25
(between
T3
and
T4
temperatures) falls by
auxiliary hysteresis
HP2
.
Night cooling
–
YES
enables /
NO
disables
night cooling mode between 0
00
÷5
00
hours.
Cooling
temp
ON.
–
DHW
container
temperature (on
T2
sensor), if exceeded,
and night cooling is enabled, the regulator
will begin the cool down at 0
00
a.m.
Cooling
temp.
OFF
–
DHW
container
temperature (on
T2 sensor)
to which the
regulator will be cooling down the container
(if night cooling function is enabled and
Cooling temp. ON
temperature is exceeded
between 0
00
÷5
00
).
TCOLkr alarm
–
Enabling (
YES
) or disabling
(
NO
) of the alarm of exceeding
TCOLkr
temperature. This function does not influence
regulator’s operation. If the parameter is set
to NO, the regulator will not set off an alarm
after
exceeding
TCOLkr
collector’s
temperature.
13.15.
Solar thermal scheme N
Loading of DHW container and pool with priorities
function.
Fig. 13.14 Solar thermal scheme N
Depending
on
Priority
setting
(
Pool/DHW
), the system will first load the
circuit to temperature preset of
TsDHW
or
TsPOOL
.
If the container circuit has priority and it
has not reached its temperature preset, then the
P1
collector pump will be started with 100%
capacity, if the difference between
T1
and
T2
exceeds 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.
After reaching preset temperature in priority
circuit, the controller will switch the circuit.
The pool circuit will work analogically, except
that the temperatures are calculated from
T1
and
T3
and the system uses auxiliary deltas
dTonPOOL
÷
dToffPOOL.
Pool exchanger
P2
pump is always switched on/off with delay as
specified in
tDLY
setting in relation to
P1
pump.
When the second circuit is heated up to
preset temperature, the collector pump is
stopped. It will be restarted, when on any circuit
the temperature drops by hysteresis value
(
HP1
), in accordance with priority setting.
If the collector temperature reaches
TCOLcr
value, the collector pump will be started
and the circuit will be switched to priority one in
order to reduce the collector temperature. It will
be stopped, when
T1
temperature drops below
T1<TCOLcr-HP1.
If Priority is set for
DHW
, the collector
unloading will be continued only to the time when
TDHWmax
is reached, and then the system
switches to the pool. In the pool circuit there is
no upper limit for discharging collector’s critical
temperature.
Switching
between
DHW/POOL
is
controlled through
H
output. The circuit operation
starts only when the switching time elapsed
(
tVALVE
).
Due to pool system, the scheme has no
night cooling function.
List of parameters in
Adjustment
menu
TsDHW
–
Preset A and B container temperature.
TsPOOL-
Preset pool temperature.
Priority-
Priority setting: container (
DHW
) or
pool (
POOL
) loading.
Alarm TCOLcr
–
Switching on (YES) or off (NO)
the
alarm
on
exceeding
TCOLcr
temperature. This function will not affect the
controller operation. If the parameter is set
as NO the controller will not alarm when
TCOLcr
temperature is exceeded at the
collector sensor.
13.16.
Solar thermal scheme O
Loading of DHW container and pool with priorities
function.
Summary of Contents for PCSol 201
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