Overview of ZW (W) Fire Protection Special Boosting and Stabilizing Water Supply Equipment
The ZW fire pressure boosting and stabilizing water supply equipment produced by our company is a fire specific pressure boosting and stabilizing equipment designed and manufactured in accordance with national building standard design drawings such as 98S205. This equipment consists of a diaphragm pressure tank, a booster pump, an electrical control box, instruments, and pipeline accessories, and is suitable for various fire water supply systems such as fire hydrant water supply systems and automatic sprinkler systems with booster requirements in multi-storey and high-rise building projects.
The high working pressures of this equipment are 0.6mpa, 1.0mpa, and 1.6mpa, respectively. The fire water storage capacity is greater than 150L, 300L, and 450L, and the stabilizing water capacity is greater than 50L. When used in a fire hydrant system, the flow rate of each water gun is 2.5L/S and 5L/S, and the length of the enriched water column is 7M, 10M, and 13M; When used in an automatic sprinkler system, each nozzle has a flow rate of 1.0L/s and a nozzle pressure of 0.1MPA.
This device can maintain the fire pressure at unfavorable points in the fire water supply pipeline system, and utilize the 30 second fire water stored in the pneumatic water tank to ensure the fire sprinkler water supply before the operation of the fire pump; This device uses the operating pressure set by the pneumatic water tank to control the operating conditions of the water pump, achieving the function of boosting and stabilizing pressure. P1 (MPa) maintains the required pressure for firefighting at all unfavorable points; P2 (MPa) fire pump start-up pressure; PS1 (MPa) stabilizing pump start pressure; PS2 (MPa) stabilizing pump shutdown pressure.
The significance of ZW (W) fire special pressurized and stabilized water supply equipment model
ZW □ -- □ - □ - □ - □
Fire pressure required for unfavorable points (Mpa)
Fill the water column length (m) or nozzle pressure (Mpa)
(Type I has this item, Type II does not)
X is used for the fire hydrant fire water supply system, Z is used for the automatic sprinkler fire water supply system, and XZ is a combined fire hydrant and automatic sprinkler system
I is an upward type, set in the high-level water tank room, II is a downward type, set in the bottom water pump pool room, L vertical pressure tank, L horizontal pressure tank.
Technical parameters of ZW (W) fire special pressurized and stabilized water supply equipment
|
Serial Number
|
Model of boosting and stabilizing equipment
|
Fire pressure (Mpa) P1
|
Vertical diaphragm pressure tank
|
Equipped with water pump
|
Operating pressure
(Mpa)
|
Stable pressure water volume (L)
|
||||
|
Model specifications
|
Work pressure ratio α b
