TICACentral AirConditioner Water-cooledFloodedScrewChiller (HeatPump)
Establishedin1991
TICAisa professional enterprise specialized in R&D,manufacturing,sales andservicesof environmentcleaningandthermal energyutilization.
TICAisanationalhig-techenterprise,asingleleadingenterprisecutivatedbytheMinistryofIndustryandInfomation Technologytioaladuitioerpiseofestryustrydomationologyie chairmanmemberofChinaRefrigerationandAir-conditioningIndustryAssociation.Ithasanational-recognizedenterprise technologyctenerpiseademicanoksationndaotoctoaleachokstation.Isctover Beijingirdtteoorooai Hangzhouotiportiniogielilaki MuneeraityinipnendUile.
TICAisalsotheoutstandingproviderofcentralairconditioners forChina'ssubwaynetworksandhassuccessfullyservednearly 60keysubway linesinmajorcitiessuchasBeijing,Shanghai, Guangzhounhgduuoughod TICAis a professional supplier and service provider in China that specializes in system integration of clean environment.While for microelectronics,hospital operatingrooms,biopharmaceutical industry and other professional purificationareas,ourmarket sharehasachievedover 40 % ineach.
TICA QualityForIAQ
TICAfocusesonindoorairqualityAQ)inceanenvironments.Productlinesincludereturnairurifiersheatcovery ventilatoselliidbaiii unitsuedinesialfiatioeldegingreogytbsdanOasse environment integrationsystemandwonthe firstprizeof CMiST.
TICA'sproielsllse wasteheatpowergenerationsystems.In2015,TICAandUnitedTechnologiesCorporation(UTC)establishedaglobal strategic jointventurecooperationrelationshipandacquiredPureCycleanORClow-temperaturepowergeneration companyownedbyPratt&Whitneyunder UTC.TICAobtainedPureCycletrademarksandmorethan10Opatentsand nationalcopigAsttrifullsteooldeldioolde manufacturedwiththetechnical licenseofCarrierunderUTC.
TICAischaracterizedbyexcellnt systemintegration capability.Intheapplicationof "EficientRefrigeration System ofUndergroundRailwayStation,theintegratedCOPoftherefrigerationroomamountsto6.0andtheresearch achievementreaches theinternationaladvanced level.In2018,TICAmergedandacquiredanOFCcentralair conditioning enterpriseSMARDT.TICA'sexcellentsystemintegrationcapabiltyandtheSMARDTOFCwaterchillers helpincreasetheintegratedCOPoftheefficientequipmentroomto6.7to7.0.
TICAaims to build itself into a world-leading system integration supplier and service provider that specializes in clean environment and thermal energy utilization.
| Overview 2 |
| Features 3 |
| Specifications 6 |
| Technical ParameterCorrectionFactorDiagram 13 |
| CustomizableComponent 18 |
| UnitDimensions 21 |
| Lifting Diagram 24 |
| InstallationandMaintenance 26 |
| SelectionofWaterSystemParts 30 |
| Check Itemsbefore Startup 31 |
| Routine Maintenance 33 |
TICAowns fiveproductionsitesinNanjinganjinGuangzouhengduandKualaumpurandaetworkofover 70salesand service outletsaround the world. ItsNanjing HQbasereceived3-starcertificationfornationalNo.O01greenindustrial construction.
TICAwater-cooled flooded screwchilleradoptsacompact designand is equipped with the flooded evaporator semi-hermetic double-screw compressor and high eficient heat exchanger.Together with the advanced microcomputercontrol technology,thechilleris highly stableand reliable,and features eficientand quiet operations.Available inavarietyof models,theunitsare idealforscenariosrequiringcomfortandprocess cooling.
TICA water source heat pumpunitsuse underground water,surface water,sewage,sea water,andsoil as cold andheat sources,and providecoling insummerand heating inwinter.Theoperating conditionsare stable throughouttheyear,andthecoolingand heatingcapacitiescanbe beterdeveloped;without theneeds forany cooling towers,there is minimized impacton the surroundings and the operating costs are greatly reduced.
Nomenclature
Water-cooledFloodedScrew Chiller (Heat Pump)
Features
AHRICERTIFIED? www.ahridirectory.org Water-CooledWateChillingand HeatPumpWater-HeatingPackages AHRIStandards550/590and551/591 丰 ? KCRAA ¥ CNAS +
1. Internationally Recognized Quality
Theunits have passed the certification of the Air-Conditioning,Heatingand Refrigeration Institute (AHRl) and China Refrigerationand Air-Conditioning Industry Association (CRAA).
Theunitsareup to the AHRl551/991-2011 standard (AHRl is considered to be the most prestigious organizationin the international refrigeration industry).
BothTiCAunit performance testbenchand independentlydevelopedunitselection software havepassed the AHRlcertification.Everyunit hastopass the teston the testbench recognized by AHRl before delivery.
TICAlaboratoryhasobtainednational CNAScertification.
2.High Efficiency& Energy Saving
TICA's water-cooled flooded screwchillers haveall met National EEl level2,some ofwhich havemetNational EEl level1.
* German patented, semi-hermetic double-screw compressor enables the unit to operate efficiently in both full-load and partial-load conditions.
←Evaporatorand condenser equipped with enhanced heat exchange tubes improve the heat transfer efficiencyand reduce the power consumption.
* TICA'suniquedynamicoptimizationand control algorithmsallow the unit to operateefficientlyunderdifferentoperating conditions.
Efficient Germancompressor
* The double-screw compressor special for German patented water-cooled unit boasts highadiabatic efficiency.The high-efficiencyand large-capacitymotor helps significantly reduce powerconsumption of theunit,enabling theunit to operate efficientlyinfull loadorpartial load.
* The three-stage oil separator of the compressorworkswith efficiency up to 9 9 . 5 % # * Withthesteplessregulationof theslide valve,asinglecompressorcanmatch 2 5 % 1 1 0 0 % load change,and a dual head unit can implement 1 2 . 5 % - 1 0 0 % load change. * The screw rotor is processed with patented technology,and its micron-level precisionensuresprecise engagementand longservice life. * The compressor motor cools down by air suction to ensure long service life,and thecomplete protection function guaranteessafe operationof theunit.
3. Advanced Technology
* Superhigh-efficiencyseriesareequippedwith GB19577standardcompressor toensure that their energy eficiency reaches national EEl level1;theunitsalso use eficientmotorspeciallytailoredto China'spowersupplyconditions,toensure that the compressor operatesefficiently for both full-loadand partial-load conditions;Bizter smart module control technologyalowsmonitoring the units inreal time,including their voltage,temperature,pressureand operating condition,to ensurereliableoperation.
Brand new high-efficiency heat exchanger
Theshell-and-tube type,floodedevaporator featuresnewlyarrangedand enhanced bilateral heatexchange tubesto guaranteeefficient heat exchange; uses CFD simulation to calculateand design liquid bafle to balance the air field,ensuring liquid level stability,andabsorbingair only instead of liquid and guaranteeing stable operation.
* The shell-and-tube type condenser features built-in TICA's patented oil separator,allowingtheoil separationefficiencytobeupto 9 9 . 9 % combined with thecompressor embeddedoil separator;uses CFD simulationtocalculateand analyzesub-coolingpart,and increases the refrigerant's supercooling degree by 2-3 times,ensuring that liquid supply pipes are free of gaseous refrigerant and the unit operatesefficientlyand reliably.
* The detachable lid makes it easy to cleanse the inside of heat exchange tubes, thereby ensuring high efficiency of heat exchanging.
Sophisticated throtle apparatusand unique oil return * Thesophisticated EXV features accurate control,fast speed of response,and awiderange of regulation,allowing the unit to operatereliably whetherunder full loadorpartial load.
* The continuous oil return technology-oil injected by oil-adopts the cutting-edge, special injectionpumptoinjecttheremaining 0 . 1 % oilin theevaporatorinto the compressortoensuresafeand reliablerunningof thecompressor.
* WithTiCA's patented technology of automatic oil injection,the system willautomatically start oil-injectioncontrol programwhen the oil level in the compressor reaches the low limit,ensuring the compressor's safeand efficient operation.
Compact and easy to install
←Both the evaporatorand condenserareconfigured with flangesand clamps to makefield installationconvenient.
←Theunit requiresa small floorarea due to the compact structure.
* Therefrigerant water flowranges from 4 0 % to 1 1 0 % of the nominal flow, making itmoresuitable for flowvariable primarypump.
* Theunit isconfiguredwitha compressorstartup cabinet,to facilitate on-site cable connection by the user.
* The unit is properly insulated.
* With minimal vibration,the unit isequipped with4 pieces of 30mmchloroprene rubbershock-absorbing cushions.
←Sufficient refrigerant has been charged in the unit before the entire unit is delivered.
