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stainless steel solar heating system(SLSSS) - SLSSS

1stainless steel solar heating system, 2Free training, no worry, 3.5-year warranty, free replacement, 4OEM design service offer - more info check here: http://www.sourcingappliances.com/stainless-steel-solar-heating-system-SLSSS-11171001/

Quick Brief

Type: Evacuated Tube Pressure: Pressurized Circulation Type: Indirect / Closed Loop (Activ... Heating System: Thermosyphon (Passive) Connection Type: Direct-Plug Installation: Freestanding Housing Material: Stainless Steel Certification: CE Capacity: 100 Place of Origin: Jiangsu China (Mainland) Brand Name: skylight Model Number: SLSSS

Product Features:

1stainless steel solar heating system

2Free training, no worry

3.5-year warranty, free replacement

4OEM design service offer

Business Terms:

Port: Shanghai

Minimum Order Quantity: 1 Set/Sets

Supply Ability: 450 Set/Sets per Day

Payment Terms: L/C,T/T,Western Union

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stainless steel solar heating system(SLSSS)
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Product Packagings & Delivery Terms:

Packaging Detail: Standard Export Carton,sample in plywood carton to protect the tubes

Delivery Detail: Within 15 days

Specifications and Product Details:

stainless steel solar heating system

Components:

Solar evacuated tubes, solar storage tank and frame

Technical data:

SkylightEvacuated Tube Specifications:

1. Length (nominal): 1800mm/1500mm

2. Outer tube diameter: 58mm/47mm

3. Inner tube diameter: 47mm/37mm

4. Glass thickness: 1.8mm/2.0mm

5. Thermal expansion: 3.3x10-6°C

6. Material: Borosilicate Glass 3.3

7. Absorptive Coating: Graded Al-N/Al

8. Absorptance: v>93% (AM1.5)

9. Emittance: <8% (80°C)

10. Vacuum: P<5x10-3 Pa

11. Stagnation Temperature: >200C

12. Heat Loss: <0.8W/ (m2°C)

13. Maximum Strength: 0.8MPa

14. Start-up temperature: ≤25°C

15. Anti hail: ≤Ø25mm

16. Weight:2.2kg/1.2kg/3.0kg

17. Package: 1880*330*170(10pcs) 1880*280*170(8pcs)

18. Special tube like 100mm or 120mm tubes are also available against request

SkylightTank and Frame Specifications:

1) Volume:10L, 20L, 50L, 80L, 90L, 100L, 150L,180L, 200L, 220L, 250L, 300L

2) Inner tank material and thickness: SUS304 2B /0.45mm

3) Outer shell material and thickness: SUS304/0.45mm

4) Insulation material and thickness: CFC free Polyurethane/55mm

5) Frame material and thickness: SUS304/1.3mm

6) Size of the holes: G1/2 OR G3/4

7) Electrical heater: Available against request, 1500W or 2000W

8) Magnesium rod: Available against request

9) Assistant tank: Available against request: Dia. 160mm*220mm (6L), 8L, 10L, 30L, 50L, double tank.

10) Controller: Available against request: SP26 SR500 SR609

11) Guarantee: 5 years for galvanized steel support, 5 years for solar storage tank and evacuated tubes

Working Principle

SkylightEVACUATED tubes are the absorber of the solar water heater. They absorb solar energy converting it into heat for use in water heating. Evacuated tubes have been invented in China by Professor Yin Zhiqiang and have already been used for years in Germany, Canada, China and the UK. There are several types of evacuated tubes in use in the solar industry. Skylight uses the most common "twin-glass tube". This type of tube is chosen for its reliability, performance and low manufacturing cost.

EACH Skylight evacuated tube consists of two glass tubes made from extremely strong borosilicate glass. The outer tube is transparent allowing light rays to pass through with minimal reflection. The inner tube is coated with a special selective coating (Al-N/Al) which features excellent solar radiation absorption and minimal reflection properties. The top of the two tubes are fused together and the air contained in the space between the two layers of glass is pumped out while exposing the tube to high temperatures. This "evacuation" of the gasses forms a vacuum, which is an important factor in the performance of the evacuated tubes.

CONVECTIVE movement of the liquid starts when liquid in the loop is heated, causing it to expand and become less dense, and thus more than the cooler water in the bottom of the loop. Convection moves heated liquid upwards in the system as it is simultaneously replaced by cooler liquid returning by gravity. Ideally, the liquid flows easily because a good thermosiphon should have very little resistance.

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