DHW METHODS
HeatNet Control V3
Page 46
DHW Method 4b: Space Heating with DHW Override of Setpoint on MASTER,
using a DHW 10K Tank Sensor
Figure 37
Example: DHW Method 4b: Space Heating with DHW Override of Setpoint on MASTER, using a DHW Sensor,
Primary Secondary, Reverse Return.
MASTER
MEMBER
2
MEMBER
3
HNET
Lo
ca
l P
u
m
p
HNET
DH
W
P
u
m
p
DHW Pump
Tank Sensor
Lo
ca
l P
u
m
p
Su
p
p
ly
H
ea
d
er
Se
n
so
r
Sy
st
em
P
u
m
p
Cold Water
Makeup
Ex
pa
ns
io
n
Ta
nk
Ball Valve
Pressure
Reducing
Backflow
Prevention
Sy
st
em
R
e
tu
rn
Se
n
so
r
HeatNet
HeatNet
HeatNet
Domestic
Supply
Cold Water
Make Up
Domestic
Supply
Cold Water
Make Up
WM
Water Meter
MIN 3X PIPE DIAMETERS
MAX 10X PIPE DIAMETERS
BETWEEN CENTERS (TYP)
System Return
Sensor
System Header Sensor
Lo
ca
l P
u
m
p
System
Pump
System
Supply
System
Return
DHW METHOD 4b: Space Heating with DHW Override of Setpoint on MASTER, using a DHW Sensor, Primary
Secondary, Reverse Return
In DHW METHOD 4b, the MASTER’s
Heat Demand
input enables space heating by energizing the system pump and
maintaining the Heating Setpoint at the MASTER’s System Header Sensor. The MASTER’s
OR OVR
input is jumped to enable
DHW heating using the DHW tank sensor. When the DHW tank temperature drops, a DHW heat demand is generated, and the
system loop temperature is overridden with the DHW Setpoint. They system pump continues to run, and the DHW pump is
enabled to supply heat to the tanks until the DHW tank is satisfied.
Boilers are staged to meet the active setpoint based on their runtime, and each boiler will enable its local pump when it is running.
The MASTER modulates the boilers in order to maintain the active setpoint.
Summary of Contents for FUTERA XLF Series
Page 27: ...CONTROL METHODS HeatNet Control V3 Page 27 Figure 25 Base loading relay...
Page 67: ...WIRING CONNECTIONS HeatNet Control V3 Page 67 Figure 49 Jumper Dip Switch Locations...
Page 73: ...WIRING CONNECTIONS HeatNet Control V3 Page 73 Figure 57 Temperature sensors...