←During installation on site,users only need to connect the water pipes of evaporator and condenser and connect the power supply.
4. Precise Control System and Reliable Operation
←Sophisticated control system
—Theindustrial-level microcomputercontroller,togetherwith the7-inch colored touch screen,constitutes the control unit of the unit.Asa result,the unit is rather reliable and jamproofand therefore ideal forcomplicated,hostileworkingenvironments.
Unique dynamic optimizationand control algorithms —Benefiting from TiCA'syearsofexperience inairconditioningdesignand application,the control algorithms feature more precise calculation of unit load;the algorithmsare integrated with TICA'sunique dynamic optimizationand control to allowtheunitstomakeadjustmentsinall operating conditionsandto ensure the unitsare keeping running inan efficient,reliableand secure manner;The refrigerant waterflowrangesfrom 4 0 % to 1 1 0 % ofthenominal flow,making itmoresuitable for flow variable primary pump.
* Intelligent control
—Theadvanced pre-control function enablesmeasures to be taken promptly before actual failure occurs to avoid unexpected shutdown of the unit due to analarm. —Multiple compressors canoperateautomatically to reacha load balanceand therefore can prolong theservice life of theunit.
—Each compressor and circuit can be controlled independentlyand can serve as thestandby foranother compressor,minimizing the impact of possible faults. —Uniqueoil returncontrol technologyresolvesthe issueof oil seperation.
—Benefiting from the fuzzycontrol technology,theunit isable toadjust thewater temperature basedonoutdoorair temperatureand hence can enhanceeficiency to the greatest extentwhile meeting the needs.
一The unit supports the compiling of weekly operating schedules to implement comprehensive automatic start and stop control of the unit,and can truly be left unattended.
←Complete safetyprotection
—Power supply protection:phase loss,reverse phase,over-voltage,and under-voltage —Compressor protection: protection for motor overheat,overload,frequent startup, oil leveland highdischarge temperature
—Pressure protection:both evaporator and condenser are equipped with safety valves,and have protection when low pressure is too low, high pressure is too high, and protection for lowairsuction/discharge pressuredifference.
一Otherprotection:too lowwater temperature protection,too lowwater flow protection,sensor failure protection,etc.
* Flexibleand convenient group communication 一Standard RS485 interface and MODBUS RTU protocol are provided,and the unit isconnected to the buildingautomationsystem (BAS),which implementscentralized control and remote monitoring of the unit and control of other attached devices according to the controlling requirement of the BAS.
←Creative wireless communication technology (optional)
—The configured wireless communication module provides Ethernet connection andsupports wireless short message prompt function.Users can access the unit parameters by sending short messages.The unit canautomatically send short messages to the specified end-numberwhen analert is generated.In this way, userscan access the running condition of the unit anytime anywhere.
Parameters of TWSF-FC1 (R134a) flooded-type water-cooled screw chiller High-efficiency series
★Note:
| Model | TWSF-FC1 | 0110.1 | 0135.1 | 0160.1 | 0175.1 | 0200.1 | 0220.1 | 0240.1 | 0265.1 | |||
| Cooling capacity | Ton | 110 | 135 | 156 | 175 | 200 | 215 | 235 | 260 | |||
| 104kcal/h | 33 | 41 | 47 | 53 | 60 | 65 | 71 | 79 | ||||
| kW | 387 | 475 | 547 | 615 | 703 | 755 | 825 | 915 | ||||
| Power input | kW 65 | 80 | 91 | 102 | 116 | 125 | 136 | 151 | ||||
| Efficiency | kW/Ton | 0.591 | 0.592 | 0.583 | 0.583 | 0.580 | 0.582 | 0.580 | 0.580 | |||
| COP | W/W | 5.95 | 5.94 | 6.01 | 6.03 | 6.06 | 6.04 | 6.07 | 6.06 | |||
| Running current | A | 121 | 141 | 162 | 176 | 208 | 215 | 232 | 260 | |||
| Starting current | A | 330 | 415 | 479 | 506 | 650 | 650 | 683 | 845 | |||
| Compressor quantity | Set | 1 1 | 1 | 1 | 1 | 1 | 1 | 1 | ||||
| Powersupply | 380V3N-50 Hz | |||||||||||
| Refrigerant | ||||||||||||
| Energycontrol | R134a Steplessregulationof energy | |||||||||||
| Evaporator | Desin pessure | Mpa | 1.0 | |||||||||
| Water flow | m³/h | 67 82 | 94 | 106 | 121 | 130 | 142 | |||||
| Wter pressure | kPa | 74 | 72 | 73 | 72 | 73 | 74 | 75 | 157 86 | |||
| Piping DN | mm | 150 150 | 150 | 150 | 150 | 150 | 150 | |||||
| Condenser | Design pessure | 150 | ||||||||||
| Waterflow | Mpa m³/h | 96 | 110 | 1.0 123 | 141 | 151 | 165 | 183 | ||||
| Water pressure | kPa | 78 86 | 77 | 87 | 86 | 85 | 72 | 78 | 68 | |||
| Piping DN | mm | 150 | 150 | 150 | 150 | 200 | 200 | 200 | 200 | |||
| Dimensions | Length | mm | 3122 | 3122 | 3122 | 3122 | 3144 | 3144 | 3144 | 3144 | ||
| Width | mm | 1500 | 1500 | 1500 | 1500 | 1550 | 1550 | 1550 | 1550 | |||
| Height | mm | 1800 | 1800 | 1800 | 1800 | 1850 | 1850 | 1850 | 1850 | |||
| Shipping weight | kg | 2750 | 3200 | 3250 | 3350 | 3800 | 3850 | 4000 | 4150 | |||
| Operating weight | kg | 3450 | 3490 | 3590 | 4150 | 4180 | 4400 | 4500 | ||||
| 2950 | ||||||||||||
| 0280.2 | 0300.2 | 0325.2 | 0350.2 | 0370.2 | 0390.2 | 0410.2 | 0430.2 | 0450.2 | 0465.2 | 0495.2 | 0510.2 | |
| 277 | 293 | 316 | 340 | 367 | 392 | 409 | 425 | 441 | 461 | 486 | 507 | |
| 84 | 89 | 95 | 103 | 111 | 119 | 124 | 129 | 133 | 139 | 147 | 153 | |
| 973 | 1030 | 1110 | 1194 | 1292 | 1379 | 1438 | 1495 | 1551 | 1620 | 1710 | 1782 | |
| 161 | 171 | 184 | 198 | 215 | 228 | 238 | 245 | 255 | 267 | 281 | 293 | |
| 0.582 | 0.584 | 0.583 | 0.583 | 0.585 | 0.581 | 0.582 | 0.576 | 0.578 | 0.579 | 0.578 | 0.578 | |
| 6.04 | 6.02 | 6.03 | 6.03 | 6.01 | 6.05 | 6.04 | 6.10 | 6.08 | 6.07 | 6.09 | 6.08 | |
| 285 | 301 | 324 | 344 | 360 | 380 | 420 | 430 | 440 | 464 | 490 | 516 | |
| 660 | 724 | 759 | 801 | 828 | 972 | 1013 | 1013 | 1048 | 1081 | 1243 | 1278 | |
| 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | |
| 380V3N-50 Hz | ||||||||||||
| R134a | ||||||||||||
| Steplessregulationof energy | ||||||||||||
| 167 | 177 | 191 | 205 | 222 | 237 | 247 | 257 | 267 | 279 | 294 | 307 | |
| 65 | 80 | 72 | 80 | 66 | 65 | 72 | 57 | 63 | 63 | 63 | 62 | |
