Daikin EUW(*)80КХ [7/40] Capacity tables
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3
Capacity tables
3-1
Cooling / heating capacities for air conditioning applications
LEAVING WATER
CONDENSER
20 25 30 35
LWE
MODEL
CC HC PI CC HC PI CC HC PI CC HC PI
4 40 111 131 20.7 109 132 23.4 107 132 26.2 104 132 28.9
60 182 219 37.7 181 220 40.3 177 219 43.3 169 214 46.9
80 260 312 53.6 247 301 55.9 234 291 59.1 221 282 62.8
100 304 362 59.5 288 348 62 272 336 65.7 257 326 70.7
120 364 437 75.4 362 440 80.6 354 438 86.6 338 429 93.8
140 442 531 91.3 428 521 96.2 411 510 102 390 497 110
160 520 624 107 494 603 112 468 582 118 442 564 126
180 564 674 113 535 649 118 506 627 125 478 607 133
200 608 723 119 576 696 124 544 671 131 514 651 141
7 40 130 152 22.5 128 152 25 124 151 27.5 120 149 30
60 202 240 39.6 201 242 42.1 197 241 45.1 190 237 48.6
80 290 346 57.6 276 334 59.6 262 322 62.3 249 313 66.1
100 337 398 62.8 321 385 65.5 306 373 69.2 290 362 74
120 404 481 79.2 402 484 84.2 394 481 90.2 380 474 97.2
140 492 586 97.2 477 576 102 459 563 107 439 551 115
160 580 692 115 552 667 119 524 645 125 498 626 132
180 627 744 121 597 718 125 568 696 132 539 675 140
200 674 796 126 642 769 131 612 746 138 580 724 148
10 40 149 173 25.2 146 172 27.3 141 170 29.5 136 167 31.7
60 218 259 42.4 216 259 44.8 212 258 47.7 205 255 51.1
80 320 380 62.2 305 367 64.2 291 356 66.7 276 344 70.1
100 371 436 66.5 355 422 69.3 339 410 73 323 399 78
120 436 518 84.8 432 519 89.6 424 517 95.4 410 509 102
140 538 640 105 521 627 109 503 614 114 481 598 121
160 640 760 124 610 734 128 582 711 133 552 688 140
180 691 816 129 660 789 133 630 766 140 599 743 148
200 742 871 133 710 845 139 678 820 146 646 797 156
16 40 188 216 28.9 182 212 30.5 175 206 32.2 167 200 33.9
60 259 304 46.3 256 303 48.5 252 302 51.3 246 299 54.6
80 380 451 73.2 364 436 74 348 421 75.7 331 407 78.6
100 439 511 74.2 422 497 77.5 405 484 81.7 389 473 86.3
120 519 609 92.6 512 606 97 503 603 103 492 598 109
140 639 755 120 620 739 123 600 723 127 577 706 133
160 760 902 146 728 872 148 696 842 151 662 814 157
180 819 962 147 786 933 152 753 905 157 720 880 165
200 878 1022 148 844 994 155 810 968 163 778 946 173
SYMBOLS
CC : Cooling capacity (kW)
HC : Heating capacity (kW)
PI : Power input (kW)
LWE : Leaving Water Evaporator (°C)
LWC : Leaving water condenser (°C)
NOTES
1 Cooling capacity (CAP)
CAP = Cooling capacity from table (kW)
Capacity is for chilled water range Dt = 2∼5°C
2 Power input (PC)
PI = Power input from table (kW)
Power input is total input kW: compressor + control circuit
+ pumps (kW)
3 Water flow rate (WFR)
WFR = (860 x CAP)/(60 x Dt) (l/min)
CAP = From above calculation
Dt = Chilled water temperature rise within 2-5°C
WFR should always be within the limits
4 No pumps are supplied with the unit, so the added power
input for the pumps is calculated as (WFR x Dp)/0.3 as fixed
by 6/C/003 (Dp = pressure drop from pressure drop curves).
This is for cooled and cooling water.
