Hydraulic connection
Hydraulic resistance
∆
T-measurement
∆
p-measurement
Water flow data
15
Hydraulic resistance
The hydraulic resistance depends on
the flow rate through the boiler and the
boiler type. In the graph the resistance
for a specific flow rate can be found.
The R60
0
0 is able to control a speed
controlled pump via a 0-10VDC signal.
It makes the flow rate modulate in pa-
rallel with the burner load. The mini-
mum flow rate, to which the pump is
allowed to modulate with the burner
load, is 30% of the nominal flow rate
through the boiler.
The flow rate through the boiler can
also be checked by calculation. This
can be done with a
∆
T as well as a
∆
p
measurement.
1.0
10.0
100.0
1.0
10.0
100.0
[m3/h]
[k
P
a]
R
6285-6539
R
6142-6190
∆
T-measurement
Check the temperature difference over
the boiler (
∆
T flow-return) when the
boiler is running on 100% load. The
nominal
∆
T is 20K and must be at least
between 15K and 25K for secure boiler
operation. An indication of the actual
flow rate can be found with the follow-
ing calculation (see table below for
nominal data):
∆
p-measurement
Check the pressure difference over the
boiler (
∆
p flow-return) when the boiler
pump is running (burner on is not re-
quired). The nominal
∆
p for each boiler
type can be found in the table below,
actual
∆
p must be within:
0.35*
∆
p
nom
≤
∆
p
≤
1.75*
∆
p
nom.
An indi-
cation of the actual flow rate can be
found with the following calculation (see
table below for nominal data):
Water flow data
6142
6190.
6237.
6285
6380
6475.
6539
Nominal flow rate
m
3
/h 6,1 8,1 10,2 12,2 16,3 20,4 23,1
∆
T at nominal flow rate
K
20
∆
p at nominal flow rate
kPa 10
18
28
15
27
42
55
q
actual
= (
∆
T
nominal
/
∆
T
measured
) * q
nominal
[m
3
/h]
q
actual
=
√
(
∆
p
measured
/
∆
p
nominal
) * q
nominal
[m
3
/h]
Содержание ECONOFLAME R6000
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