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15
4
MFA
eBus
TKO
PS
TKV*
TSU
TPU
TPO
PS
VIZ*
TSO
PPS
VSP
TKO
TSU
TSO
TPU
TPO
VIZ*
TKR*
TKR*
TKV*
PPS
X1:
N
1
N
2
N
L
3
N
4
5
6
X2:
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
PZW*
PZW*
VSP
M
AB
B
A
MFA
eBus
TKO
PS
TKV*
TSU
TPU
TBY
PS
VIZ*
VBY
VSP
TKO
TPU
VIZ*
TKR*
TKR*
TKV*
TSU
TBY
X1:
N
1
N
2
N
L
3
N
L
4
5
6
X2:
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
VBY
M
AB
A
B
VSP
M
AB
B
A
PZW*
PZW*
•
Energy yield calculation (optional;
➭
Ch. 7.10)
•
Circulation function (optional;
➭
Ch. 7.14)
The WRSol 2.0 determines the temperature differential
between the collector sensor (TKO) and the reference
sensor (TSU, TPU). If a collector flow sensor (TKV) is
fitted this can be included in the control.
As soon as the temperature differential is greater than the
value set (
... Diff. On
), the solar pump is switched on
and the tank is loaded.
Once the(
... Temp. Setpoint
)is reached, the three
way valve changes over and and loads the calorifier (DHW
storage tank) provided, in accordance with the priority
setting (
➭
Ch. 7.12).
Depending on the average pump speed and the minimum
storage tank temperature, the external heat exchanger can
be blocked via the potential free
Multi-funct. Output
(MFA).
In addition an 18 hour block can be activated.
The DHW function (Ch. 7.14) can also influence the MFA
output.
Using the charge reversal pump calorifier - storage tank
(PPS) the energy stored in the calorifier is utilised
depending on the
Storage Actual value top
(TSO)
and the
Calorifier Actual value top
(TPO)
(
➭
Ch. 7.19).
Possible settings MFA output:
0, 1, 2, 5, 6, 7, 8, 9, 10, 11, 12
KW
WW
•
Energy yield calculation (optional;
➭
Ch. 7.10)
•
Circulation function with sensor (optional;
➭
Ch. 7.15)
•
Three way valve (collector bypass)
The WRSol 2.0 determines the temperature differential
between the collector sensor (TKO) and the reference
sensor (TSU, TPU). If a collector flow sensor (TKV) is
fitted this can be included into the control.
As soon as the temperature differential is greater than the
value set (
... Diff. On
), the solar pump is switched on
and the tank is loaded.
The three way valve (VBY) is switched over depending on
the collector temperature (TKO) and the reference sensor
(TBY). Once the
... Temp. Setpoint
is reached, the
three way valve switches over and loads the DHW storage
tank provided, in accordance with the priority setting
(
➭
Ch. 7.12).
Depending on the average pump speed and the minimum
storage tank temperature, the external heat exchanger can
be blocked via the potential free
Multi-funct. Output
(MFA).
In addition an 18 hour block can be activated.
The DHW function (Ch. 7.14) can also influence the MFA
output.
By adding cold water the warm water from the DHW tank
is transferred into the dual stratification tank.
Possible settings MFA output:
0, 1, 2, 5, 6, 7, 8, 9, 10, 11, 12
Variation 5: Storage tank cascade for DHW and retrieval function
* optional
WW
KW
Variation 6: Storage tank cascade for DHW with collector bypass
* optional