| 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 |
| 195 | 207 | 223 | 240 | 259 | 276 | 288 | 300 | 311 | 325 | 343 | 357 | |
| 65 | 83 | 83 | 85 | 57 | 56 | 86 | 56 | 59 | 61 | 60 | 62 | |
| 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | |
| 4497 | 4497 | 4497 | 4497 | 4540 | 4540 | 4540 | 4540 | 4540 | 4624 | 4624 | 4652 | |
| 1600 | 1600 | 1600 | 1600 | 1800 | 1800 | 1800 | 1800 | 1800 | 1800 | 1800 | 1800 | |
| 1950 | 1950 | 1950 | 1950 | 2050 | 2050 | 2050 | 2050 | 2050 | 2050 | 2050 | 2050 | |
| 6500 | 6550 | 6650 | 6750 | 7100 | 7200 | 7250 | 7350 | 7500 | 7600 | 7750 | 7800 | |
| 6970 | 7000 | 7150 | 7250 | 7800 | 7900 | 7950 | 8100 | 8250 | 8350 | 8575 | 8600 |
Parameters of TWSF-FW1 (R134a) flooded-type water source screw heat pump unit
Note:
| Model | TWSF-FW1 | 0120.1 | 0140.1 | 0155.1 | 0180.1 | 0210.1 | 0230.1 | 0250.1 | 0270.1 | ||
| Ton | 123 | 139 | 150 | 176 | 211 | 227 | 250 | 268 | |||
| 104kcal/h | 37 434 | 42 490 | 45 527 | 53 | 64 | 69 | 75 | 81 | |||
| kW 104kcal/h | 39 | 44 | 47 | 620 55 | 741 66 | 799 71 | 878 78 | 941 84 | |||
| Heating capacity | kW | 448 | 506 | 544 | 643 | 769 | 828 | 908 | 976 | ||
| Cooling power input | kW | 65 | 74 | 79 | 93 | 110 | 118 | 130 | 139 | ||
| Heating power input | kW | 86 | 97 | 104 | 124 | 147 | 158 | 173 | 187 | ||
| Cooling efficiency | kW/Ton | 0.527 | 0.531 | 0.527 | 0.527 | 0.522 | 0.519 | 0.521 | 0.519 | ||
| Cooling EER | W/W | 6.68 | 6.62 | 6.67 | 6.67 | 6.74 | 6.77 | 6.75 | 6.77 | ||
| W/W | 5.21 | 5.22 | 5.23 | 5.19 | 5.23 | 5.24 | 5.25 | 5.22 | |||
| Heating COP | A | 139 | 150 | 165 | 188 | 205 | 216 | 240 | 250 | ||
| Cooling current | A | 165 | 181 | 208 | 232 | 252 | 258 | 317 | |||
| Heating current | A | 414 | 615 | 683 | 845 | 300 | |||||
| Starting current | Set | 1 | 1 | 1 | 1 | 845 1 | 845 1 | 965 1 | 965 1 | ||
| Compressorquantity Cold and hot water-side hanex- | Den wn presure | Mpa | |||||||||
| Waterflow | m³/h | 1.0 | |||||||||
| kPa | 75 | 84 | 91 | 107 | 127 | 137 | 151 | 162 | |||
| Wter prpssure | 65 150 | 70 150 | 67 150 | 67 150 | 83 150 | 82 150 | 85 150 | 90 | |||
| Underground water-side heatex- | Piping DN | mm | 150 | ||||||||
| Deni wn presure | Mpa | 1.0 | |||||||||
| Water flow | m³/h | 39 | 44 | 47 | 56 | 67 | 72 | 79 | 84 | ||
| Wter prpssure | kPa | 30 | 26 | 26 | 28 | 28 | 27 | 28 | 26 | ||
| Dimensions | PipingDN Length | mm | 150 | 150 | 150 | 150 | 200 | 200 | 200 3144 | 200 3144 | |
| Width | mm mm | 3122 | 3122 | 3122 | 3122 | 3144 | 3144 | 1550 | 1550 | ||
| Height | mm | 1500 | 1500 | 1500 1800 | 1500 1800 | 1550 1850 | 1550 | 1850 | 1850 | ||
| Shipping weight | kg | 1800 2780 | 1800 3230 | 3280 | 3380 | 3830 | 1850 3880 | 4050 | 4200 | ||
| Operatingweight | kg | 2980 | 3450 | 3520 | 3650 | 4150 | 4200 | 4400 | 4560 | ||
| 0285.2 | 0305.2 | 0330.2 | 0355.2 | 0375.2 | 0400.2 | 0420.2 | 0440.2 | 0465.2 | 0495.2 | 0520.2 | 0540.2 | |
| 288 | 301 | 322 | 352 | 375 | 400 | 417 | 441 | 465 | 495 | 517 | 537 | |
| 87 | 91 | 97 | 106 | 113 | 121 | 126 | 133 | 141 | 150 | 156 | 162 | |
| 1012 | 1057 | 1133 | 1237 | 1317 | 1406 | 1465 | 1552 | 1635 | 1739 | 1818 | 1888 | |
| 90 | 94 | 101 | 110 | 118 | 126 | 131 | 139 | 146 | 155 | 163 | 169 | |
| 1047 | 1094 | 1174 | 1285 | 1372 | 1464 | 1525 | 1614 | 1700 | 1804 | 1891 | 1965 | |
| 152 | 159 | 169 | 184 | 196 | 209 | 217 | 229 | 242 | 256 | 268 | 278 | |
| 200 | 209 | 224 | 246 | 262 | 279 | 291 | 307 | 323 | 343 | 361 | 376 | |
| 0.528 | 0.529 | 0.524 | 0.523 | 0.523 | 0.523 | 0.521 | 0.519 | 0.520 | 0.518 | 0.518 | 0.518 | |
| 6.66 | 6.65 | 6.70 | 6.72 | 6.72 | 6.73 | 6.75 | 6.78 | 6.76 | 6.79 | 6.78 | 6.79 | |
| 5.24 | 5.23 | 5.24 | 5.22 | 5.24 | 5.25 | 5.24 | 5.26 | 5.26 | 5.26 | 5.24 | 5.23 | |
| 300 | 315 | 330 | 355 | 377 | 395 | 410 | 430 | 455 | 489 | 500 | 510 | |
| 359 | 385 | 406 | 430 | 454 | 480 | 502 | 522 | 561 | 618 | 636 | 658 | |
| 1004 | 1072 | 1124 | 1286 | 1318 | 1318 | 1318 | 1318 | 1441 | 1561 | 1436 | 1436 | |
| 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 |
| 174 | 182 | 195 | 213 | 227 | 242 | 252 | 267 | 281 | 299 | 313 | 325 | |
| 71 | 86 | 77 | 87 | 70 | 70 | 77 | 62 | 71 | 74 | 73 | 72 | |
| 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 |
| 91 | 95 | 102 | 111 | 118 | 126 | 132 | 139 | 147 | 156 | 163 | 169 | |
| 25 | 26 | 25 | 28 | 25 | 25 | 28 | 27 | 28 | 28 | 28 | 30 | |
| 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | |
| 4497 | 4497 | 4497 | 4497 | 4567 | 4567 | 4567 | 4567 | 4567 | 4672 | 4672 | 4672 | |
| 1600 | 1600 | 1600 | 1600 | 1800 | 1800 | 1800 | 1800 | 1800 | 1800 | 1800 | 1800 | |
| 1950 | 1950 | 1950 | 1950 | 2050 | 2050 | 2050 | 2050 | 2050 | 2050 | 2050 | 2050 | |
| 6560 | 6610 | 6710 | 6810 | 7160 | 7260 | 7310 | 7410 | 7560 | 7660 | 7810 | 7860 | |
| 7100 | 7150 | 7250 | 7350 | 7950 | 8050 | 8100 | 8200 | 8400 | 8500 | 8700 | 8750 |
Parameters of TWSF-FG1 (R134a) flooded-type water source screw heat pump unit
| Model | TWSF-FG1 | 0120.1 | 0140.1 | 0155.1 | 0180.1 | 0210.1 | 0230.1 | 0250.1 | 0270.1 | ||
| Ton | 122 | 138 | 148 | 175 | 209 | 225 | 247 | 265 | |||
| 42 | 45 | 53 | 63 | 75 | |||||||
| 10kcal/h | 37 429 | 485 | 521 | 614 | 68 | 869 | 80 932 | ||||
| kW 104kcal/h | 38 | 43 | 46 | 55 | 734 65 | 791 70 | 77 | 83 | |||
| Heating capacity | kW | 442 | 500 | 536 | 635 | 760 | 818 | 896 | 963 | ||
| Cooling power input | kW | 67 | 75 | 81 | 96 | 112 | 121 | 133 | 142 | ||
| Heating power input | kW | 86 | 97 | 104 | 124 | 147 | 158 | 172 | 186 | ||
| Cooling efficiency | kW/Ton | 0.549 | 0.544 | 0.547 | 0.550 | 0.537 | 0.538 | 0.538 | 0.536 | ||
| Cooling EER | W/W | 6.40 | 6.47 | 6.43 | 6.40 | 6.55 | 6.54 | 6.53 | 6.56 | ||
| Heating COP | W/W | 5.14 | 5.15 | 5.15 | 5.12 | 5.17 | 5.18 | 5.21 | 5.18 | ||
| Cooling current | A | 142 | 152 | 167 | 190 | 208 | 219 | 244 | 254 | ||
| Heating current | A | 165 | 181 | 208 | 234 | 252 | 258 | 299 | 316 | ||
| A | 414 | 615 | 683 | 845 | 845 | 965 | |||||
| Starting current Compressor quantity | Set | 1 | 1 | 1 | 1 | 845 1 | 1 | 965 1 | 1 | ||
| Coldand hot water- eichangat | Design presure | ||||||||||
| Mpa | 1.0 | ||||||||||
| Water flow | m³/h | 74 | 83 | 90 | 106 | 126 | 136 | 150 | 160 | ||
