$FuelEF % Constant value
B 145 CONST
P 145
300 % Constant value
B 146 CONST
P 146
$b1 % Constant value
B 147 CONST
P 147
$HPDisactivationTemperature % Constant value
B 148 CONST
P 148
$FuelPrice % Constant value
B 149 CONST
P 149
$a1 % Constant value
B 150 CONST
P 150
$FuelLHV % Constant value
B 151 CONST
P 151
$a8 % Constant value
B 152 CONST
P 152
$HPNominalCapacity % Constant value
B 153 CONST
P 153
$TemperatureDifference % Constant value
B 154 CONST
P 154
2 % Constant value
B 155 CONST
P 155
$a2 % Constant value
B 156 CONST
P 156
2 % Constant value
B 157 CONST
P 157
$BuildingSuppTemp % Constant value
B 158 CONST
P 158
$AuxHeaterEfficiency % Constant value
B 159 CONST
P 159
5 % Constant value
B 160 CONST
P 160
$Cp % Constant value
B 161 CONST
P 161
$ElecGridEF % Constant value
B 162 CONST
P 162
$b5 % Constant value
B 163 CONST
P 163
$a10 % Constant value
B 164 CONST
P 164
$b4 % Constant value
B 165 CONST
P 165
$HPReactivationTemperature % Constant value
B 166 CONST
P 166
$a4 % Constant value
B 167 CONST
P 167
2 % Constant value
B 168 CONST
P 168
9 % Constant value
B 169 CONST
P 169
$b9 % Constant value
B 170 CONST
P 170
$a9 % Constant value
B 171 CONST
P 171
$LowestPossibleLoadFlow % Constant value
B 172 CONST
P 172
$Cp % Constant value
B 173 CONST
P 173
2 % Constant value
B 174 CONST
P 174
$HPNominalCapacity % Constant value
B 175 CONST
P 175
$ElectricityPrice % Constant value
B 176 CONST
P 176
$HPSupTemp % Constant value
B 177 CONST
P 177
$BuildingSuppTemp % Constant value
B 178 CONST
P 178
$Cp % Constant value
B 179 CONST
P 179
$b11 % Constant value
B 180 CONST
P 180
40 % Constant value
B 181 CONST
P 181
0 % Constant value
B 182 CONST
P 182
$Cp % Constant value
B 183 CONST
P 183
$TemperatureDifference % Constant value
B 184 CONST
P 184
2 % Constant value
B 185 CONST
P 185
0 % Constant value
B 186 CONST
P 186
$b8 % Constant value
B 187 CONST
P 187
$MaximumHPEnergyInput % Constant value
B 188 CONST
P 188
12 % Constant value
B 189 CONST
P 189
$b2 % Constant value
B 190 CONST
P 190
$b3 % Constant value
B 191 CONST
P 191
2 % Constant value
B 192 CONST
P 192
$a6 % Constant value
B 193 CONST
P 193
300 % Constant value
B 194 CONST
P 194
$a5 % Constant value
B 195 CONST
P 195
$b10 % Constant value
B 196 CONST
P 196
$a11 % Constant value
B 197 CONST
P 197
10 % Constant value
B 198 CONST
P 198
$a7 % Constant value
B 199 CONST
P 199
$a3 % Constant value
B 200 CONST
P 200
7.13 % Constant value
B 201 CONST
P 201
$b7 % Constant value
B 202 CONST
P 202
$HighestPossibleLoadFlow % Constant value
B 203 CONST
P 203
12 % Constant value
B 204 CONST
P 204
$MaximumHPEnergyInput % Constant value
B 205 CONST
P 205
$b6 % Constant value