5 Heating capacity has been calculated as follows:
CC+PIx0.97
•
Water-cooled • R-134a • EUW*40-200KX
6
3
3-1
187
• Hydronic Systems • Chillers
Содержание
- Table of contents euw 40 200kx 1
- Features 2
- Specifications 3
- Specifications 4
- Specifications 5
- Compressor phase 6
- Control circuit phase 6
- Frequency hz 6
- Maximum running current a 6
- Nominal distribution system voltage 6
- Nominal running current a 6
- Recommended fuses according to iec standard 269 2 am 6
- Recommended fuses am 6
- Specifications 6
- Starting current a 6
- Starting method 6
- Unit nominal running current a 6
- Units euw 120kx euw 140kx euw 160kx euw 180kx euw 200kx power supply y1 t1 y1 t1 y1 t1 y1 t1 y1 t1 6
- Voltage tolerance 6
- Voltage v 6
- Capacity tables 7
- Cc cooling capacity kw 7
- Cooling capacity cap cap cooling capacity from table kw capacity is for chilled water range dt 2 5 c 7
- Hc heating capacity kw 7
- Heating capacity has been calculated as follows cc pi x 0 7 7
- Leaving water condenser 7
- Lwc leaving water condenser c 7
- Lwe leaving water evaporator c 7
- No pumps are supplied with the unit so the added power input for the pumps is calculated as wfr x dp 0 as fixed by 6 c 003 dp pressure drop from pressure drop curves this is for cooled and cooling water 7
- Pi power input kw 7
- Power input pc pi power input from table kw power input is total input kw compressor control circuit pumps kw 7
- Water flow rate wfr wfr 860 x cap 60 x dt l min cap from above calculation dt chilled water temperature rise within 2 5 c wfr should always be within the limits 7
- Capacity tables 8
- Cc cooling capacity kw 8
- Cooling capacity cap cap cooling capacity from table kw capacity is for chilled water range dt 2 5 c 8
- Hc heating capacity kw 8
- Heating capacity has been calculated as follows cc pi x 0 7 8
- Leaving water condenser 8
- Lwc leaving water condenser c 8
- Lwe leaving water evaporator c 8
- No pumps are supplied with the unit so the added power input for the pumps is calculated as wfr x dp 0 as fixed by 6 c 003 dp pressure drop from pressure drop curves this is for cooled and cooling water 8
- Pi power input kw 8
- Power input pc pi power input from table kw power input is total input kw compressor control circuit pumps kw 8
- Water flow rate wfr wfr 860 x cap 60 x dt l min cap from above calculation dt dt chilled water temperature rise within 2 5 c wfr should always be within the limits 8
- Capacity tables 9
- Cc cooling capacity kw 9
- Cooling capacity cap cap cooling capacity from table kw capacity is for chilled water range dt 2 5 c 9
- Leaving water condenser 9
- Lwc leaving water condenser c 9
- Lwe leaving water evaporator c 9
- No pumps are supplied with the unit so the added power input for the pumps is calculated as wfr x dp 0 as fixed by 6 c 003 dp pressure drop from pressure drop curves this is for cooled and cooling water 9
- Out of range 9
- Pi power input kw 9
- Power input pc pi power input from table kw power input is total input kw compressor control circuit pumps kw 9
- Water flow rate wfr wfr 860 x cap 60 x dt l min cap from above calculation dt dt chilled water temperature rise within 2 5 c wfr should always be within the limits 9
- Capacity tables 10
- Glycol 10
- Legend 10
- Tw50689 8 10
- 2 4tw51569 7b 11
- Water pressure drop curve 11
- Operation range 12
- Dimensional drawings 13
- Dimensional drawings 14
- Dimensional drawings 15
- Dimensional drawings 16
- Dimensional drawings 17
- Dimensional drawings 18
- Piping diagrams 19
- Piping diagrams 20
- Euw 40 100kxy1 21
- Hydronic systems chillers 21
- Wiring diagrams 21
- Euw 40 100kxt1 22
- Hydronic systems chillers 22
- Wiring diagrams 22
- Euw 120 200kxy1 switchbox 1 23
- Hydronic systems chillers 23
- Wiring diagrams 23
- Euw 120 200kxy1 switchbox 2 24
- Hydronic systems chillers 24
- Wiring diagrams 24
- Euw 120 200kxt1 switchbox 1 25
- Hydronic systems chillers 25
- Wiring diagrams 25
- Euw 120 200kxt1 switchbox 2 26
- Hydronic systems chillers 26
- Wiring diagrams 26
- Wiring diagrams 27
- Sound power spectrum 28
- Sound power spectrum 29
- Sound power spectrum 30
- Installation 31
- Installation 32
- Installation 33
- Accessories options 34
- Tw51539 3a 34
- Accessories options 35
- Tw51549 3a 35
- Accessories options 36
- Tw51569 3b 36
- Accessories options 37
- Tw51579 3a 37
- Accessories options 38
- Tw51589 3a 38
- Accessories options 39
- Tw51619 3a 39
- Accessories options 40
- Number 40
- Option 40
- Std standard on unit model type for ispesl approval pressure vessels b model type for rlk approval dutch d model type for ttk approval finland k model type for sdm approval pressure vessels m model type for udt approval q model type for sa approval s model type for tu v approval pressure vessels t basic model 40
- V available not available std standard impossible option combinations zh zl 40
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