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7.3 Automatic night-time duty
To be set on the control panel or with the R100, see
section
.
Once automatic night-time duty has been activated,
the pump automatically changes between normal
duty and night-time duty (duty at low performance).
Changeover between normal duty and night-time
duty is dependent on the flow-pipe temperature.
The pump automatically changes over to night-time
duty when the built-in sensor registers a flow-pipe
temperature drop of more than 10-15 °C within
approx. 2 hours. The temperature drop must be at
least 0.1 °C/min.
Changeover to normal duty takes place without a
time lag when the temperature has increased by
approx. 10 °C.
7.4 Constant-curve duty
To be set with the R100, see section 8. Setting the
pump.
The pump can be set to operate according to a
constant curve, like an uncontrolled pump, see
fig. 11.
MAGNA 32-120, 40-120, 50-120, 65-120
Select one of 91 curves between the max. and min.
curves.
MAGNA 50-60, 65-60
Select one of 41 curves between the max. and min.
curves.
Fig. 11
Operating curves
7.5 Max. or min. curve duty
To be set on the control panel, with the R100 or via
GENI module, see section
.
The pump can be set to operate according to the
max. or min. curve, like an uncontrolled pump, see
fig. 12.
This operating mode is available, irrespective of the
control mode.
Fig. 12
Max. and min. curves
The
max. curve
mode can be selected if an
uncontrolled pump is required.
The
min. curve
mode can be used in periods in
which a minimum flow is required. This operating
mode is for instance suitable for manual night-time
duty if automatic night-time duty is not desired.
7.6 Temperature influence
To be set with the R100, see section
When this function is activated in proportional- or
constant-pressure control mode, the setpoint for
head will be reduced according to the liquid
temperature.
It is possible to set temperature influence to function
at liquid temperatures below 80 °C or below 50 °C.
These temperature limits are called T
max.
. The
setpoint is reduced in relation to the head set
(= 100 %) according to the characteristics below.
Fig. 13
Temperature influence
In the above example, T
max.
= 80 °C has been
selected. The actual liquid temperature T
actual
causes the setpoint for head to be reduced from
100 % to H
actual
.
The temperature influence function requires:
•
Proportional- or constant-pressure control mode.
•
The pump must be installed in the flow pipe.
•
System with flow-pipe temperature control.
Note
Automatic night-time duty cannot be
used in air-conditioning systems.
TM
02
02
45
09
04
H
Q
Max.
Min.
T
M
00
55
47
45
9
6
TM
01 06
26 179
7
Q
H
Max.
Min.
30%
100%
80
50
20
H
H
Q
t [°C]
T
actual
H
actual
Содержание MAGNA 2000 Series
Страница 4: ...4...
Страница 160: ...160 2 4 3 GENI 7 12 1 3 4 4 4 4 4 5 TM02 5507 3402 1 2 3 4 5 6 Rp 3 TM03 8831 2607 5 4 6 TM02 0640 0301...
Страница 163: ...163 6 11 8 8 TM02 5508 3402...
Страница 164: ...164 7 R100 19 172 AUTOADAPT R100 GENI 0 10 V bus GENIbus O Control MPC Series 2000 Grundfos 7 12 1 LON bus LON LonWorks...
Страница 166: ...166 7 2 7 2 1 AUTOADAPT Grundfos AUTOADAPT AUTOADAPT 1 4 2 3 fan coils 1 2 2 3 4...
Страница 169: ...169 R100 8 4 R100 R100 7 9 19 8 2 2 9 7 10 GENI LON 14 14 14 R100 5 1 TM02 0241 0904 2 TM02 0242 0904 3 TM02 0805 0904...
Страница 174: ...174 8 2 4 7 5 MIN 24 24 8 2 5 STOP 8 2 6 0 255 sec 8 3 R100 R100 Grundfos R100 R100 R100 R100 TM02 0247 2507 R100 H MIN...
Страница 176: ...176 8 5 R100 R100 8 5 1 8 8 AUTOADAPT R100 AUTOADAPT Stop Q H 8 5 2 Stop AUTOADAPT 8 5 3 8 5 4 R100...
Страница 177: ...177 8 6 8 6 1 0 10 V 8 6 2 Stop R100 BUS 8 6 3 8 6 4 8 6 5 8 6 6 8 6 7...