| Wter pressure | kPa | 65 150 | 71 150 | 65 150 | 65 150 | 80 150 | 81 150 | 84 150 | 88 | ||
| Underground side anet | PipingDN | mm | 150 | ||||||||
| Denign presure | Mpa | 1.0 | |||||||||
| Water flow | m³/h | 85 | 96 | 104 | 122 | 145 | 157 | 172 | 185 | ||
| Wter rpsure | kPa | 63 | 79 | 79 | 85 | 66 | 78 | 85 | 70 | ||
| Dimensions | Piping DN Length | mm | 150 | 150 | 150 3122 | 150 | 200 | 200 | 200 | 200 3144 | |
| Width | mm | 3122 | 3122 | 1500 | 3122 1500 | 3144 | 3144 1550 | 3144 1550 | 1550 | ||
| Height | mm mm | 1500 1800 | 1500 | 1800 | 1800 | 1550 1850 | 1850 | 1850 | 1850 | ||
| Shipping weight | kg | 1800 | 3280 | 3380 | 3880 | 4050 | 4200 | ||||
| Operating weight | kg | 2780 3000 | 3230 3450 | 3520 | 3650 | 3830 4150 | 4250 | 4400 | 4560 | ||
Note:
| 0285.2 | 0305.2 | 0330.2 | 0355.2 | 0375.2 | 0400.2 | 0420.2 | 0440.2 | 0465.2 | 0495.2 | 0520.2 | 0540.2 | |
| 285 | 297 | 319 | 348 | 371 | 395 | 412 | 437 | 460 | 489 | 511 | 531 | |
| 86 | 90 | 96 | 105 | 112 | 120 | 125 | 132 | 139 | 148 | 155 | 160 | |
| 1001 | 1046 | 1121 | 1224 | 1303 | 1390 | 1449 | 1535 | 1617 | 1719 | 1797 | 1866 | |
| 88 | 92 | 99 | 108 | 116 | 123 | 128 | 136 | 143 | 152 | 159 | 165 | |
| 1025 | 1071 | 1150 | 1259 | 1344 | 1435 | 1494 | 1581 | 1664 | 1766 | 1850 | 1923 | |
| 155 | 162 | 172 | 188 | 200 | 213 | 222 | 234 | 247 | 263 | 275 | 285 | |
| 199 | 208 | 223 | 244 | 261 | 278 | 289 | 305 | 322 | 341 | 359 | 374 | |
| 0.544 | 0.545 | 0.539 | 0.540 | 0.540 | 0.539 | 0.539 | 0.536 | 0.537 | 0.538 | 0.538 | 0.537 | |
| 6.46 | 6.46 | 6.52 | 6.51 | 6.52 | 6.53 | 6.53 | 6.56 | 6.55 | 6.54 | 6.53 | 6.55 | |
| 5.15 | 5.15 | 5.16 | 5.16 | 5.15 | 5.16 | 5.17 | 5.18 | 5.17 | 5.18 | 5.15 | 5.14 | |
| 304 | 319 | 334 | 360 | 382 | 400 | 416 | 435 | 461 | 498 | 509 | 519 | |
| 358 | 384 | 405 | 428 | 453 | 479 | 500 | 502 | 549 | 607 | 622 | 628 | |
| 1004 | 1072 | 1124 | 1286 | 1318 | 1318 | 1318 | 1318 | 1441 | 1561 | 1436 | 1436 | |
| 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 | 2 |
| 172 | 180 | 193 | 211 | 224 | 239 | 249 | 264 | 278 | 296 | 309 | 321 | |
| 69 | 83 | 74 | 85 | 67 | 67 | 74 | 60 | 69 | 72 | 70 | 69 | |
| 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 |
| 199 | 208 | 222 | 243 | 259 | 276 | 287 | 304 | 321 | 341 | 357 | 370 | |
| 68 | 84 | 83 | 87 | 57 | 56 | 85 | 59 | 64 | 68 | 66 | 68 | |
| 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | 200 | |
| 4497 | 4497 | 4497 | 4497 | 4567 | 4567 | 4567 | 4567 | 4567 | 4672 | 4672 | 4672 | |
| 1600 | 1600 | 1600 | 1600 | 1800 | 1800 | 1800 | 1800 | 1800 | 1800 | 1800 | 1800 | |
| 1950 | 1950 | 1950 | 1950 | 2050 | 2050 | 2050 | 2050 | 2050 | 2050 | 2050 | 2050 | |
| 6560 | 6610 | 6710 | 6810 | 7160 | 7260 | 7310 | 7410 | 7560 | 7660 | 7810 | 7860 | |
| 7100 | 7150 | 7250 | 7350 | 7900 | 8050 | 8100 | 8250 | 8400 | 8500 | 8700 | 8750 |
Parameters of TWSF-FC1 (R134a) flooded-type water-cooled screw chiller Superhigh-efficiency series
| Model | TWSF-FC1 | 0430.1 | 0450.1 | 0470.1 | 0850.2 | 0900.2 | 0940.2 | |
| Cooling capacity | Ton | 429 | 450 | 469 | 854 | 895 | 933 | |
| 104kcal/h | 130 | 136 | 142 | 258 | 271 | 282 | ||
| kW | 1509 | 1581 | 1648 | 3002 | 3148 | 3279 | ||
| Powerinput | kW | 239 | 250 | 259 | 475 | 496 | 516 | |
| Eficiency | kW/Ton | 0.557 | 0.556 | 0.553 | 0.556 | 0.554 | 0.553 | |
| COP | W/W | 6.31 | 6.32 | 6.36 | 6.32 | 6.35 | 6.35 | |
| Running current | A | 404 | 421 | 438 | 803 | 835 | 871 | |
| Starting current | A | 1033 | 1033 | 1033 | 1668 | 1668 | 1668 | |
| Compressor quantity | Set | 1 | 1 | 1 | 2 | 2 | 2 | |
| Power supply | 380V3N-50 Hz | |||||||
| Refrigerant | R134a | |||||||
| Energy control | Steplessregulationof energy | |||||||
| Evaporator | Denign presure | Mpa | 1.0 | |||||
| Water flow | m³/h | 260 272 | 284 | 516 | 541 | 564 | ||
| Water pressure drop | kPa | 60 | 40 | 60 | 60 | 70 | ||
| Piping DN | mm | 200 | 200 | 250 | 250 | 250 | ||
| Condenser | Denign presure | Mpa | 200 | |||||
| Waterflow | m³/h | 301 | 315 | 1.0 328 | 598 | 627 | 653 | |
| Waterpressure | kPa | 40 | 45 | 40 | 80 | 80 | 70 | |
| drop Piping DN | mm | 250 | 250 | 250 | 300 | 300 | 300 | |
| Dimensions | Length | mm | 4800 | 4800 | 4800 | 6700 | 6700 | 6700 |
| Width | mm | 2260 | 2260 | 2260 | 2700 | 2700 | 2700 | |
| Height | mm | 2600 | 2600 | 2600 | 2750 | 2750 | 2750 | |
| Shipping weight | kg | 7800 | 8300 | 8800 | 13000 | 14000 | 15000 | |
| Operating weight | kg | 8970 | 9500 | 10100 | 14950 | 16000 | 17000 | |
★Note:
Water-cooledFlooded Screw Chiller (Heat Pump)
Technical Parameter Correction FactorDiagram
Cooling capacity correction factor diagram of the water-cooled flooded screw chiller
Cooling capacity correction factor diagram of the water source heat pump (underground water) (cooling mode)
Heating capacity correction factor diagram of the water source heat pump (underground water) (heating mode)
Input power correction factor diagram of the water source heat pump (underground water) (heating mode)
Heatingcapacitycorrection factor diagramof thewatersource heat pump (geothermal) (heatingmode)
Customizable Component
System
←Full heat recovery technology
Theunitcaneffectivelyrecyclethecondensationheattomettheusagerequirementofwarmwatersuppyfordomesticuseofclients. ←Flow changing technology
Inverterwaterpumpisequippedtoreducesystempumppowerconsumptionbuttonsurestableoperationofteystem,pleaseote that:
1.The chilled water flow ranges from 4 0 % to 1 1 0 % of the nominal flow.
2.Therate of change of water flow should not exceed 30 % perminute,and the recommended rate of change of water flow is 1 0 % per minute.
3.Thewater flow isrecommended to fall within 0 . 8 { - } 3 . 0 { m / s } .Whenthewaterflows tooslowly,the heat transferefficiencymaybeaffected andtheuntfympd;ntaterfooicklyiyadtcssaotely impacting the unit's service life.
4. Cooling waterflow should not exceed 1 1 0 % of the nominal value.Variable chilled water flow design is recommended.
←Perennial cooling
Perennial cooling unit can be provided according to on-site situation.
Electric control
←Circuitbreaker
Depending on customer requirements,circuit breakers may beadded to further effectively protectthe unit.
