22
The collector pump will be started with
100% capacity, if the difference between
T1
and
T2
exceeds the value of
dTonPOOL
and it will be
working for the time specified in parameter
tP
. If
after this time the difference between
T1
and
T2
is still above
dTonPOOL,
the pump speed will
remain at 100%. If the said difference between
T1
and
T2
drops below
dTonPOOL,
the
controller will start reducing the pump speed,
until
the
difference
between
T1
and
T2
reaches
the
value
specified
as
dToffPOOL
.
If the difference between
T1
and
T2
is between
the values
dTonPOOL
÷
dToffPOOL
, the
controller will calculate and set pump speed
proportionally.
When
dToffPOOL
is reached, the pump will work
at minimal speed (
Pmin
), below it will be
stopped.
The system operates, until
T2
sensors
reaches preset temperature
TsPOOL
, and then
the collector pump
P1
is stopped.
If
T1
temperature in collector reaches
critical value (
TCOLcr
), then the controller will
allow the collector pump to be started, in order
to
reduce the collector’s temperature below
hysteresis
HP1.
P2
pump operation depends on
dTP2
setting.
If the setting is other than
OFF
, pump
P2
will be started, if the difference
T1-T4<dTP2
between collector and exchanger is lower than
dTP2
setting value.
At the setting value
OFF
, the pump
P2
will be started after the time
tDLY
from the start
of
P1
pump.
Pool exchanger
P2
pump will be always
stopped after
tDLY
time, counting from the
moment when the collector pump
P1
is stopped.
List of parameters in
Adjustment
menu
TsPOOL-
Pool temperature preset.
Alarm TCOLcr
–
Switching on (YES) or off (NO)
the
alarm
on
exceeding
TCOLcr
temperature. The controller’s operation is the
same at both settings. If the parameter is set
as NO, the controller will not alarm after
exceeding
TCOLcr
at the collector sensor.
13.11.
Solar thermal scheme J
Loading of
DHW
reservoir from solar collector
and from back-up source.
Fig. 13.10 Solar thermal scheme J
The collector pump will be started with
100% capacity, if the difference between
T1
and
T2
exceeds the value of
dTonDHW
and it will be
working for the time specified in parameter
tP
. If
after this time the difference between
T1
and
T2
is still above
dTonDHW
the pump speed will
remain at 100%. If the said difference between
T1
and
T2
drops below
dTonDHW,
the controller
will start reducing the pump speed,
until the difference between
T1
and
T2
reaches
the value specified as
dToffDHW
. If the
difference between
T1
and
T2
is between the
values
dTonDHW
÷
dToffDHW
, the controller
will calculate and set pump speed proportionally.
When
dToffDHW
is reached, the pump
will work at minimal speed (
Pmin
), below it will
be stopped.
If
TsDHW
temperature is reached for
sensor:
T2
- reservoir loading from collector will
be stopped by the time when measured
temperature at
T2
is lower than
TsDHW
–
HP1.
If
T1
temperature in the collector reaches
the value of
TCOLcr
, the collector pump will be
started (despite of reaching
TsDHW
). It is aimed
to reduce the collector’s temperature. It will be
stopped, when
T1
drops below
TCOLcr-HP1.
If
TDHWmax
is reached at
T2
sensor, loading of
heat to the reservoir is disabled (even if
TCOLcr
has been reached). It is to protect the reservoir
from overheating.
The controller will heat
DHW
reservoir
from
back-up
source
(
P2
outlet)
up
to
TDHWmin
temperature at
T3
sensor.
When the
temperature is reached, the controller will disable
P2
output. It will re-enabled when
T3
sensor
temperature is lower than
TDHWmin-HP2
Setting
TDHWmin
may be changed through
main menu item
TDHWmin
as described in
section 8.1.
List of parameters in
Adjustment
menu
TsDHW-
Reservoir temperature preset
Night cooling- YES
enables/
NO
disables night
cooling mode in hours 0
00
÷5
00
.
Night cooling ON
–
DHW reservoir temperature
(
T2
sensor) when exceeded at 0
00
, if night
cooling function is enabled, the controller will
decide on night cooling activation.
Night
cooling
OFF
–
DHW
reservoir
temperature (
T2
sensor), to which the
Summary of Contents for PCSol 201
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