![elco AQUATOP T Series Скачать руководство пользователя страница 43](http://html1.mh-extra.com/html/elco/aquatop-t-series/aquatop-t-series_operating-instructions-manual_2377146043.webp)
43
Technical Data
AQUATOP T10C-T14C
Heat Pump AQUATOP T
T10C
T12C
T14C
Heat source brine outlet
-5
-5
-5
Heat source water outlet
3
3
3
Heater flow temperature
20/55
20/55
20/55
Electrical Data
Operating voltage, feed
3 x 400 V / 50 Hz
Rated input with B0/W35
PNT
kW
2.2
2.8
3.3
Ext. protection with electric heating element
AT
20
20
25
Ext. protection without electric heating element
AT
13
16
20
Rated current electric heating element
l max.
A
9
9
9
Rated current compressor
I max.
A
7
10
11
Current with blocked rotor
LRA
A
46
50
66
Starting current with soft starter
VSA
A
17.5
25
27.5
Power consumption el. heating element
Pmax.
kW
6/4/2
Power consumption circulating pumps
Pmax.
kW
0.25
0.45
0.46
Starts per hour
max.
(-)
3
3
3
Start delay after power outage
sec.
60-120
Dimensions / Connections / Misc.
Weight
kg
204
203
218
Dimensions
WxDxH
mm
670x950x1050
Heating circuit connection
fem. thrd.
inch
1"
1"
1"
Brine circuit connection
fem. thrd.
inch
1"
1"
1"
Sound power level
Lwa
dB(A)
43
45
48
Expansion vessel heater
V
l
12
12
12
Set default pressure heating circuit
p
bar
1
1
1
Expansion vessel brine circuit
V
l
12
12
12
Set default pressure brine circuit
p
bar
1
1
1
Safety valve (brine/heater)
p
bar
3
3
3
LP pressure controller OFF- switch off
p
bar
1.5
1.5
1.5
LP pressure controller ON- switch on
p
bar
2.9
2.9
2.9
HP pressure controller OFF- switch off
p
bar
29
29
29
HP pressure controller ON- switch on
p
bar
24
24
24
Switching point brine pressure monitor
p
bar
Off 0.65 / On 0.80
Usage Range
T min
°C
T min
°C
min/max
°C
1) In accordance with EN14511
2) Incl. circulating pump
3) Required length of the geothermal probe for normal geological conditions (45 W/m), without hot water heating.
4) Residual delivery pressure is indicated at highest level
5) Water/ethylene glycol: cp=~3.6 [KJ/kg*K], p=~1.05 [kg/dm3] (ASHRAE)
6)
∆
T max= 10 K, for PWW production
∆
Tmax = 5 K. (V' [l/h]= Qh[kW]/(4.18*
∆
T[K]*p[kg/l])*3600)