←Solid-state soft start
Dependingoncustomerrequirements,solidstatesofttartmaybeequippedtolowerthestartupcurrentoftheunitandtoreducethe impact on the power grid.
Container
←Waterpipe connectionmode:standard clamp connection,optionalflangeconnection ←Waterside pressure:standard unit container pressure is1.0MPa (1.6MPaand2.0MPaoptional) Waterpipe connection direction: Depending onthe instalation siteconditions,the pipe directionmay be varied
Others
←Shock absorbing device:The unit comes with 4 pieces of 3 0 \mathsf {mm } chloroprene rubber shock-absorbing cushions. Spring shock-absorbing cushionsmay be provided depending on customer'srequirements.
Botom channel steel: Bottom channel steel may be provided depending on customer's requirements.
* Insulation:A standard unit is insulated with 2 0 \mathsf {mm } rubber and plastic insulation material.A 4 0mm thick layer of insulation may be provided upon request.
●Package:Astandardunitis packed with heatshrinkable membrane.Itmaybealso provided withawooden boxif required.
Note:For any additional requirements,please contact the local dealerof TICA.
Unit options-full heat recovery (for FW, FG heat pump units only)
ThecondensatioatecoeryistoseatehagevicetoortasteatfrotodenserSpecifilorigt exitingfromthecompressorwilfirsentertheheatrecoverydevicewhereitcouldexchangeeatwithrunningwatertoproducedomestic orindustrial hot waterandwill then enter the condenser to exchange heat.
The following figure shows the diagram of heat recovery process of domestic hot water.
| Model | utetwateryoatue45c | Connector ize | |||||
| capacity (kW) | (m³/h) | capacity (kW) | (m³/h) | capacity (kW) | (m³/h) | ||
| TWSF0120.1FW1A | 448 | 77 | 434 | 75 | 420 | 72 | 150 |
| TWSF0140.1FW1A | 506 | 87 | 489 | 84 | 470 | 81 | 150 |
| TWSF0155.1FW1A | 544 | 94 | 533 | 92 | 512 | 88 | 150 |
| TWSF0180.1FW1A | 643 | 111 | 622 | 107 | 600 | 103 | 150 |
| TWSF0210.1FW1A | 769 | 132 | 743 | 128 | 718 | 124 | 200 |
| TWSF0230.1FW1A | 828 | 143 | 800 | 138 | 773 | 133 | 200 |
| TWSF0250.1FW1A | 908 | 156 | 806 | 139 | 778 | 134 | 200 |
| TWSF0270.1FW1A | 976 | 168 | 938 | 162 | 907 | 156 | 200 |
| TWSF0285.2FW1A | 1047 | 180 | 1012 | 174 | 973 | 168 | 200 |
| TWSF0305.2FW1A | 1094 | 188 | 1054 | 182 | 1013 | 175 | 200 |
| TWSF0330.2FW1A | 1174 | 202 | 1150 | 198 | 1105 | 190 | 200 |
| TWSF0355.2FW1A | 1285 | 221 | 1250 | 215 | 1204 | 207 | 200 |
| TWSF0375.2FW1A | 1372 | 236 | 1326 | 228 | 1281 | 221 | 200 |
| TWSF0400.2FW1A | 1464 | 252 | 1415 | 244 | 1367 | 235 | 200 |
| TWSF0420.2FW1A | 1525 | 263 | 1474 | 254 | 1423 | 245 | 200 |
| TWSF0440.2FW1A | 1614 | 278 | 1560 | 269 | 1506 | 259 | 200 |
| TWSF0465.2FW1A | 1700 | 293 | 1616 | 278 | 1560 | 269 | 200 |
| TWSF0495.2FW1A | 1804 | 311 | 1745 | 301 | 1686 | 290 | 200 |
| TWSF0520.2FW1A | 1891 | 326 | 1829 | 315 | 1768 | 305 | 200 |
| TWSF0540.2FW1A | 1965 | 338 | 1900 | 327 | 1837 | 316 | 200 |
| TWSF0120.1FG1A | 442 | 76 | 427 | 74 | 414 | 71 | 150 |
| TWSF0140.1FG1A | 500 | 86 | 481 | 83 | 464 | 80 | 150 |
| TWSF0155.1FG1A | 536 | 92 | 516 | 89 | 496 | 85 | 150 |
| TWSF0180.1FG1A | 635 | 109 | 614 | 106 | 594 | 102 | 150 |
| TWSF0210.1FG1A | 760 | 131 | 735 | 127 | 710 | 122 | 200 |
| TWSF0230.1FG1A | 818 | 141 | 791 | 136 | 764 | 132 | 200 |
| TWSF0250.1FG1A | 896 | 154 | 866 | 149 | 836 | 144 | 200 |
| TWSF0270.1FG1A | 963 | 166 | 932 | 161 | 902 | 155 | 200 |
| TWSF0285.2FG1A | 1025 | 177 | 986 | 170 | 951 | 164 | 200 |
| TWSF0305.2FG1A | 1071 | 184 | 1031 | 178 | 992 | 171 | 200 |
| TWSF0330.2FG1A | 1150 | 198 | 1107 | 191 | 1064 | 183 | 200 |
| TWSF0355.2FG1A | 1259 | 217 | 1215 | 209 | 1172 | 202 | 200 |
| TWSF0375.2FG1A | 1344 | 232 | 1300 | 224 | 1257 | 217 | 200 |
| TWSF0400.2FG1A | 1435 | 247 | 1388 | 239 | 1341 | 231 | 200 |
| TWSF0420.2FG1A | 1494 | 257 | 1445 | 249 | 1396 | 240 | 200 |
| TWSF0440.2FG1A | 1581 | 272 | 1529 | 263 | 1477 | 254 | 200 |
| TWSF0465.2FG1A | 1664 | 287 | 1608 | 277 | 1554 | 268 | 200 |
| TWSF0495.2FG1A | 1766 | 304 | 1708 | 294 | 1651 | 284 | 200 |
| TWSF0520.2FG1A | 1850 | 319 | 1791 | 308 | 1733 | 299 | 200 |
| TWSF0540.2FG1A | 1923 | 331 | 1862 | 321 | 1802 | 310 | 200 |
Water-cooledFloodedScrew Chiller (Heat Pump)
UnitDimensions
Singleheadhigh-efficiencyseries
| Model (TWSF-FC1) | Waer inater outlet | Condriner outlet | A | B | C | D | E | F | G | L | W | H | K | - |
| 0110.1 | DN150 | DN150 | 1300 | 275 | 275 | 2330 | 495 | 125 | 595 | 3122 | 1500 | 1800 | 125 | |
| 0135.1 | DN150 | DN150 | 1300 | 275 | 275 | 2330 | 495 | 125 | 595 | 3122 | 1500 | 1800 | 125 | |
| 0160.1 | DN150 | DN150 | 1300 | 275 | 275 | 2330 | 495 | 125 | 595 | 3122 | 1500 | 1800 | 125 | |
| 0175.1 | DN150 | DN150 | 1300 | 275 | 275 | 2330 | 495 | 125 | 595 | 3122 | 1500 | 1800 | 125 | |
| 0200.1 | DN150 | DN200 | 1350 | 275 | 300 | 2330 | 545 | 155 | 595 | 3144 | 1550 | 1850 | 125 | |
| 0220.1 | DN150 | DN200 | 1350 | 275 | 300 | 2330 | 545 | 155 | 595 | 3144 | 1550 | 1850 | 125 | |
| 0240.1 | DN150 | DN200 | 1350 | 275 | 300 | 2330 | 545 | 155 | 570 | 3144 | 1550 | 1850 | 130 | |
| 0265.1 | DN150 | DN200 | 1350 | 275 | 300 | 2330 | 545 | 155 | 570 | 3144 | 1550 | 1850 | 130 |
| Model (TWSF-FW(G)1) | Evapr inter outlet | Condriner outlet | A | B | C | D | E | F | G | L | W | H | K | |
| 0120.1 | DN150 | DN150 | 1300 | 275 | 275 | 2330 | 495 | 125 | 595 | 3122 | 1500 | 1800 | 125 | |
| 0140.1 | DN150 | DN150 | 1300 | 275 | 275 | 2330 | 495 | 125 | 595 | 3122 | 1500 | 1800 | 125 | |
| 0155.1 | DN150 | DN150 | 1300 | 275 | 275 | 2330 | 495 | 125 | 595 | 3122 | 1500 | 1800 | 125 | |
| 0180.1 | DN150 | DN150 | 1300 | 275 | 275 | 2330 | 495 | 125 | 595 | 3122 | 1500 | 1800 | 125 | |
| 0210.1 | DN150 | DN200 | 1350 | 275 | 300 | 2330 | 545 | 155 | 595 | 3144 | 1550 | 1850 | 125 | |
| 0230.1 | DN150 | DN200 | 1350 | 275 | 300 | 2330 | 545 | 155 | 595 | 3144 | 1550 | 1850 | 125 | |
| 0250.1 | DN150 | DN200 | 1350 | 275 | 300 | 2330 | 545 | 155 | 570 | 3144 | 1550 | 1850 | 130 | |
| 0270.1 | DN150 | DN200 | 1350 | 275 | 300 | 2330 | 545 | 155 | 570 | 3144 | 1550 | 1850 | 130 |
★Note:
1.Thewaterinletandoutletpipesofevaporatorandcondensermustbesupportedtoavoidapplyinganyexternalforcetotheuni
2.Thesizeof theequipmentroomareacan guaranteerepairand maintenanceof theevaporatorand condenser.