Страница 178: ...178 8 7 8 7 1 7 1 7 4 AUTOADAPT 8 5 1 AUTOADAPT 8 7 2 8 7 3 7 6 8 7 1 50 C 80 C 8 5 1 8 7 4 R100 8 7 5 AUTOADAPT R100...
Страница 180: ...180 9 5 1 2 R100 3 on off off 4 bus 1 2 R100 3 on off 4 bus R100 8 5 3...
Страница 181: ...181 R100 8 5 3 Grundfos AUTOADAPT AUTOADAPT R100...
Страница 182: ...182 10 GRUNDFOS MAGNA 1 2 L N 3 L B 4 A 5 L C 1000 VAC 1500 VDC L N 35 mA 6 A 7 L B 8 L 9 TM02 0238 0904 A B C...
Страница 310: ...310 1 1 1 1 2 1 3 1 4 1 5 1 6 DIN 4844 W00...
Страница 311: ...311 1 7 1 8 1 9 3 2 15150 3 GRUNDFOS MAGNA 2000 4 GRUNDFOS MAGNA 4 1 o VDI 2035 GRUNDFOS MAGNA 14...
Страница 313: ...313 5 4 4 4 5 5 0 C TM02 0640 0301...
Страница 314: ...314 6 5 5 6 6 6 1 1 x 230 240 10 6 50 60 5 3 11 1 TM02 0456 3503 2 TM02 0457 3503 1 TM02 7441 3503 2 TM02 7442 3503...
Страница 316: ...316 7 12 8 8 TM02 5508 3402...
Страница 317: ...317 8 R100 19 327 ADAPT R100 GENI 0 10 GENIbus Grundfos Control MPC 2000 8 12 1 LON LON LonWorks...
Страница 319: ...319 8 2 Grundfos ADAPT ADAPT 1 HN 4 1 2 3 1 HN 2 1 2 3 4...
Страница 322: ...322 8 8 1 2 3 R100 1 2 3 9 2 9 2 9 2 1 3 2 NC NO C 1 2 3 NC NO C 1 3 2 NC NO C 1 2 3 NC NO C 1 3 2 NC NO C 1 2 3 NC NO C...
Страница 323: ...323 R100 9 4 R100 R100 8 9 19 9 2 2 10 8 10 GENI LON 14 14 14 R100 5 1 TM02 0241 0904 2 TM02 0242 0904 3 TM02 0805 0904...
Страница 327: ...327 9 1 ADAPT 9 2 19 10 19 9 2 1 8 1 3 20 4 19 1 2 3 4 5 TM03 8798 2507 TM03 1288 1505 ADAPT ADAPT ADAPT ADAPT...
Страница 329: ...329 9 2 5 STOP 9 2 6 0 255 9 3 R100 Grundfos R100 R100 R100 R100...
Страница 331: ...331 9 5 R100 R100 9 5 1 9 8 ADAPT R100 ADAPT Q H 9 5 2 ADAPT 9 5 3 9 5 4 A R100...
Страница 332: ...332 9 6 9 6 1 0 10 9 6 2 R100 9 6 3 9 6 4 9 6 5 9 6 6 0 9 6 7 0...
Страница 333: ...333 9 7 9 7 1 8 1 8 4 ADAPT 9 5 1 ADAPT 9 7 2 9 7 3 8 6 9 7 1 50 80 9 5 1 9 7 4 R100 9 7 5 P ADAPT R100...
Страница 334: ...334 9 7 6 1 64 R100 Grundfos Control MPC 2000 9 8 R100 R100 R100 Grundfos R100 1 2 3 4 5 R100 1 2 3 4 5 6...
Страница 335: ...335 10 5 GRUNDFOS 1 2 R100 3 4 1 2 R100 3 4 R100 9 5 3 GRUNDFOS...
Страница 336: ...336 R100 9 5 3 Grundfos e ADAPT ADAPT R100...
Страница 339: ...339 13 1 2 Grundfos 14 24 Grundfos...
Страница 342: ...342 MAGNA 32 120 40 120 50 120 65 120 50 60 65 60 TM02 0477 1004 C NO NC N L O P T S 7 8 3 2 1...
Страница 347: ...347 Positioning TM04 3266 4108...
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