
solar submersible DC water pump in kenya
Motor oil leakage test
5KGS pressure
90 seconds
Twice
Solar pumping system serves to provide water in remote applications where electrical grid power is either unreliable or unavailable. waterlink solar pump controller can direct use the DC power from PV array, and drive the brushless DC pumps. In sunny days, the pumping system can continuously pump water. There is no need of batteries or other energy storage devices. It’s recommended to pump water to a reservoir for storage.
A float switch can be installed in the water tower to control the water pump kenya. And install a low-level probe in well to detect the well water so that pump will stop when there is no water. Below diagram shows a typical diagram of the solar pumping system, including major parts and components.
No.
|
Outline
|
Max. Head
|
Max. Flow
|
Model
|
Outlet
|
Voltage
|
Pump Power
|
|
inch
|
Mtrs
|
m³/hr
|
inch
|
VDC
|
Watt
|
HP
|
||
01
|
4
|
45
|
5.2
|
4SSC5.2/45-D48/500
|
1.25
|
48
|
500
|
0.7
|
02
|
4
|
67
|
5.2
|
4SSC5.2/67-D48/750
|
1.25
|
48
|
750
|
1.0
|
03
|
4
|
67
|
5.2
|
4SSC5.2/67-D72/750
|
1.25
|
72
|
750
|
1.0
|
04
|
4
|
101
|
5.2
|
4SSC5.2/101-D72/1100
|
1.25
|
72
|
1100
|
1.5
|
05
|
4
|
101
|
5.2
|
4SSC5.2/101-D110/1100
|
1.25
|
110
|
1100
|
1.5
|
06
|
4
|
146
|
5.2
|
4SSC5.2/146-D110/1300
|
1.25
|
110
|
1300
|
1.7
|
07
|
4
|
203
|
4.8
|
4SSC4.8/203-D110/1500
|
1.25
|
110
|
1500
|
2.0
|
08
|
4
|
80
|
7.5
|
4SSC7.5/80-D110/1300
|
1.25
|
110
|
1300
|
1.7
|
09
|
4
|
100
|
7.5
|
4SSC7.5/100-D110/1500
|
1.25
|
110
|
1500
|
2.0
|
10
|
4
|
60
|
11.0
|
4SSC11/60-D110/1500
|
2
|
110
|
1500
|
2.0
|
12
|
4
|
35
|
16.0
|
4SSC19/35-D110/1500
|
2
|
110
|
1500
|
2.0
|
13
|
4
|
26
|
25.0
|
4SSC25/26-D110/1500
|
2
|
110
|
1500
|
2.0
|
14
|
4
|
19
|
30.0
|
4/6SSC30/19-D72/1100
|
2
|
72
|
1100
|
1.5
|
15
|
4
|
22
|
34.0
|
4/6SSC34/22-D110/1500
|
2
|
110
|
1500
|
2.0
|
WE WANNA KNOW FROM waterlink-
1) What’s the water source? How’s the water quality?
2) Flow rate per day or per hour?
3) What’s the vertical head?
4) What’s the horizontal distance between water source and application?
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