| (TWSF-FC1) | Eaprirater outlet | Condriner outlet | A | B | C | D | E | F | G | L | W | H | K | - |
| 0280.2 | DN200 | DN200 | 1400 | 300 | 300 | 3460 | 545 | 155 | 645 | 4497 | 1600 | 1950 | 155 | |
| 0300.2 | DN200 | DN200 | 1400 | 300 | 300 | 3460 | 545 | 155 | 645 | 4497 | 1600 | 1950 | 155 | |
| 0325.2 | DN200 | DN200 | 1400 | 300 | 300 | 3460 | 545 | 155 | 645 | 4497 | 1600 | 1950 | 155 | |
| 0350.2 | DN200 | DN200 | 1400 | 300 | 300 | 3460 | 545 | 155 | 645 | 4497 | 1600 | 1950 | 155 | |
| 0370.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4540 | 1800 | 2050 | 180 | |
| 0390.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4540 | 1800 | 2050 | 180 70 | |
| 0410.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4540 | 1800 | 2050 | 180 | |
| 0430.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4540 | 1800 | 2050 | 180 | |
| 0450.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4540 | 1800 | 2050 | 180 | |
| 0465.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4624 | 1800 | 2050 | 180 | |
| 0495.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4624 | 1800 | 2050 | 180 | |
| 0510.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4652 | 1800 | 2050 | 180 |
| (TWSF-FW(G)1) | A | B | C | D | E | F | G | L | W | H | K | - | ||
| 0285.2 | DN200 | DN200 | 1400 | 300 | 300 | 3460 | 545 | 155 | 645 | 4497 | 1600 | 1950 | 155 | |
| 0305.2 | DN200 | DN200 | 1400 | 300 | 300 | 3460 | 545 | 155 | 645 | 4497 | 1600 | 1950 | 155 | |
| 0330.2 | DN200 | DN200 | 1400 | 300 | 300 | 3460 | 545 | 155 | 645 | 4497 | 1600 | 1950 | 155 | |
| 0355.2 | DN200 | DN200 | 1400 | 300 | 300 | 3460 | 545 | 155 | 645 | 4497 | 1600 | 1950 | 155 | |
| 0375.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4567 | 1800 | 2050 | 180 | |
| 0400.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4567 | 1800 | 2050 | 180 70 | |
| 0420.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4567 | 1800 | 2050 | 180 | |
| 0440.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4567 | 1800 | 2050 | 180 | |
| 0465.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4567 | 1800 | 2050 | 180 | |
| 0495.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4672 | 1800 | 2050 180 | ||
| 0520.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4672 | 1800 | 2050 | 180 | |
| 0540.2 | DN200 | DN200 | 1600 | 350 | 350 | 3460 | 595 | 180 | 695 | 4672 | 1800 | 2050 | 180 |
★Note:
1.Thewaterinletandoutletpipesofevaporatorandcondensermustbesupportedtoavoidapplyinganyexternalforcetotheuni
2.Thesize of the equipmentroomareacan guaranteerepairand maintenance of the evaporatorand condenser.
—Single head super high-efficiencyseries
| (TWSF-FC1) | Waeraer | A | D | L | W | H | - | J | |
| 0430.1 | DN200 | DN250 | 2060 | 3460 | 4800 | 2260 | 2600 | 70 | 200 |
| 0450.1 | DN200 | DN250 | 2060 | 3460 | 4800 | 2260 | 2600 | ||
| 0470.1 | DN200 | DN250 | 2060 | 3460 | 4800 | 2260 | 2600 |
Dual headsuperhigh-efficiencyseries
| (TWSF-FC1) | Eaprinatr | Condenser | A | D | L | W | H | J | |
| 0850.2 | outlet DN250 | outlet DN300 | 2500 | 5360 | 6700 | 2700 | 2750 | 70 | 200 |
| 0900.2 | DN250 | DN300 | 2500 | 5360 | 6700 | 2700 | 2750 | ||
| 0940.2 | DN250 | DN300 | 2500 | 5360 | 6700 | 2700 | 2750 |
★Note:
1.Thewaterinletandoutletpipesofevaporatorandcondensermustbesupportedtoavoidapplyinganyextenalforcetotheunit
2.The sizeof theequipmentroomareacan guaranteerepairand maintenanceof theevaporatorand condenser.
Lifting Diagram
Water-cooledFloodedScrew Chiller (Heat Pump)
Foundation Diagram
Note
1.The vibrationof the unit is very small,so it can be placed on the concrete ground directly.
2.If the customer needs to build a foundation and use foundationboltsorexpansionboltstofix theunit,refer tothe above figure tocomplete theconstructionand installation.
3.If theequipment roomis built on the floor,the floorshould haveenough strength and stiffness to bear the operating weight of the chiller.
4.When buildingaconcrete foundation,buildadrainageditch around the foundationto facilitatedrainage,andmakesure thatthefoundationedgeissmooth.
5.The foundation isapplicable to the left-type units.For righttype units,please switchX1,X2 valuesshown in the table.
| (TWSF-FC1) | D | C | X1 | X2 | Y1 | Y2 |
| 0110.1 | 2330 | 1300 | 900 | 600 | 200 | 200 |
| 0135.1 | 2330 | 1300 | 900 | 600 | 200 | 200 |
| 0160.1 | 2330 | 1300 | 900 | 600 | 200 | 200 |
| 0175.1 | 2330 | 1300 | 900 | 600 | 200 | 200 |
| 0200.1 | 2330 | 1350 | 900 | 600 | 200 | 200 |
| 0220.1 | 2330 | 1350 | 900 | 600 | 200 | 200 |
| 0240.1 | 2330 | 1350 | 900 | 600 | 200 | 200 |
| 0265.1 | 2330 | 1350 | 900 | 600 | 200 | 200 |
| 0280.2 | 3460 | 1400 | 900 | 600 | 200 | 200 |
| 0300.2 | 3460 | 1400 | 900 | 600 | 200 | 200 |
| 0325.2 | 3460 | 1400 | 900 | 600 | 200 | 200 |
| 0350.2 | 3460 | 1400 | 900 | 600 | 200 | 200 |
| 0370.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0390.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0410.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0430.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0450.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0465.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0495.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0510.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0430.1 | 3460 | 2060 | 900 | 900 | 250 | 250 |
| 0450.1 | 3460 | 2060 | 900 | 900 | 250 | 250 |
| 0470.1 | 3460 | 2060 | 900 | 900 | 250 | 250 |
| 0850.2 | 5360 | 2500 | 1000 | 1000 | 250 | 250 |
| 0900.2 | 5360 | 2500 | 1000 | 1000 | 250 | 250 |
| 0940.2 | 5360 | 2500 | 1000 | 1000 | 250 | 250 |
| (TWSF-FW(G)1) | D | C | X1 | X2 | Y1 | Y2 |
| 0120.1 | 2330 | 1300 | 900 | 600 | 200 | 200 |
| 0140.1 | 2330 | 1300 | 900 | 600 | 200 | 200 |
| 0155.1 | 2330 | 1300 | 900 | 600 | 200 | 200 |
| 0180.1 | 2330 | 1300 | 900 | 600 | 200 | 200 |
| 0210.1 | 2330 | 1350 | 900 | 600 | 200 | 200 |
| 0230.1 | 2330 | 1350 | 900 | 600 | 200 | 200 |
| 0250.1 | 2330 | 1350 | 900 | 600 | 200 | 200 |
| 0270.1 | 2330 | 1350 | 900 | 600 | 200 | 200 |
| 0285.2 | 3460 | 1400 | 900 | 600 | 200 | 200 |
| 0305.2 | 3460 | 1400 | 900 | 600 | 200 | 200 |
| 0330.2 | 3460 | 1400 | 900 | 600 | 200 | 200 |
| 0355.2 | 3460 | 1400 | 900 | 600 | 200 | 200 |
| 0375.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0400.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0420.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0440.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0465.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0495.2 | 3460 | 1600 | 900 | 600 | 200 | 200 |
| 0520.2 0540.2 | 3460 3460 | 1600 1600 | 900 900 | 600 600 | 200 200 | 200 200 |
InstallationandMaintenance
| Theunitinstallondmainteaeusbaredutbyprofessoalsoaveceidprofessialrainetfmilaieloal standardsandrulesndavepracticaloperationexperienceandqualifictiosofefrigerationquipmentTefirstoperatioofteunit muste carredout by theprofessionalservice department;otherwise,thequalityoftheunit is hardly guaranteed. | |
| Arrival acceptance | Afterarrivalof theequipment,carefully check whetherall the itemsare completeagainst thepacking list, andwhetherthepartsaredamagedduring transportation;ifanypartsaredamaged,notifytheforwarder and put forwardawritten compensationrequest.Before installng theunit,make sure to check whether the local power supply voltageand frequencyare suitable for the unit.Our company shallnot bearthe liability for |