B 206 CONST
P 206
8000 % Constant value
B 207 CONST
P 207
0.38 % Constant value
B 208 CUMC
301.2
19.1
B 209 CUMC
301.3
31.1
32.1
B 210 CUMC
301.3
25.1
26.1
B 211 CUMC
301.2
25.1
26.1
B 212 CUMC
301.4
19.1
B 213 CUMC
301.3
305.1
B 214 CUMC
301.3
19.1
B 215 CUMC
301.2
31.1
32.1
B 216 CUMC
301.2
305.1
B 217 SCREEN
249.1
P 217
'*' % Format
'Total Electricity Cost in a Year (CAD)' % Headline
B 218 SCREEN
246.1
P 218
'*' % Format
'Total CO2 Emissions from Auxiliary Heater (g)' % Headline
B 219 SCREEN
247.1
P 219
'*' % Format
'Total Fossil Fuel consumption in a Year (m3)' % Headline
B 220 SCREEN
251.1
P 220
'*' % Format
'Total Cost of the Auxiliary Heater Fuel in a Year (CAD)' % Headline
B 221 SCREEN
235.1
P 221
'*' % Format
'HP Seasonal COP' % Headline
B 222 SCREEN
248.1
P 222
'*' % Format
'Total CO2 Emissions from Electricity Grid (g)' % Headline
B 223 CHS
289.1
B 224 CHS
243.1
B 225 CHS
62.1
B 226 CHS
74.1
B 227 CHS
183.1
B 228 CHS
234.1
B 229 CHS
70.1
B 230 CHS
11.1
B 231 GE
287.1
165.1
P 231
0 % Error tolerance
B 232 GE
287.1
147.1
P 232
0 % Error tolerance
B 233 GE
245.1
171.1
P 233
0 % Error tolerance
B 234 DIV
265.1
15.1
B 235 DIV
250.1
250.2
B 236 DIV
204.1
152.1
B 237 DIV
3.1
158.1
B 238 DIV
41.1
19.1
B 239 DIV
306.1
36.1
B 240 DIV
19.1
188.1
B 241 DIV
187.1
174.1
B 242 DIV
19.1
203.1
B 243 DIV
187.1
6.1
B 244 DIV
237.1
150.1
B 245 DIV
239.1
281.1
B 246 CUM
32.1
B 247 CUM
305.1
B 248 CUM
31.1
B 249 CUM
25.1
B 250 CUM
41.1
19.1
B 251 CUM
26.1
B 252 HXS
77.1
33.1
300.2
207.1
P 252
1 % Mode
5000 % Overall heat transfer coefficient
1007 % Specific heat of side 1 fluid
1007 % Specific heat of side 2 fluid
B 253 GT
69.1
234.1
B 254 GT
301.2
168.1
B 255 GT
41.1
185.1
B 256 GT
278.1
181.1
B 257 GT
289.1
157.1
B 258 GT
245.1
202.1
B 259 EXPG
176.1
154.1
B 260 EXPG
79.1
156.1
B 261 EXPG
176.1
173.1
B 262 EXPG
79.1
184.1
B 263 EXPG
252.1
191.1
B 264 EXPG
252.1
167.1
B 265 READ
P 265
1 % Number of values to be read per record
0 % Number of records to be skipped on the first call
$HeatingDemand % File name
'*' % Fortran format
B 266 READ
P 266
1 % Number of values to be read per record
0 % Number of records to be skipped on the first call
$WaterTemperature % File name
'*' % Fortran format
B 267 WRITE
208.1
208.2
P 267
2 % Mode
$fileOut8 % File name
'*' % Fortran format
B 268 WRITE
210.1
210.2
210.3
P 268
2 % Mode
$fileOut7 % File name
'*' % Fortran format
B 269 WRITE
301.1
301.2
301.3
301.4
301.5
41.1
265.1
11.1
234.1
30.1
87.1
65.1
64.1
73.1
289.2
289.1
244.1
285.1
68.1
75.1
80.1
74.1
66.1
82.1
63.1
62.1
287.4
288.2
288.1
287.1
287.2
287.3
287.4
287.5
19.1
238.1
280.2
25.1
26.1
31.1
32.1
P 269
2 % Mode
$fileOut1 % File name
