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17

 

 

 

HEATING SYSTEM WITH PASSIVE COOLING AND BUFFER CAPACITY

 

 

This  connection  method  allows  to  take  full  advantage  of  the  heating  and  cooling  functions. 

The  diagram  shows  the hydraulic  diagram  of  the  heating  system,  when  the  temperature  control of 
individual  room  circuits  by  actuators  and  cooling  function  using  fan  radiators  is  provided  in  the 
object.  It  is  recommended  to  install  a  buffer  tank  for  fixed  capacity  heat  pumps  when  planning  to 
regulate  the  temperature  for  individual  rooms.  Otherwise,  without  installing  the  buffer  tank,  up  to 
30%  of  the  heating  circuit  can  be  closed  at  the  same  time.  Variable  capacity  heat  pumps  do  not 
require  buffer  capacity.  For  fan  radiators,  additional  pipes  must  be  laid  from  the  outdoor  circuit  to 
which they will be connected via a three-way valve. The outdoor circuit cannot be used for cooling 
and heating at the same time. 

Each  heat  pump  has  the  ability  to  connect  to  the  Internet,  so  you  can  see  the  heat  pump 

settings and control the system remotely.

 

 

 

 

 

 

Čia:

- paduodamas termofikatas;
- gr

įžtantis termofikatas;

- i

šeinantis glikolis;

įeinantis glikolis.

Šildymo

kontūras

Lauko kontūras

Karšto
vandens
boileris

Buferinė

talpa

P

a

s

y

v

u

s

 v

ės

in

im

as

Fankoilas

Šilumos

siurblys

Fankoilas

A

B

AB

Where

Supply heating water 
Return heating water 
Outgoing glycol 
Incoming glycol 

Heat pump 

Heating  
circuit 

Hot  
water  
boiler 

Outdoor circuit 

Buffer 

tank 

Fancoil             Fancoil 

P

as

si

v

e coo

ling

 

Summary of Contents for Aleut 11

Page 1: ...INSTALLATION MANUAL IGLU Aleut Series...

Page 2: ...lling 8 THERMAL INSULATION 9 ELECTRICAL CONNECTION WORKS 9 Temperature sensors 10 Characteristics of temperature sensors NTC 10K 10 Phase sequence relay 10 Control panel 11 START OF OPERATION 11 HEAT...

Page 3: ...iler 28 Technical data of IGLU Aleut 11 WT fixed capacity heat pump with boiler 29 Technical data of IGLU Aleut 13 WT fixed capacity heat pump with boiler 30 Technical data of IGLU Aleut 18 WTI heat p...

Page 4: ...tall the devices Treat all constituents responsibly The heat pump may only be used for its intended purpose which means heating domestic hot water preparation coolinstr The device can only be operated...

Page 5: ...vice and its components may only be carried out by qualified specialists heating refrigeration coolant technicians and electricians WARNING Observe the safety signs on and inside the device WARNING Th...

Page 6: ...OUTDOOR CIRCUIT Installation and filling The outdoor circuit can be vertical boreholes or horizontal The horizontal circuit must be installed below the freezing zone depending on the ground of the ins...

Page 7: ...RCUIT To avoid gas formation it is recommended not to use galvanised pipe systems WARNING The area of the domestic hot water tank heat exchanger must correspond to the capacity of the heat pump The wa...

Page 8: ...e system The presence of air in the system produces corrosive products such as magnetite or sediment Magnetite has an abrasive effect that is especially enhanced in pumps valves or eddy flow component...

Page 9: ...ecial means of thermal insulation in accordance with current standards The main normative document which defines the requirements for thermal insulation is Order No 1 245 of the Minister of Energy of...

Page 10: ...5 0 262 20 0 96360 60 0 2490 140 0 232 15 0 72502 65 0 2084 145 0 206 10 0 55047 70 0 1753 150 0 183 5 0 42158 75 0 1481 155 0 163 0 0 32555 80 0 1256 160 0 145 5 0 25339 85 0 1070 165 0 130 10 0 1987...

Page 11: ...ce with the requirements of this operating manual the electrical installation works have been properly performed the heating circuit has been flushed and properly filled all valves and shut off device...

Page 12: ...r to vandens vo tuvas V sinimo vo tuvas NO5 C4 C5 C3 NO3 Boilerio teno rel NO5 C5 NC5 COM DI1 A1 13 KU1 13 14 Operatoriaus panel CAN RJ COM P1 P2 X1 1 X1 2 X1 6 X1 5 X1 4 X1 3 M M2 M M3 KM1 A2 F1 14 X...

Page 13: ...omatinio jungiklio Kambario temp daviklio gnybt rinkl s Boilerio temp daviklio gnybt rinkl s Kabelinis latakas Element tvirtinimo plok t Heat pump inlet from a separate circuit breaker Neutral termina...

Page 14: ...mperature medium The manufacturer recommends the use of underfloor heating for this connection method Each heat pump has the ability to connect to the Internet so you can see the heat pump settings an...

Page 15: ...l flowing from the outdoor circuit during the warm season The outdoor circuit cannot be used for cooling and heating at the same time Each heat pump has the ability to connect to the Internet so you c...