|
Fire water storage capacity (L)
|
Model
|
|||||||
|
Calibrated volume
|
actual volume
|
|||||||||
|
1
|
ZW(L)-1-X-7
|
0.10
|
XQG800×0.6
|
0.60
|
300
|
319
|
25LG3-10×4
N=1.5kw
|
P1=0.10 PS1=0.26
P1=0.23 PS2=0.31
|
54
|
|
|
2
|
ZW(L)-1-Z-10
|
0.16
|
XQG800×0.6
|
0.80
|
150
|
159
|
25LG3-10×4
N=1.5kw
|
P1=0.16 PS1=0.26
P1=0.23 PS2=0.36
|
70
|
|
|
3
|
ZW(L)-1-X-10
|
0.16
|
XQG800×0.6
|
0.60
|
300
|
319
|
25LG3-10×5
N=1.5kw
|
P1=0.16 PS1=0.36
P1=0.33 PS2=0.42
|
52
|
|
|
4
|
ZW(L)-1-X-13
|
0.22
|
XQG1000×0.6
|
0.76
|
300
|
329
|
25LG3-10×4
N=1.5kw
|
P1=0.22 PS1=0.35
P1=0.32 PS2=0.40
|
97
|
|
|
5
|
ZW(L)-1-XZ-10
|
0.16
|
XQG1000×0.6
|
0.65
|
450
|
480
|
25LG3-10×4
N=1.5kw
|
P1=0.16 PS1=0.33
P1=0.30 PS2=0.38
|
86
|
|
|
6
|
ZW(L)-Ⅰ-XZ-13
|
0.22
|
XQG1000×0.6
|
0.67
|
450
|
452
|
25LG3-10×5
N=1.5kw
|
P1=0.22 PS1=0.41
P1=0.38 PS2=0.46
|
80
|
|
|
7
|
ZW(L)-Ⅱ-Z-
|
A
|
0.22 -0.38
|
XQG800×0.6
|
0.80
|
150
|
159
|
25LG3-10×6
N=2.2kw
|
P1=0.38 PS1=0.53
P1=0.50 PS2=0.60
|
61
|
|
8
|
B
|
0.38 -0.50
|
XQG800×1.0
|
0.80
|
150
|
159
|
25LG3-10×8
N=2.2kw
|
P1=0.50 PS1=0.68
P1=0.65 PS2=0.75
|
51
|
|
|
9
|
C
|
0.50 -0.65
|
XQG1000×1.0
|
0.85
|
150
|
206
|
25LG3-10×9
N=2.2kw
|
P1=0.65 PS1=0.81
P1=0.78 PS2=0.86
|
59
|
|
|
10
|
D
|
0.65 -0.85
|
XQG1000×1.6
|
0.85
|
150
|
206
|
25LG3-10×11
N=3.0kw
|
P1=0.85 PS1=1.04
P1=1.02 PS2=1.10
|
57
|
|
|
11
|
E
|
0.85 -1.0
|
XQG1000×1.6
|
0.85
|
150
|
206
|
25LG3-10×13
N=4.0kw
|
P1=1.00 PS1=1.21
P1=1.19 PS2=1.27
|
50
|
|
|
12
|
ZW(L)-Ⅱ-X-
|
A
|
0.22-0.38
|
XQG800×0.6
|
0.78
|
300
|
302
|
25LG3-10×6
N=2.2kw
|
P1=0.38 PS1=0.53
P1=0.50 PS2=0.60
|
72
|
|
13
|
B
|
0.38-0.50
|
XQG800×1.0
|
0.78
|
300
|
302
|
25LGW3-10×8
N=2.2kw
|
P1=0.50 PS1=0.68
P1=0.65 PS2=0.75
|
61
|
|
|
14
|
C
|
0.50-0.65
|
XQG1000×1.0
|
0.78
|
300
|
302
|
25LG3-10×10
N=3.0kw
|
P1=0.65 PS1=0.88
P1=0.86 PS2=0.93
|
51
|
|
|
15
|
D
|
0.65-0.85
|
XQG1200×1.6
|
0.85
|
300
|
355
|
25LG3-10×13
N=4.0kw
|
P1=0.85 PS1=1.05
P1=1.02 PS2=1.10
|
82
|
|
|
16
|
E
|
0.85-1.0
|
XQG1200×1.6
|
0.85
|
300
|
355
|
25LG3-10×15
N=4.0kw
|
P1=1.00 PS1=1.21
P1=1.19 PS2=1.26
|
73
|
|
|
17
|
ZW(L)-Ⅱ-XZ-
|
A
|
0.22-0.38
|
XQG1200×0.6
|
0.80
|
450
|
474
|
25LG3-10×6
N=2.2kw
|
P1=0.38 PS1=0.53
P1=0.50 PS2=0.60
|
133
|
|
18
|
B
|
0.38-0.50
|
XQG1200×1.0
|
0.80
|
450
|
474
|
25LG3-10×8
N=2.2kw
|
P1=0.50 PS1=0.68
P1=0.65 PS2=0.75
|
110
|
|
|
19
|
C
|
0.50-0.65
|
XQG1200×1.0
|
0.80
|
450
|
474
|
25LG3-10×10
N=3.0kw
|
P1=0.65 PS1=0.81
P1=0.78 PS2=0.86
|
90
|
|
|
20
|
D
|
0.65-0.85
|
XQG1200×1.6
|
0.80
|
450
|
474
|
25LG3-10×12
N=4.0kw
|
P1=0.85 PS1=1.04
P1=1.02 PS2=1.10
|
73
|
|
|
21
|
E
|
0.85-1.0
|
XQG1200×1.6
|
0.80
|
450
|
474
|
25LG3-10×14
N=4.0kw
|
P1=1.00 PS1=1.21
P1=1.19 PS2=1.27
|
64
|
|
|
Serial Number
|
Model of boosting and stabilizing equipment
|
Fire pressure (Mpa) P1
|
Horizontal diaphragm pressure tank
|