| Lifting | compensation forany damages that ariseafter theacceptance of the goods. Besure to useacable twisted rope or chain with asuffcient bearing capacityto fasten the hoisting hole to hoist theunit,andoperateaccording totherequirementsof the hoisting diagram;makesure thatthe control cabinetand other parts of theunit are not damaged,and note touse spreader bar during hoisting.(Please refer to theabove UnitLifting Diagram). |
| Environmental requirements | Theunit should be used indoors,the ambient temperature is above 4C,and the relative humidity is not greaterthan90%;theground for instaling theunit shouldbe leveland strong enough;otherwise,consider taking strengthening measures (refer torequirements in the above unit foundation diagramand maintenance space diagram); for the high salt environment,the unit should undergo sat tolerance treatment. |
| Water quality requirements | Becausecompositionof water indiferentplacesisrelativelycomplicated,if general water(suchas industrial wastewater,groundwater,etc.)is used,the water quality should be checked before it enters the heat exchangerof theunit.If thewater qualitydoesnotmeet therequirementofairconditioning water,the water mustbetreated.Pleasereferto"GB50366-2009Technical CodeforGround-source HeatPumpSystem", "GB50050-2007 Code for Design of Industrial Recirculating Cooling Water Treatment","GB50296-2014 Technical Standard for Water-supplyWell,"GB50027-2010 Specificationsfor Hydrologicaland Geological Survey of Water Supply"and other relevant standards.The unit's water must meet the folowing standards. |
| No. | Item | Unit | Allowablevalue |
| 1 | Sand content | ||
| 2 | Turbidity | mg/L | |
| 3 | pH value (25℃) | - | 6.5-8.0 |
| 4 | Ca²+andMg²content | mg/L | |
| 5 | Fe² content | mg/L | |
| 6 | Clcontent | mg/L | |
| 7 | SO4²content | mg/L | |
| 8 | H2S content | mg/L | |
| 9 | Silicic acid content | mg/L | |
| 10 | Product ofMg2+andSiO2 | mg/L | |
| 11 | Free chlorine content | mg/L | 0.5- 1.0 |
| 12 | Degreeofmineralization | mg/L | |
| 13 | Oil pollutant content | mg/L |
Check valvesmustbe installedattheunit inletand outletto facilitateroutinemaintenance of thewatersystem.It isadvisedtoinstalla thermometerandapressuregaugeatthewaterinletandoutletoftheheat exchanger for the unittofacilitateroutineinspectionandmaintenance;installawaterfilteratthewaterinletofthepumptoprevent impurities fromentering thepumpand heat exchanger;check thepipeline seal inadvance before the waterpipe is insulatedandwaterenterstheunit;installadampingdeviceonallthepipelinesconnectedtotheunit;installaflow controldevicemeeting requirements (unitis equipped with thewaterflow switch);keepawayfromthewaterinletand outletpipesof the heatexchangerofunit when instalingdrainagedevices forthewatersystemofairconditioning engineering,otherwise normal use of the unitwillbeaffected.
Notes for pipelinedesignand installation:
1.Watercyclingsystem shallbe designedassimpleas possibleand avoiding too manyelbows.Straight pipesshal
bearranged on the same plane where possible.
2.Payattentiontothewaterinletandoutletpositionsofcondenserand evaporatorlestanyconnectionerors takeplace.
3.Install manual or automatic air release valve at the top points of water cycling system.
4.Theexpansiontankshouldbeanti-corrosiveandrustproofand installedatthehighestpointsofentirepipelinesystem.
5.Install a thermometeranda pressure gaugeatthe chilled and cooling water inletsandoutletsrespectively.
6.Install drainvalvesatthe bottomofallocal elbowstomakesurethewaterin thewhole system isemptied.
7.Installcheckvalvesatthechiled waterandcooling waterpipelineconnecting theunitheatexchangerto theuser's
waterpipe.
8 Installbypass valves betweenwaterinletandoutletpipesof heat exchangerforfuturemaintenanceand pipelinerinsing.
9.Installflexible joints to reduce vibration of pipelines.
10.Installfilters before water pumps because impurities will cause fouling of the heat exchanger.
11.To boost cooling (heating) performance and save energy,pipelines shallbe completely insulated.
12.To preventfrequent tipoftheunituetoteloadtoosmall,itisrecommendedtoinstallanenergystoragetank.
13.The pipesmust not exceed thepermissiblemaximumwaterflow.
14.Thepipesandconnectorsdirectlyconnectedtocontainersshouldbeeasytodisassembletofacliatecleaning
andappearance check of the heat exchanger joint.
External Water Pipe Connection Diagram of Heat Pump Unit
Cooling insummer:valves1,2,3,4,9,10closed;valves5,6,7,8 opened Heating inwinter:valves1,2,3,4closed; valves5,6,7,8,9 and10 opened
Recommended Glycol Solution Concentration
| WaterOutletTemperature℃ | 3~0 | 0~-5 | -5~-10 |
| RecommendedMass Concentration % | 20 | 25 | 35 |
Water System Diagram of Heat Pump Unit
SelectionofWaterSystemParts
Check valve:
Determine thevalveaccording to thewater pipe diameter.Usualy the pipe diameter of the selected valve is consistent with the connected pipe diameter of the unit.
Water filter:
It isused to filter the impurities from the watersystem.Usually selecta filterwithmore than60meshes.
Checkvalve:
It is installed at the water pump outlet to prevent damage to the water pumpwhenwaterflows back.The valve pipeand unit connecting pipe are consistent in the diameter.
Bypass valve:
It is installed between the inlet water pipe and outlet water pipe of the unit container.Open thisvalvewhen cleaning the pipeline.
Thermometer:
Facilitates repair and maintenance and observes unit running.Usually the range of O to \boldsymbol { \ 1 0 0 ^ { \circ } C } isselected.
Water pump:
Thewatercapacity ofwater pump is selected according to thewater flow parameters of the unit:
Pumpwatercapacity = \mathsf { L } ^ { \star } 1 . 1 (L-Unit water flow); the pump lift is calculatedaccordingtothefollowingformula:
Pumphead \mathbf { \Sigma } = \mathbf { \Sigma } {Unitwaterresistance ^ + Mostunfavorablepipe length \* ( 2 % - 5 % ) +Water resistanceat the end of themost unfavorable path}\*1.1
Automatic air discharge valve:
Itisinstalledonthe highest point of thesystemandused todischargeair from the water system and make the unit operate normally.
Expansionwater tank:
Accommodatesexcessivewater,stabilizesthewaterpressure in the system,andsupplements thewater inthesystem.Generally it is installed atthereturnwaterpipe,higher than thewaterpipe inthesystem,so that theunit can operate properly. Its capacity is calculated according to the following formula:
Expansionwater tankvolume V = ( 0 . 0 3 to 0.04)Vc Vc-System water capacity
Energystorage tank:
It isused to regulate theenergy to reduce thestart/stop frequency of the compressorwhen the air conditioning system load changes,improve the system operation efficiency,and prolong the service life of the unit.
Itscapacity iscalculatedaccordingto the following formula:
Energy storage tank volume \mathsf { V } ( \mathsf { m } ^ { 3 } ) = ( \mathsf { Q } / 2 7 . 9 \mathsf { n } ) . VS
Q—Cooling capacity (kW)
n一Number of heads
Vs一Pipeline in thechilled water system and water capacity ( \mathsf { m } ^ { 3 } ) in the heat exchanger
Minimumwatervolume:
Minimum water volume of the water circulation system is calculated by the following formula:Volume \mathbf { \Sigma } = \mathbf { \Sigma } C \mathsf { A P } \left( \mathsf { k W } \right) x \mathsf { N } { ~ } (L)
| Operating types | N |
| Air-conditioning conditions | 3.25 |
| Processconditions | 6.5 |
Where,CAP (kW) is the nominal cooling capacity of the unit under standard operating conditions.
Thiswatercapacityisrequiredforstableoperationandaccurate temperaturecontrol of theunit.It isusuallynecessary toadda tank (with baffle plate) toreach therequiredcapacity.The tank hasa built-inbaffle plate to ensureadequate mixing (water or saline).