Page 16: ...nk up to 30 of the heating circuit can be closed at the same time Variable capacity heat pumps do not require buffer capacity Each heat pump has the ability to connect to the Internet so you can see t...

Page 17: ...Variable capacity heat pumps do not require buffer capacity For fan radiators additional pipes must be laid from the outdoor circuit to which they will be connected via a three way valve The outdoor c...

Page 18: ...essure bar 45 Heating system Rated flow DT 7K m3 h 1 00 1 50 2 00 2 00 2 20 Min flow temperature C 15 Max flow temperature C 60 Max permissible operating pressure bar 4 0 Connection Cu mm 28 Power net...

Page 19: ...Rated flow DT 7K m3 h 1 00 1 50 2 00 2 00 2 20 Min flow temperature C 15 Max flow temperature C 60 Max permissible operating pressure bar 4 0 Hot water tank volume l 200 Capacity material Stainless s...

Page 20: ...85 1 32 4 43 Compressor power 60 rps kW 13 00 2 84 4 58 Compressor power 85 rps kW 18 60 4 32 4 31 Compressor Type Scroll Mass of refrigerant R410A kg 2 20 Maximum pressure bar 45 Heating system Hot...

Page 21: ...5 64 Tj 7 C Pdh 5 72 kW Tj 7 C COPd or PERd 5 71 Tj 12 C Pdh 5 81 kW Tj 12 C COPd or PERd 5 85 Tj Tiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd or PERd Tj operating limi...

Page 22: ...2 C Pdh 7 92 kW Tj 12 C COPd arba PERd 5 84 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd arba PERd Tj operating limit temperature Pdh kW Tj operating limit temperatu...

Page 23: ...2 C Pdh 9 82 kW Tj 12 C COPd arba PERd 5 85 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd arba PERd Tj operating limit temperature Pdh kW Tj operating limit temperatu...

Page 24: ...j 12 C Pdh 11 87 kW Tj 12 C COPd arba PERd 6 08 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd arba PERd Tj operating limit temperature Pdh kW Tj operating limit tempe...

Page 25: ...j 12 C Pdh 14 05 kW Tj 12 C COPd arba PERd 6 24 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd arba PERd Tj operating limit temperature Pdh kW Tj operating limit tempe...

Page 26: ...71 Tj 12 C Pdh 5 81 kW Tj 12 C COPd arba PERd 5 85 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd arba PERd Tj operating limit temperature Pdh kW Tj operating limit te...

Page 27: ...74 Tj 12 C Pdh 7 92 kW Tj 12 C COPd arba PERd 5 84 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd arba PERd Tj operating limit temperature Pdh kW Tj operating limit te...

Page 28: ...79 Tj 12 C Pdh 9 82 kW Tj 12 C COPd arba PERd 5 85 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd arba PERd Tj operating limit temperature Pdh kW Tj operating limit te...

Page 29: ...5 89 Tj 12 C Pdh 11 87 kW Tj 12 C COPd arba PERd 6 08 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd arba PERd Tj operating limit temperature Pdh kW Tj operating limit...

Page 30: ...5 98 Tj 12 C Pdh 14 05 kW Tj 12 C COPd arba PERd 6 24 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd arba PERd Tj operating limit temperature Pdh kW Tj operating limit...

Page 31: ...Tj 12 C Pdh 12 80 kW Tj 12 C COPd or PERd 5 71 Tj Tbiv bivalent temperature mode Pdh kW Tj Tbiv bivalent temperature mode COPd or PERd Tj operating limit temperature Pdh kW Tj operating limit tempera...

Page 32: ...PM3 K FLEX AS 25 75 180 UPM3 K FLEX AS 25 75 180 IGLU Aleut 9 WT 9 KW UPM3 K FLEX AS 25 75 180 UPM3 K FLEX AS 25 75 180 IGLU Aleut 11 WT 11 KW UPM3 K FLEX AS 25 75 180 UPMXL 25 125 180 PWM IGLU Aleut...

Page 33: ...33 Annex No 3 UPM3 K FLEX AS 25 75 180 characteristic UPM3 K FLEX AS 25 75 180 electrical parameters 1 x 230 V 50 60 Hz Speed P1 W I1 A Min 2 0 04 Max 60 0 58 Dimensions of the UPM3 circulation pump...

Page 34: ...o 4 UPMXL GEO 25 125 180 PWM 1 x 230 V 50 60 Hz characteristics UPMXL GEO 25 125 180 PWM electrical parameters 1 x 230 V 50 60 Hz Speed P1 W I1 A Min 3 0 06 Max 180 1 4 Dimensions of the UPMXL circula...

Page 35: ...inan io glikolio pajungimo atvamzdis E i einan io glikolio pajungimo atvamzdis F G angos elektrini pajungim kabeliams Where A supply heating water connection nozzle B nozzle of heating water supplied...

Page 36: ...Annex No 6 Design dimensions of the heat pump from the front Design dimensions of the heat pump from the top 120cm 180cm 62cm 62cm 5cm 5cm 62cm 62cm 80cm 80cm 62cm 80cm 80cm 5cm 62cm 62cm 120cm 180cm...

Page 37: ...__________________________________________ _____________________________________________________________ _____________________________________________________________ _________________________________...

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