AIC SILOX S Скачать руководство пользователя страница 9

9

I10_092-01 • SILOX S_EN

T

echnical

 S

pecificaTionS

Pressure Drop Curves

Continuous DHW production curves with different 

temperatures and predetermined flow rate of the 

primary circuit for ΔTp=20ºC and Δts=30ºC

DHW (l/h)

Power (kW)

Power (kW)

Power (kW)

Litres of DHW/ hour (

T s

= 35ºC)

Litres of DHW/ hour (

T s

= 50ºC)

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 45ºC

Performance and pressure losses

83

Pressure losses between input and output connections

of the primary circuit for different flow rates.

Test data

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 60ºC

Performance GX6 S/D/DEC 90

Peak flow rate at 40ºC 

L/10min

120

Peak flow rate at 45ºC

L/10min

102

Peak flow rate at 60ºC

L/10min

72

Peak flow rate at 40ºC

L/60min

590

Peak flow rate at 45ºC

L/60min

495

Peak flow rate at 60ºC

L/60min

295

Continuous flow at 40ºC

L/h

565

Continuous flow at 45ºC

L/h

470

Continuous flow at 60ºC

L/h

265

Preheating time from 10 to 75ºC

min

28

Primary circuit flow rate

m

3

/h

5

GX6 S/D/DEC 90

Note: Performance data assumes a primary flow temperature of 

85ºC and domestic cold water supply of 10ºC

Continuous DHW production curves with different 

temperatures and predetermined flow rate of the 

primary circuit for ΔTp=20ºC and Δts=30ºC

DHW (l/h)

Power (kW)

Power (kW)

Power (kW)

Litres of DHW/ hour (

T s

= 35ºC)

Litres of DHW/ hour (

T s

= 50ºC)

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 45ºC

Performance and pressure losses

84

Pressure losses between input and output connections

of the primary circuit for different flow rates.

Test data

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 60ºC

GX6 S/D/DEC 130

Performance GX S/D/DEC 130

Peak flow rate at 40ºC 

L/10min

184

Peak flow rate at 45ºC

L/10min

175

Peak flow rate at 60ºC

L/10min

128

Peak flow rate at 40ºC

L/60min

1000

Peak flow rate at 45ºC

L/60min

950

Peak flow rate at 60ºC

L/60min

582

Continuous flow at 40ºC

L/h

960

Continuous flow at 45ºC

L/h

920

Continuous flow at 60ºC

L/h

545

Preheating time from 10 to 60ºC

min

18

Primary circuit flow rate

m

3

/h

5

ECS 

Tª=60ºC

ECS 

Tª=45ºC

ECS 

Tª=30ºC

Note: Performance data assumes a primary flow temperature of 

85ºC and domestic cold water supply of 10ºC

Continuous DHW production curves with different 

temperatures and predetermined flow rate of the 

primary circuit for ΔTp=20ºC and Δts=30ºC

DHW (l/h)

Power (kW)

Power (kW)

Power (kW)

Litres of DHW/ hour (

T s

= 35ºC)

Litres of DHW/ hour (

T s

= 50ºC)

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 45ºC

Performance and pressure losses

85

Pressure losses between input and output connections

of the primary circuit for different flow rates.

Test data

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 60ºC

Performance GX6 S/D/DEC 190

Peak flow rate at 40ºC 

L/10min

315

Peak flow rate at 45ºC

L/10min

284

Peak flow rate at 60ºC

L/10min

200

Peak flow rate at 40ºC

L/60min

1132

Peak flow rate at 45ºC

L/60min

1073

Peak flow rate at 60ºC

L/60min

656

Continuous flow at 40ºC

L/h

980

Continuous flow at 45ºC

L/h

947

Continuous flow at 60ºC

L/h

548

Preheating time from 10 to 60ºC

min

27

Primary circuit flow rate

m

3

/h

5

GX6 S/D/DEC 190

ECS 

Tª=60ºC

ECS 

Tª=45ºC

ECS 

Tª=30ºC

Note: Performance data assumes a primary flow temperature of 

85ºC and domestic cold water supply of 10ºC

Continuous DHW production curves with different 

temperatures and predetermined flow rate of the 

primary circuit for ΔTp=20ºC and Δts=30ºC

DHW (l/h)

Power (kW)

Power (kW)

Power (kW)

Litres of DHW/ hour (

T s

= 35ºC)

Litres of DHW/ hour (

T s

= 50ºC)

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 45ºC

Performance and pressure losses

87

Pressure losses between input and output connections

of the primary circuit for different flow rates.

