Operational faults
40
BA_EQJW126F001_EN001
6.4
Return flow temperature limitation
The temperature difference between the flow and return flow indicates how well
the en- ergy is used: the greater the difference, the higher the efficiency. A return
flow sensor is sufficient to evaluate the temperature difference when the flow
temperatures are pre- set. The return flow temperature can be limited either to a
value depending on the out- door temperature (variable) or to a fixed set point.
When the temperature measured at return flow sensor RüF exceeds the limit
value, the set point of the flow temperature (flow temperature of the heating
system, charging temperature) is reduced. As a result, the primary flow rate is
reduced and the return flow temperature falls.
The
Limiting factor
determines how strongly the controller responds when the limit
val- ues are exceeded in either direction (PI algorithm).
If just proportional component is to be implemented, set CO5 -> F16 - 1. This
allows the integral-action component in the return flow temperature limitation
algorithm of all control circuits of the controller to be deactivated. The set point
reading (flow tempera- ture of the heating, charging temperature) blinks to
indicate that a return flow limitation is active in the control circuit concerned.
Note:
Using weather-compensated control with gradient characteristic, the
return flow temperature is limited to a fixed value by equating the
Base point of
return flow tempera- ture
and
Max. return flow temperature
(PA1) parameters.
Functions
WE
Configuration
Return flow sensors RüF1
1
CO1, 2, 4 -> F03 - 1
1.0
KP (limiting factor) / 0.1 to 10.0
Return flow temperature
0
CO5 -> F16
limitation with P algorithm*
* If CO5 -> F00 - 1 is indicated, access to the return flow, flow rate and heat capacity
settings are
locked.
Parameters
WE
Parameter level /
Range
of
values
Gradient, return flow
1.2
PA1 / 0.2 to 3.2
Level, return flow
0.0 °C
PA1 / –30.0 to 30.0 °C
Base point of return flow
65.0 °C
PA1 / 5.0 to 90.0 °C
temperature
Max. return flow temperature
65.0 °C
PA1 , 4 / 5.0 to 90.0 °C
Содержание equitherm EQJW126F001
Страница 5: ...Contents BA_EQJW126F001_EN001 5 12 5 Customer data 80 ...
Страница 9: ...BA_EQJW126F001_EN001 9 Operation Fig 1 Icons ...
Страница 27: ...BA_EQJW126F001_EN001 25 Functionsoftheheatingcircuit 24 BA_EQJW126F001_EN001 ...
Страница 28: ......
Страница 34: ...26 BA_EQJW126F001_EN001 Functionsof theheatingcircuit limits the value ...
Страница 38: ...Functionsof theheatingcircuit 32 BA_EQJW126F001_EN001 ...
Страница 45: ...Functionsoftheheatingcircuit BA_EQJW126F001_EN001 39 ...
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Страница 57: ...BA_EQJW126F001_EN001 47 Operationalfaults 46 BA_EQJW126F001_EN001 ...
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Страница 60: ...Operationalfaults 48 BA_EQJW126F001_EN001 available ...
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Страница 65: ...Communication BA_EQJW126F001_EN001 51 Station address ST 255 PA6 1 to 247 with CO6 F02 1 1 to 32000 ...
Страница 68: ...54 BA_EQJW126F001_EN001 Electrical connection block CO6 F04 1 is activated ...
Страница 74: ...Electrical connection 56 BA_EQJW126F001_EN001 ...
Страница 79: ...Installation BA_EQJW126F001_EN001 61 60 BA_EQJW126F001_EN001 ...
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Страница 82: ...Fig 7 Connecting the EQJW126 Controller with standard back panel Electrical connection 62 BA_EQJW126F001_EN001 ...
Страница 89: ...Appendix BA_EQJW126F001_EN001 69 F Function block number WE Default value Anl System code number ...
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