• Nanotek Solar Collectors SC-U Type Heat Pipe Model System 1
  • Nanotek Solar Collectors SC-U Type Heat Pipe Model System 2
Nanotek Solar Collectors SC-U Type Heat Pipe Model

Nanotek Solar Collectors SC-U Type Heat Pipe Model

Ref Price:
$500.00 - 700.00 / set get latest price
Loading Port:
Shanghai
Payment Terms:
TT or LC
Min Order Qty:
10 set
Supply Capability:
1500 set/month

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1. Structure of Solar Collector with U Type Heat Pipe Model SC-U

Solar collector with U type heat pipe Model SC-U is composed of six parts:

(1) Solar Collector Mainfold

(2) Solar Collector Connection

(3) Solar Collector Frame

(4) Three Target Vacuum Tube

(5) Tube Support

(6) Windproof Feet

 Solar Collector with U Type Heat Pipe Model SC-U

The products are approved by Europe's authoritative testing institutions, and achieve certification of Solar Keymark.   

Also approved All types of solar collector,designed to meet customer needs,Modular structure,can install on the flat roof and sloped roof,easy to transport and install.

 

2. Main Features of Solar Collector with U Type Heat Pipe Model SC-U

  • All glass vacuum tube,High temperature resistance、Anti-freezing、Vacuum Insulation.  

  • Superconducting copper heat pipe,high speed heat transfer,start as low temperature,low temperature resistance.

  • All aluminium alloy shell and frame,Surface oxidation or Spray preservative treatment,anti-corrosion,easy to install.

  • Keeping warm layer is high temperature resistance rock wool/glass wool, compression moulding forming,high density, low thermal conductivity.

  • Keeping Inner Tank makes from high pressure resistance,anti-corrosion,high-quality high-purity copper,can withstand 1Mpa.

  • Gravity heat pipe heat transfer unidirectionally,high collection efficiency,little heat loss.

 

3. Solar Collector with U Type Heat Pipe Model SC-U Images

Solar Collector with U Type Heat Pipe Model SC-U

Solar Collector with U Type Heat Pipe Model SC-U

 

4. Solar Collector with U Type Heat Pipe Model SC-U Specification

MODEL

SC-U-15

SC-U-18

SC-U-20

Tubes Qty

15

18

20

Distance between two tubes

75

75

75

Diameter/Length of Vacuum tube(㎜)

φ58/1800

φ58/1800

φ58/1800

Material of vacuum tube

high borosilicate glass3.3

high borosilicate glass3.3

high borosilicate glass3.3

Thickness of inner/outer Vacuum tube(㎜)

1.6/1.8

1.6/1.8

1.6/1.8

Diameter/Length of heat pipe condensor(㎜)

φ14/1750

φ14/1750

φ14/1750

U pipe material/thickness(㎜)

Cu tp2/0.5

Cu tp2/0.5

Cu tp2/0.5

Diameter/Thickness of inner tube(㎜)

φ22/1.0

φ22/1.0

φ22/1.0

Connection size

φ22( 3/4″)

φ22(3/4″)

φ22(3/4″)

Keeping warm material/thickness(㎜)

Rock wool/40

Rock wool/40

Rock wool/40

Solar Collector Pressure(MPa)

0.6

0.6

0.6

Solar Collector ℃working temperature

<100

<100

<100

Solar Collector Capacity(L)

0.98

1.15

1.27

Solar Collector Aperture area(㎡)

1.5

1.8

2.0

Solar Collector Total Area(㎡)

2.30

2.74

3.04

Recommend flow(L/min)

1.13

1.35

1.50

Pressure drop(Pa)

59.2

90.6

116.7

Intercept effiency η0

0.78

0.78

0.78

Heat loss coefficient a

2.09

2.09

2.09

Solar Collector Power(W)1000W/㎡

870

1047

1165

Solar Collector Net weight(kg)

50.75

59.75

64.75

a   (㎜)

1270

1495

1645

b   (㎜)

1175

1400

1550

c   (㎜)

1100

1325

1475

c/2 (㎜)

——

——

——

d   (㎜)

1980

1980

1980

e   (㎜)

1240

1240

1240

f   (㎜)

1470

1470

1470

 

5. FAQ

What happens if one of the solar tubes is broken?
Firstly, tubes are very strong and not easily broken, but if the worst should happen, solar tubes can be replaced very easily. They are inexpensive and available. The solar collectors can operate with several broken tubes, but the efficiency will be reduced, so it is recommended that broken tubes be replaced immediately.

Can the solar collectors be mounted on a flat surface?
Yes they may be mounted on a flat roof or on the ground by using a stainless steel Flat Roof Frame. The collector should be installed at a minimum of 20o angle to ensure optimal operation of the heat pipe.

 

Will the solar collector be a fire hazard during hot, dry weather?
No. The solar collector's components are all high temperature rated and non-flammable, so even during strong sunlight with the circulation pump turned off (stagnation), the system will not catch alight or give off any sparks. The majority of the solar collector's components are stainless steel, aluminium, glass or glass wool. The manifold outlet should be fitted with a temperature relief valve, which will prevent the manifold temperature from exceeding 99oC / 212oF.