Seeexamplesbelow.
★Note
ese pressuredropisnot greater than O.O2MPa.Thesystem isqualified when leakage isnotdetected.
s 1.5-2 times of the maximum test pressure.
ae andcheck thesystem.Repaircannotbe performed when there ispressurein thesystem.
Check Items Before Startup
Waterway part
Check all the water system pipelines and confirm that the waterwayconnections of evaporatorand condenserare connectedcorrectlyand thewater flowdirectioniscorrect, check if the above-mentionedwater inletand outlet pipes of heatexchangerare well connected,openall the water valves and start the related pumps.Rinse thewater pipes to ensure cleanness of the water system,and check all the water pipes andjoinsfor leakage.Dischargeairfromtheevaporator andcondenserwaterways,keepthewaterwayscleanand freeofruststains,testthewaterside resistance lossof the evaporatorand condenser,and check if thewaterquantityis proper;make sure that the temperature sensor is connected correctly.
Circuit part
Disconnect the main isolating switch and check all the starting circuitsandcontrolcircuitsofthecontrolcabinet.Makesurethat all theswitchesaredisconnected.Check the powersupply for the unit.Its voltage fluctuation range cannot exceed ± 1 0 % of therated voltage indicated on theunit nameplate,and the phasevoltage unbalance cannot exceed 2 % check if there is enough power supply capacity to meet the startup and full load operation conditions of the unit.Confirmthatallthewireandfusespecificationsmatchoperation of the unit,and complete all the interlocking control lines according totherelevant electric control drawings.Make sure thatall theair conditioningaccessoriesand control devices operateproperly,and the sufficient cooling capacity can be provided to meet the unit operation requirements when the unit operates for the first time.
Unit part
Makesure that thecompressoroil heaterhasbeenpowered on for more than 3 hours.Observe the oil level from the sight glass.If oil level cannot be seen,add oil. Open the discharge checkvalvecompletelyand turnit1/2 turnclockwise.Start the liquid supply check valve,air conditioning accessories, condensatewaterpumpand chilledwaterpump,andcheck ifall thesafetycontroldevicesareintheoriginalstateand if theirsettingsarecorrect.For therelatedcheck items,referto <Table1> below.
Safety device
Theunit isequippedwith safety protectiondevicesto ensure safeoperation.Whenasafetydeviceoperates,the fault indicator is turned on,this part of the functionwillstop,and the otherpartsare still normal.Youareadvisedtostop theunit andlocatethecauseevenifapartbecomesabnormal,lest theunitwould sufferamore severeaccident.For the specific safety device series on theunit,see<Table 2 > :
| Safetydevice | Possible cause |
| High pressure protection | 1.The fluorine systemvalve isnot open |
| 2.Insufficient cooling water flow | |
| 3. Dirt deposits on the condenser | |
| 4.Non-condensable gas existsin the system | |
| Freezing protection | 1. Chilled water temperature is too low |
| 2.Settemperatureistoo low | |
| Dischargegastemperatureprotection | 1.Low refrigerant level due to leak |
| 2.Solenoid valveclosedduetoa fault | |
| 3.Improper adjustment of the discharge superheat degree | |
| Motoroverheat protection (compressor motorprotection) | Thesameashighpressureprotection |
| Low pressure protection | 1.The liquid supply solenoid valve fails or the dry filter is blocked |
| 2.Theexpansion valveisimproperlyadjusted | |
| 3.Insufficient chilled water flow | |
| 4.Evaporator fouls | |
| Phase sequence protector | Powerconnectionerror |
| Over-current relay (compressormotor) | The sameas high pressure protection |
| Safety valve | Refrigerant system exceeds the pressure |
Water-cooledScrewChiller
| Item | Standardoperatingcondition | Continuousoperationarea | |
| Cooling condition | Cooling water inlet temperatureC | 30 | 16-40 |
| ChilledwateroutlettemperatureC | 7 | 4-15 | |
Water Source Screw Heat Pump Unit
| Item | Standardoperatingconditions (TWSF-W/G) | Continuousoperationarea (TWSF-W/G) | |
| Cooling condition | Condenser outlet temperatureC | 29/30 | 20-42 |
| EvaporatoroutlettemperatureC | 7 | 4-16 | |
| Heating condition | Condenser outlet temperatureC | 45 | 35-60 |
| EvaporatoroutlettemperatureC | 7/5 | 4- 16 | |
RoutineMaintenance
TICArecommends theuserrecord theroutineoperatingdataofair-conditioning equipmentandregularlycarryoutmaintenance. 1.Beforeusingtheunitforthefirsttime,checkthefunctioningof theairsideequipmentandotherpartsofthewatersystem. 2.(Recommended) Use the following service schedule to maintain the unit:
Notes:
| 2.Check whether the air discharge and air suction pressures and oil pressure are normal | |||||||
| Daily inspection | 3.Checkwhether theoil level isnormal (check throughtheoil sight glass toensureproperamountof oil) | ||||||
| 4.Check forany abnormal compressor noise | |||||||
| 5.Check forodors inside the startup cabinetand control cabinet | |||||||
| 6.Check whether the temperature sensor and temperature probe are securely fixed | |||||||
| 7.Check foranyappearance damage of the unit | |||||||
| 8.Check whether the cooling tower,water pump,and valve function normally | |||||||
| 9.Check the appearance ofwater pipes fordamagesand leakage | |||||||
| 1.Checkthecoilofompresoroil(teoilsouldbelarandean;ifthecolortusdarkrownormuddyeplaceteilif theoil turnsblack, disassembleand inspect the compressor) | |||||||
| 2.Checkthecolorofthetestpaperinthesightglassofliquidsupplypipe(ylowindicatesthattherefrigeranthasexcesive watercontent) | |||||||
| 3. Check for leakage in the refrigerant loop (whether there isany greasy dirt orsound of leak) | |||||||
| 4.Cleanthe startupcabinetandcontrolcabinet | |||||||
| 5.Check cleanness of the water line filter,and clean the filter when necessary | |||||||
| 6.Checktheaterqualityndsendthewatersamplefoaboratoryaalysisifossble(waterqualityouldomplyiththe | |||||||
| 1year | 2years | standardCodeforDesignof IndustrialRecirculating Cooling WaterTreatmentorotherrelevant standards) | |||||
| Inspection Based on Service Life or Runtime | 1000 hours 3000 hours 5000 hours 7000 hours 9000 hours | 3years | 4 years | 5years | Exceptions | ||
| Insulation resistance isabnormal. | |||||||
| Motor | ☆ | ||||||
| Solenoid valve | ☆ | ☆ | ☆ | ☆ | ☆ | Insulationresistance isabnormal. | |
| Oil heater | ☆ | ☆ | ☆ | ☆ | ☆ | ||
| Compressor oilfilter | ★ | ★ | ★ | ★ | ★ | Oil pressurealarm | |
| Lubricant Refrigerantfilter | ★ ★ | ★ ★ | ★ ★ | ★ ★ | ★ ★ | Discoloration or turbidity | |
| exchager | Evaporatorandcondenser | ★ | ★ | ★ | ☆ | Temperaturedifference for heat exchangeexceeds3C | |
| prectheeineet | ★ | ★ | ★ | ★ | ★ | Water pressure difference istoo large or toosmall.Adjust the waterflowuntil itmeetstherequirements. | |
| Valves | tableof unit specifications) Solenoid valve | ☆ | ☆ | ☆ | ☆ | ☆ | Cannot be opened orclosed normally |
| EXV | Checktheresistanceand opening | ||||||
| Float valve | ☆ | ☆ | ☆ | ☆ | ☆ | The valve cannot ensure normal liquid supply. | |
| Fuse | ☆ | ★ | ☆ | ☆ | ☆ | Disconnection | |
| Contactor | ☆ | ☆ | ☆ | ☆ | ☆ | Serious contact electrocorrosion or noise during running. | |
| Sensor | ☆ | ☆ | ☆ | ☆ | ☆ | Measrdvaletlella | |
| High pressure switch | ☆ | ☆ | ☆ | ☆ | ☆ | Controller falsealarm. | |
| Fastening wiring terminal | ★ | ★ | ★ | ★ | ★ | Thecontactor gets loose orcan flexibly rotatewhen tuming the connecting cable. | |
| Checking power supply | ★ | ★ | ★ | ★ | ★ | Rated voltage±10%,phase-to-phase unbalance | |
| Checking phase | ★ | ★ | ★ | ★ | ★ | No phase loss orreversephase | |
4008-601-601
NANJINGTICACLIMATESOLUTIONSCO.,LTD.
Address:No.6,Hengye Road,Nanjing Economicand Technological DevelopmentZone,China Postalcode:210046
Tel: 86-25-85326977
E-mail: tica@ticachina.com