Test data

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 60ºC

GX6 S/D/DEC 400

ECS 

Tª=60ºC

ECS 

Tª=45ºC

ECS 

Tª=30ºC

Performance GX6 S/D/DEC 400

Peak flow rate at 40ºC 

L/10min

575

Peak flow rate at 45ºC

L/10min

515

Peak flow rate at 60ºC

L/10min

361

Peak flow rate at 40ºC

L/60min

2135

Peak flow rate at 45ºC

L/60min

1989

Peak flow rate at 60ºC

L/60min

1218

Continuous flow at 40ºC

L/h

1875

Continuous flow at 45ºC

L/h

1769

Continuous flow at 60ºC

L/h

1028

Preheating time from de 10 to 60ºC

min

30

Primary circuit flow rate

m

3

/h

6

Note: Performance data assumes a primary flow temperature of 

85ºC and domestic cold water supply of 10ºC

Continuous DHW production curves with different 

temperatures and predetermined flow rate of the 

primary circuit for ΔTp=20ºC and Δts=30ºC

DHW (l/h)

Power (kW)

Power (kW)

Power (kW)

Litres of DHW/ hour (

T s

= 35ºC)

Litres of DHW/ hour (

T s

= 50ºC)

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 45ºC

Performance and pressure losses

86

Pressure losses between input and output connections

of the primary circuit for different flow rates.

Test data

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 60ºC

GX6 S/D/DEC 260

ECS 

Tª=60ºC

ECS 

Tª=45ºC

ECS 

Tª=30ºC

Performance GX6 S/D/DEC 260

Peak flow rate at 40ºC 

L/10min

380

Peak flow rate at 45ºC

L/10min

341

Peak flow rate at 60ºC

L/10min

236

Peak flow rate at 40ºC

L/60min

1545

Peak flow rate at 45ºC

L/60min

1455

Peak flow rate at 60ºC

L/60min

873

Continuous flow at 40ºC

L/h

1400

Continuous flow at 45ºC

L/h

1336

Continuous flow at 60ºC

L/h

873

Preheating time from de 10 to 60ºC

min

28

Primary circuit flow rate

m

3

/h

6

Note: Performance data assumes a primary flow temperature of 

85ºC and domestic cold water supply of 10ºC

Continuous DHW production curves with different 

temperatures and predetermined flow rate of the 

primary circuit for ΔTp=20ºC and Δts=30ºC

DHW (l/h)

Power (kW)

Power (kW)

Power (kW)

Litres of DHW/ hour (

T s

= 35ºC)

Litres of DHW/ hour (

T s

= 50ºC)

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 45ºC

Performance and pressure losses

88

Pressure losses between input and output connections

of the primary circuit for different flow rates.

Test data

Performance curves for different flow rates and temperatures

of the primary circuit for DHW production from 10ºC to 60ºC

GX6 S/D/DEC 600

ECS 

Tª=60ºC

ECS 

Tª=45ºC

ECS 

Tª=30ºC

Performance GX6 S/D/DEC 600

Peak flow rate at 40ºC 

L/10min

900

Peak flow rate at 45ºC

L/10min

809

Peak flow rate at 60ºC

L/10min

566

Peak flow rate at 40ºC

L/60min

2755

Peak flow rate at 45ºC

L/60min

2546

Peak flow rate at 60ºC

L/60min

1600

Continuous flow at 40ºC

L/h

2225

Continuous flow at 45ºC

L/h

2085

Continuous flow at 60ºC

L/h

1241

Preheating time from de 10 to 60ºC

min

34

Primary circuit flow rate

m

3

/h

6

Note: Performance data assumes a primary flow temperature of 

85ºC and domestic cold water supply of 10ºC

Below are the pressure losses between input and output connections of the primary circuit for 

different flow rates

Fig. 2.  SX90S Pressure Drop Curve

Fig. 3.  SX130S Pressure Drop Curve

Fig. 4.  SX190S Pressure Drop Curve

Fig. 6.  SX400S Pressure Drop Curve

Fig. 5.  SX260S Pressure Drop Curve

Fig. 7.  SX600S Pressure Drop Curve

Содержание SILOX S

Страница 1: ...h e a t i n g s y s t e m s EN installation and maintenance manual FOR THE INSTALLER AND THE USER 90 130 190 260 400 600 1000 L DOMESTIC HOT WATER STAINLESS STEEL TANKS I10_092 01 SILOX S SILOX S...