Q: How much space is required for installing solar collectors?
The space required for installing solar collectors varies depending on the size and type of the collectors. On average, a solar collector for residential use may require around 10 to 100 square feet of space. However, it is recommended to consult with a solar installer to determine the specific space requirements for your particular setup.
Q: Can solar collectors be used in steel mills?
Solar collectors have the potential to be employed in steel mills. Options like solar thermal systems or photovoltaic panels can be utilized in steel mills to generate electricity or heat energy for different industrial purposes. By harnessing the power of sunlight and converting it into usable energy, these collectors can reduce reliance on fossil fuels and decrease greenhouse gas emissions. In steel mills, solar collectors can be integrated into the existing infrastructure to provide renewable energy for various processes, including powering machinery, heating water, or driving specific stages of the steel production process. Moreover, the implementation of solar collectors in steel mills can lead to reduced operational costs and enhanced sustainability within the steel production industry.
Q: Can solar collectors be used for heating event venues and convention centers?
Yes, solar collectors can be used for heating event venues and convention centers. Solar thermal systems can capture and convert sunlight into heat energy, which can then be used for space heating and hot water needs in large venues. This renewable energy source is sustainable, cost-effective, and can significantly reduce the carbon footprint of such facilities.
Q: What is the impact of shading on solar collector performance?
Shading can have a significant impact on solar collector performance as it reduces the amount of sunlight reaching the collectors, thereby reducing their efficiency in converting sunlight into usable energy. Even partial shading of just a small area of the collector can lead to a decrease in overall system performance. It is crucial to minimize shading to optimize the performance and output of solar collectors.
Q: Can solar collectors be used for heating libraries?
Yes, solar collectors can be used for heating libraries. Solar thermal systems can effectively capture and convert sunlight into heat energy, which can then be used for space heating in buildings, including libraries. This renewable energy source can help reduce reliance on traditional heating systems and lower carbon emissions. Additionally, solar collectors can be integrated with existing heating systems or used as standalone units, providing an efficient and sustainable heating solution for libraries.
Q: What is the role of a solar collector in a solar thermal system?
The role of a solar collector in a solar thermal system is to capture solar radiation and convert it into thermal energy. It typically consists of a series of tubes or panels that contain a heat-absorbing material, such as fluid or metal, which absorbs the sun's heat and transfers it to a heat transfer fluid or directly to the system's working fluid. This collected thermal energy can then be used for various applications, such as heating water or air, generating electricity, or powering industrial processes, making solar collectors a key component in harnessing renewable solar energy.
Q: Are solar collectors suitable for heating sports facilities?
Yes, solar collectors are suitable for heating sports facilities. Solar collectors can effectively harness the sun's energy to generate heat, which can be used to warm up sports facilities. This renewable energy source can significantly reduce heating costs and carbon emissions associated with traditional heating systems. Additionally, solar collectors can be customized to meet the specific heating requirements of sports facilities, making them a viable and sustainable option for heating these spaces.
Q: Can solar collectors be used in power plants?
Yes, solar collectors can be used in power plants. Solar collectors, such as photovoltaic panels or solar thermal systems, can be employed in power plants to harness the sun's energy and convert it into electricity.
Q: Can solar collectors be used for heating car dealerships and showrooms?
Certainly, heating car dealerships and showrooms can be accomplished using solar collectors. These devices, also known as solar water heaters, can be placed on the building's roof to capture the sun's energy and convert it into heat. By utilizing this heat, the dealership and showroom areas can be comfortably warmed, creating a pleasant environment for both employees and customers. Solar collectors function by absorbing sunlight and transferring the resulting heat to a fluid, typically water or a heat transfer fluid. This fluid is then circulated throughout the building's heating system, which may include radiant floor heating, forced air systems, or heat exchangers that warm the air inside. By employing solar collectors for heating purposes, car dealerships and showrooms can considerably lessen their reliance on conventional heating systems like gas or electric furnaces. This not only helps reduce energy costs but also decreases greenhouse gas emissions, making it an environmentally friendly choice. Furthermore, solar collectors can be integrated with existing heating systems, creating a hybrid system that combines solar energy and traditional heating methods. This ensures a consistent and dependable heat supply, even during periods of limited sunlight or high heating demand. In addition, solar collectors can also be utilized to heat water for various tasks within car dealerships and showrooms, such as car washing or providing hot water for restrooms and other facilities. This maximizes the energy savings and environmental benefits of utilizing solar energy. In conclusion, solar collectors are a practical and cost-effective solution for heating car dealerships and showrooms. By adopting this sustainable technology, these buildings can reduce their carbon footprint while also enjoying long-term energy savings.
Q: Can solar collectors be used for heating agricultural processing facilities?
Yes, solar collectors can be used for heating agricultural processing facilities. Solar thermal systems can effectively capture sunlight and convert it into heat energy, which can then be used for various applications such as space heating, water heating, and drying in agricultural processing facilities. This renewable energy source provides an eco-friendly and cost-effective solution for heating needs in these facilities.

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