1.Adopt the most advanced enamel coating technology.The storage tank is 3-7 times of the normal one.
2.System operate under pressure.It has the characteristics of high intensity,anti-cold and hot shock.
3.Heat pipe is with high absorbing effciency,which is 1000 times faster than copper.
4.Longer heat preserving time,at least 100 hours
5.Enamel interior has the property of heat-insulation;the annual heat consumption index only 5-10%
6.Solar energy and electricity works together,ensuring the supply of hot water in 24 hours
MODEL
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Integrated pressurized solar water heater with enamelled tank
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Inner tank material
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2mm enamelled pressed steel coated 0.5mm porcelain enamel
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Outer tank material
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colored steel sheet,thickness:0.4mm/stainless steel sheet,thickness:0.4mm/galvanized steel sheet,thickness:0.4mm
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Outer tank diameter
|
460mm/480mm
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Insulation layer
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55mm,heat preservation 100 hours
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Frame and frame angle
|
aluminum alloy,thickness:2mm 0-45°/stainless steel,thickness:1.2mm 27°,30°,38°,45°/galvanized steel,thickness:1.2mm 27°,30°,38°,45°
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Heat pipe
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ø58mm*1800mm,three high vacuum tube
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Lowest working temperature
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-10°C/-40°C
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Heat pipe condenser size
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9mm
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Working pressure
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7bar/0.7MPa
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Testing pressure
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12bar/1.2MPa
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Needed accessories
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electrical heater,T/Pvalve, one way safety valve, Magnesium bar,controller, working stain,plastic cap
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Hail resistance
|
20mm
|
Model
|
Absorbing area(m2)
|
Heat pipe
|
Tank Capacity
|
Qty.(Sets)
|
Diameter
|
Length
|
Number
|
20"
|
40HQ
|
SKI-PP 470-1800/58-15
|
2.07
|
ø58mm
|
1800mm
|
15
|
136L
|
41
|
91
|
SKI-PP 470-1800/58-16
|
2.21
|
ø58mm
|
1800mm
|
16
|
145L
|
44
|
98
|
SKI-PP 470-1800/58-18
|
2.49
|
ø58mm
|
1800mm
|
18
|
160L
|
40
|
90
|
SKI-PP 470-1800/58-20
|
2.76
|
ø58mm
|
1800mm
|
20
|
175L
|
35
|
73
|
SKI-PP 470-1800/58-24
|
3.32
|
ø58mm
|
1800mm
|
24
|
208L
|
30
|
68
|
SKI-PP 470-1800/58-30
|
4.15
|
ø58mm
|
1800mm
|
30
|
256L
|
25
|
55
|
1.The heat pipe series solar heat pipe collector are always connected with existing heating supply device.
2.The selective coating on the inner Cover of the evacuated tubes converts solar energy into heat energy and transfers
heat to the heat pipes by aluminum fins.
3.The liquid in the heat pipe changes into vapour which rises to the condenser.
4.The heat then passes through the heat exchanger and the vapour becomes liquid, returning to the base of the heat pipe.
5.The heat conducts to the heat transfer liquid (anti-freezing liquid or water) via a copper pipe.
6.This transference of heat into the liquid creates a continuous circulation as long as the collector is heated by the sun.
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