Страница 2: ...operation of the appliance and the hydraulic system as well as the safety devices that are provided Any instruction regarding periodic checks to be performed and possible anomaly to be reported All t...

Страница 3: ...ts 11 Recommendations for the Quality of Water Primary circuit 12 Hydraulic Connections 13 Commissioning 14 Filling the Tank 14 Starting Up 14 Maintenance 15 Safety Instructions and Recommendations 15...

Страница 4: ...r injuries or death Indicates an important instruction which if not followed could re sult in a hazardous situation that could cause damage to equip ment and or injuries Indicates an essential instruc...

Страница 5: ...or written consent of the manufacturer If components need to be replaced only genuine factory parts or compo nents approved by the manufacturer must be used When working on the appliance and the syste...

Страница 6: ...and hole 2 Thermal insulation 3 Drywell for temperature sensor 4 DHW inner storage tank in stainless steel 5 Steel primary outer tank 6 Primary connection return 7 Base cover 8 Inspection hole 9 Dip t...

Страница 7: ...170 182 182 182 192 336 D 575 980 777 1027 1512 1493 1926 Connections in SX90S SX130S SX190S SX260S SX400S SX600S SX1000S Cold water inlet M G 3 4 G 3 4 G 3 4 G 3 4 G 1 G 1 G 11 4 DHW outlet M G 3 4 G...

Страница 8: ...pty weight Kg 35 51 64 78 106 151 239 Standing heat loss W 45 50 58 63 99 103 113 Energy efficiency class B B B B C C C Hydraulic Performance SX90S SX130S SX190S SX260S SX400S SX600S SX1000S Peak Flow...

Страница 9: ...and temperatures of the primary circuit for DHW production from 10 C to 45 C Performance and pressure losses 86 Pressure losses between input and output connections of the primary circuit for differen...

Страница 10: ...the electrical circuit isolate the electri cal supply of the appliance through the external power cutting device fuse circuit breaker etc All connections must be carried out in accordance with curren...

Страница 11: ...appli ance power and the system size and the increase in temperature and pressure Using antifreeze in the primary circuit will reduce the heating performance The higher the concentration of antifreeze...

Страница 12: ...eds to be refilled frequently check for leaks in the primary circuit Inhibitors may be used according to stand ard EN 14868 An air separator on the appliance supply circuit combined with a dirt separa...

Страница 13: ...f tap DHW Outlet Isolating valve Cold water inlet Thermostatic mixing valve Pressure reducing valve Motorised spring return valve or manual valve From distribution network Make sure that your hydrauli...

Страница 14: ...d 1 5 bar Follow on Task s Check that there are no leaks Start the boiler as required Refer to the Start up procedure opposite Always fill and pressurise the inner tank DHW before filling the outer pr...

Страница 15: ...ne factory parts or parts approved by the manu facturer Replace any gaskets or seals present on the removed components before reinstallation unless otherwise speci ed in the procedures Operate manuall...

Страница 16: ...is sound Gradually introduce the descaling agent until the correct amount is added for the volume of water Run the pump and monitor the pH value the pro cess is complete when the pH stabilises at less...

Страница 17: ...an be extremely hot Use extreme care when draining a hot appliance Draining procedure Always drain depressurize the outer tank before draining the inner tank to prevent any deformation of the inner ta...

Страница 18: ...refer to the heat generator manual The isolating valves of the primary circuit are closed 2 Open the isolating valves to allow prima ry water to fill the outer tank Make sure that the DHW in ner tank...

Страница 19: ...uct Fiche AIC SILOX S Referring to Commission Delegated Regulation No 812 2013 Model Energy efficiency class Standing loss Volume SX90S B 45 W 80 l SX130S B 50 W 122 l SX190S B 58 W 187 l SX260S B 63...

Страница 20: ...AIC Europe B V Graafschap Hornelaan 163A NL 6001 AC Weert The Netherlands www myaic eu...

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