'*' % Fortran format
B 270 WRITE
213.1
213.2
P 270
2 % Mode
$fileOut9 % File name
'*' % Fortran format
B 271 WRITE
301.1
301.2
301.3
212.1
212.2
P 271
2 % Mode
$fileOut10 % File name
'*' % Fortran format
B 272 WRITE
209.1
209.2
209.3
P 272
2 % Mode
$fileOut2 % File name
'*' % Fortran format
B 273 WRITE
211.1
211.2
211.3
P 273
2 % Mode
$fileOut3 % File name
'*' % Fortran format
B 274 WRITE
214.1
214.2
P 274
2 % Mode
$fileOut6 % File name
'*' % Fortran format
B 275 WRITE
216.1
216.2
P 275
2 % Mode
$fileOut4 % File name
'*' % Fortran format
B 276 WRITE
215.1
215.2
215.3
P 276
2 % Mode
$fileOut5 % File name
'*' % Fortran format
B 277 DELAY
252.1
P 277
10 % Initial value
B 278 DELAY
41.1
P 278
0 % Initial value
B 279 DELAY
288.1
P 279
25 % Initial value
B 280 GENGT2
308.1
308.3
308.4
308.5
308.7
308.8
301.1
301.2
301.3
301.4
P 280
45.5 % Latitude
-73.62 % Longitude
-5 % UTC Time zone
1 % Variance factor of the Gordon Reddy correlation
0 % Year-to-year variability
0.3 % Autocorrelation coefficient lag one
0.171 % Autocorrelation coefficient lag two
4711 % Initialisation of random number generator
2 % Maximum allowed mean temperature deviation
100 % Maximum number of iterations
B 281 INT
236.1
B 282 ATT
182.1
P 282
1000 % Attenuation factor a
B 283 ATT
244.1
P 283
$FuelDensity % Attenuation factor a
B 284 ATT
244.1
P 284
$FuelDensity % Attenuation factor a
B 285 ATT
3.1
P 285
1000 % Attenuation factor a
B 286 ATT
244.1
P 286
$FuelDensity % Attenuation factor a
B 287 TANKST
61.1
62.1
66.1
74.1
78.1
307.1
P 287
$TESCapacity % Tank volume
4 % Number of temperature nodes
$TESDiameter % Tank diameter
$Cp % Specfic heat of fluid
$Rhow % Fluid density
0 % Overall heat-loss coefficient
1 % Effective heat conductivity
30 % Initial tank temperature
B 288 MIXER % Point 11
287.4
30.1
63.1
82.1
B 289 MIXER % Point 5
65.1
87.1
73.1
64.1
B 294 LT
301.2
159.1
B 295 LT
11.1
234.1
B 296 LT
11.1
234.1
B 297 LT
245.1
171.1
B 298 LT
289.1
180.1
B 299 LE
245.1
202.1
P 299
0 % Error tolerance
B 300 UBHLOSS
206.1
266.1
P 300
400 % bp1
0.5 % bp2
0.05 % bp3
3 % bp4
4200 % bp5
1000 % bp6
5 % bp7
20 % bp8
300 % bp9
B 301 CLOCK
P 301
$StartYear % Start year
$StartMonth % Start month
$StartDay % Start day
$StartHour % Start hour
$StartMinute % Start minute
$StartSecond % Start second
$EndYear % End year
$EndMonth % End month
$EndDay % End day
$EndHour % End hour
$EndMinute % End minute
$EndSecond % End second
5 % Increment
'm' % Unit
B 302 INV
257.1
B 303 INV
231.1
B 304 INV
232.1
B 305 GAIN
284.1
P 305
300 % Gain factor g
B 306 GAIN
204.1
P 306
1000 % Gain factor g
B 307 SOY
301.1
301.2
301.3
301.4
301.5
301.6
B 308 MTM2
301.2
P 308
'Montreal' % Location