Equipped with water pump
|
Operating pressure
(Mpa)
|
Stable pressure water volume (L)
|
||||
|
Model specifications
|
Work pressure ratio α b
|
Fire water storage capacity (L)
|
Model
|
|||||||
|
Calibrated volume
|
actual volume
|
|||||||||
|
1
|
ZW(W)-Ⅰ-X-7
|
0.10
|
XQW1000×0.6
|
0.75
|
300
|
390
|
25LG3-10×3
N=1.1KW
|
P1=0.10 PS1=0.20
P2=0.17 PS2=0.25
|
148
|
|
|
2
|
ZW(W)-Ⅰ-Z-10
|
0.16
|
XQW1000×0.6
|
0.80
|
150
|
312
|
25LG3-10×3
N=1.1KW
|
P1=0.16 PS1=0.25
P2=0.22 PS2=0.30
|
145
|
|
|
3
|
ZW(W)-Ⅰ-X-10
|
0.16
|
XQW1000×0.6
|
0.80
|
300
|
312
|
25LG3-10×3
N=1.1KW
|
P1=0.16 PS1=0.25
P2=0.22 PS2=0.30
|
145
|
|
|
4
|
ZW(W)-Ⅰ-X-13
|
0.22
|
XQW1000×0.6
|
0.80
|
300
|
312
|
25LG3-10×4
N=1.5KW
|
P1=0.22 PS1=0.32
P2=0.30 PS2=0.37
|
126
|
|
|
5
|
ZW(W)-Ⅰ-XZ-10
|
0.16
|
XQW1000×0.6
|
0.70
|
450
|
467
|
25LG3-10×4
N=1.5KW
|
P1=0.16 PS1=0.30
P2=0.27 PS2=0.35
|
113
|
|
|
6
|
ZW(W)-Ⅰ-XZ-13
|
0.22
|
XQW1000×0.6
|
0.70
|
450
|
452
|
25LG3-10×5
N=1.5KW
|
P1=0.22 PS1=0.38
P2=0.35 PS2=0.43
|
98
|
|
|
7
|
ZW(W)-Ⅱ-Z-
|
A
|
0.22-0.38
|
XQW800×0.6
|
0.85
|
150
|
234
|
25LG3-10×6
N=2.2KW
|
P1=0.38 PS1=0.49
P2=0.46 PS2=0.54
|
99
|
|
8
|
B
|
0.38-0.50
|
XQW800×1.0
|
0.85
|
150
|
234
|
25LG3-10×7
N=2.2KW
|
P1=0.50 PS1=0.63
P2=0.60 PS2=0.68
|
82
|
|
|
9
|
C
|
0.50-0.65
|
XQW1000×1.0
|
0.85
|
150
|
234
|
25LG3-10×9
N=2.2KW
|
P1=0.65 PS1=0.81
P2=0.78 PS2=0.86
|
67
|
|
|
10
|
D
|
0.65-0.85
|
XQW1000×1.6
|
0.85
|
150
|
234
|
25LG3-10×11
N=3.0KW
|
P1=0.85 PS1=1.05
P2=1.02 PS2=1.10
|
54
|
|
|
11
|
E
|
0.85-1.00
|
XQW1000×1.6
|
0.85
|
150
|
234
|
25LG3-10×13 N=4.0KW
|
P1=1.00 PS1=1.21
P2=1.19 PS2=1.27
|
57
|
|
|
12
|
ZW(W)-Ⅱ-X-
|
A
|
0.22-0.38
|
XQW1000×0.6
|
0.80
|
300
|
312
|
25LG3-10×6
N=2.2KW
|
P1=0.38 PS1=0.53
P2=0.50 PS2=0.58
|
87
|
|
13
|
B
|
0.38-0.5
|
XQW1000×1.0
|
0.80
|
300
|
312
|
25LG3-10×8
N=2.2KW
|
P1=0.50 PS1=0.68
P2=0.65 PS2=0.73
|
72
|
|
|
14
|
C
|
0.50-0.65
|
XQW1000×1.0
|
0.80
|
300
|
312
|
25LG3-10×10
N=3.0KW
|
P1=0.65 PS1=0.87
P2=0.84 PS2=0.92
|
59
|
|
|
15
|
D
|
0.65-0.85
|
XQW1000×1.6
|
0.80
|
300
|
312
|
25LG3-10×12
N=4.0KW
|
P1=0.85 PS1=1.12
P2=1.09 PS2=1.18
|
57
|
|
|
16
|
E
|
0.85-1.00
|
XQW1000×1.6
|
0.80
|
300
|
312
|
25LG3-10×14
N=4.0KW
|
P1=1.00 PS1=1.30
P2=1.27 PS2=1.36
|
50
|
|
|
17
|
ZW(W)-Ⅱ-XZ-
|
A
|
0.22-0.38
|
XQW1200×0.6
|
0.80
|
450
|
506
|
25LG3-10×6
N=2.2KW
|
P1=0.38 PS1=0.53
P2=0.50 PS2=0.58
|
142
|
|
18
|
B
|
0.38-0.5
|
XQW1200×1.0
|
0.80
|
450
|
506
|
25LG3-10×8
N=2.2KW
|
P1=0.50 PS1=0.68
P2=0.65 PS2=0.73
|
117
|
|
|
19
|
C
|
0.50-0.65
|
XQW1200×1.0
|
0.80
|
450
|
506
|
25LG3-10×10
N=3.0KW
|
P1=0.65 PS1=0.87
P2=0.84 PS2=0.92
|
96
|
|
|
20
|
D
|
0.65-0.85
|
XQW1200×1.6
|
0.80
|
450
|
506
|
25LG3-10×12
N=4.0KW
|
P1=0.85 PS1=1.12
P2=1.09 PS2=1.17
|
78
|
|
|
21
|
E
|
0.85-1.00
|
XQW1200×1.6
|
0.80
|
450
|
506
|
25LG3-10×14
N=4.0KW
|
P1=1.00 PS1=1.30
P2=1.27 PS2=1.35
|
||
