VENTILATION : AIRFLOW BALANCING
FLEXYII_WSHP-IOM-1307-E
- 45 -
2
nd
method when adjusting the pulley :
-Close the pulley fully and count the number of turns
from fully closed position. Using table_1 determine the
motor pulley actual diameter.
-Record the fix fan pulley diameter.(DF)
-Determine the fan speed using the following formulae:
F
M
MOTOR
FAN
/D
D
rpm
rpm
×
=
Where: rpm
MOTOR
:from the motor plate or table_2
D
M
: from table_1
D
F
: from machine
Once the pulleys are adjusted and the belt checked and
tensioned, start the fan motor and record the Amps and
Voltage between the phases:
Using the measured data and table_2
-Theoretical mechanical power at the fan shaft:
P
meca fan
= P
meca Motor
x
η
Transmission
P
meca fan
= P
elec
x
η
meca motor
x
η
Transmission
P
meca fan
= V x I x
√
3 x cos
ϕ
x
η
meca motor
x
η
Transmission
This formula can be approximated in this way
P
meca fan
= V x I x 1.73 x 0.78 x 0.87 x 0.9
With the fan “rpm” and the mechanical power at the fan
shaft an operating point and the supplied airflow can be
estimated using the fan curves.
CHECKING AIRFLOW AND ESP
Using the fan curves on page 36 to 40, the airflow, the total
pressure available (P
TOT
) and the corresponding dynamic
pressure (Pd) can now be estimated, for a specific
operating point;
The next step consists in estimating the pressure losses
across the unit.
This can be achieved using the “dirty filter pressure sensor”
and the accessories pressure drop table: table_3
Also the pressure drop due to the duct inlet into the roof-top
unit can be taken as 20 to 30 Pa.
∆
P
INT
=
∆
P
coil
+
∆
P
Inlet
+
∆
P
Options
Using the results from above, the external static pressure
(ESP) can then be estimated:
ESP = P
TOT
- Pd -
∆
P
INT
Table_ 2 Motor information
Motor Size
Nom. Speed
Cos
ϕ
η
meca motor
0.75 kW
1415 rpm
0,75
79,9
1.1kW
1435 rpm
0,78
83,7
1.5kW
1435 rpm
0,76
84,2
2.2kW
1450 rpm
0,78
87,1
3.0kW
1445 rpm
0,79
85,7
4kW
1445 rpm
0,75
86,7
5.5kW
1465 rpm
0,79
89,0
7.5kW
1460 rpm
0,79
89,1
9.0kW
1467 rpm
0,77
90,9
11.0kW
1460 rpm
0,79
90,4
Table_3 Accessories pressure drops
G4
Filters
F7
Filters
UV
LIGH
T
Hot
Water
coil S
Hot
Water
coil H
Electric
Heater
S
Electric
Heater
M
Electric
Heater
H
Heating
Gaz
fired H
Adjustable
roofcurb
Multidire
ctional
Roofcurb
Heat
Recovery
Modul
Fresh Air
85
12000
1
75
18
9
15
3
5
6
14
17
22
164
15000
7
105
30
13
22
6
7
7
23
27
33
204
23000
28
199
63
26
44
7
9
11
53
63
73
313
100
14000
5
94
26
11
19
6
7
8
20
23
30
191
18500
15
143
44
18
31
8
10
11
34
41
51
252
23000
28
199
63
26
44
11
14
16
53
63
78
313
120
15000
7
105
30
13
22
7
8
9
23
27
35
204
20500
21
167
52
21
37
10
12
13
42
50
62
279
23000
28
199
63
26
44
12
15
17
53
63
78
313
150
18000
1
75
15
6
10
4
5
7
16
30
35
170
26000
12
130
33
12
19
9
10
13
33
62
72
245
35000
29
204
54
19
33
15
18
23
59
112
131
329
170
21000
5
94
21
8
14
8
9
10
21
40
49
198
30000
19
161
42
15
25
10
13
15
44
82
95
282
35000
29
204
54
19
33
17
19
21
59
112
131
329
200
24000
3
88
18
7
11
16
15
14
21
53
67
173
35000
18
154
39
13
22
22
21
20
44
112
133
252
43000
31
211
54
19
31
24
26
29
66
169
195
310
230
27000
7
105
24
8
14
18
18
17
26
67
84
195
39000
24
182
46
16
26
24
24
25
55
139
163
281
43000
31
211
54
19
31
24
26
29
66
169
195
310
Summary of Contents for ROOFTOP FLEXY FXK 55
Page 2: ......
Page 26: ...COMMISSIONNING FLEXYII_WSHP IOM 1307 E 24 STEP 3 Fitting STEP 4 Check SAME LEVEL 10 15 mm...
Page 36: ...COMMISSIONNING REPORT FLEXYII_WSHP IOM 1307 E 34 COMMENTS...
Page 50: ...VENTILATION AIRFLOW BALANCING FLEXYII_WSHP IOM 1307 E 48 AT18 18S...
Page 51: ...VENTILATION AIRFLOW BALANCING FLEXYII_WSHP IOM 1307 E 49 ADH355L...
Page 52: ...VENTILATION AIRFLOW BALANCING FLEXYII_WSHP IOM 1307 E 50 ADH450L...
Page 53: ...VENTILATION AIRFLOW BALANCING FLEXYII_WSHP IOM 1307 E 51 ADH500L...
Page 71: ...HEATING GAS BURNER FLEXYII_WSHP IOM 1307 E 69 60kW 120kW...
Page 72: ...HEATING GAS BURNER FLEXYII_WSHP IOM 1307 E 70 180kW 240kW...
Page 105: ......