• Pavement Solar Collectors Pressurized Heat Pipe Solar Water Heater System New Designed System 1
  • Pavement Solar Collectors Pressurized Heat Pipe Solar Water Heater System New Designed System 2
  • Pavement Solar Collectors Pressurized Heat Pipe Solar Water Heater System New Designed System 3
  • Pavement Solar Collectors Pressurized Heat Pipe Solar Water Heater System New Designed System 4
  • Pavement Solar Collectors Pressurized Heat Pipe Solar Water Heater System New Designed System 5
  • Pavement Solar Collectors Pressurized Heat Pipe Solar Water Heater System New Designed System 6
Pavement Solar Collectors Pressurized Heat Pipe Solar Water Heater System New Designed

Pavement Solar Collectors Pressurized Heat Pipe Solar Water Heater System New Designed

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Loading Port:
China main port
Payment Terms:
TT OR LC
Min Order Qty:
1 set
Supply Capability:
6000 set/month

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Introduction of Non-Pressure Solar Water Heater:

Non-pressure Solar Heater is one of the most economical solar water heating device with pretty high efficiency at the same time. It consists of hot water storage tank, solar vacuum tubes with mouth plug in storage tank, and bracket supporting tank and tubes.When cold water in evacuated tubes is heated with solar irradiation, as the specific gravities of hot water and cold water are different, hotter water goes upward to storage tank and colder water goes downward to glass tubes. through this continuous circulation, the cold water in storage tank will be gradually heated till sunset.

 

Specialty:

1.    High thermal performance and working temperature: the heat exchanging rate even in winter can up above 55%.

2.    Heat collecting efficiency is at least 20% above common solar systems.

3.    Work in all day and all season: no matter any corner of the world, this system can work well even -40 to avoid the tube freezing problem.

4.    Reliability: No water following through the tube, so water scale can not generate and tube cracks could be avoided, the system still can keep working even with some damaged tubes.

5.    It can connect with water tap and work automatically with pressure0.6Mpa, bring enjoyable washing experience.

6.    Safety: P/T valve would release pressure and temperature to protect tank..

 

 Technical Specification:

1.    Outer tank material: SUS304 stainless steel or powder coated color steel

2.    Inner tank material: 1.2mm thick SUS304 food grade stainless steel  ( Optional material SUS316L)

3.    Vacuum tube material: borosilicate glass 3.3; AL-SS-CU absorb coating, with copper heat   pipe inside

4.    Frame material: 1.2mm thickness stainless steel

5.    Insulation material: 55mm thickness polyurethane

6.    Suitable for mains pressure water(up to 8 bar/116psi)

7.    Easy plug-in installation

8.    Install the T/P valve on the pressurized tank

9.    Seal material: Stabilized High Temperature Silicon

  1. Outer tank material: SUS304 stainless steel or powder      coated color steel

  2. Inner tank material: 1.2mm thick SUS304      food grade stainless steel  (      Optional material SUS316L)

  3. Vacuum tube material: borosilicate glass 3.3; AL-SS-CU absorb      coating, with copper heat   pipe inside

  4. Frame      material: 1.2mm thickness stainless steel

  5. Insulation      material: 55mm thickness polyurethane

  6. Suitable for mains pressure water(up to 8 bar/116psi)

  7. Easy      plug-in installation

  8. Install      the T/P valve on the pressurized tank

  9. Seal material: Stabilized High Temperature Silicon

 

19. Vacuum Tube

20.  Size (mm)

21.   Φ47*1500 / Φ58*1800 / Φ70*2100   

22.  Tube (pcs)

23.   10 / 12 / 15 / 18 / 20 / 22 / 24 / 30 / 36 / 42

24.  Material

25.   Borosilicate 3.3 glass, magnetron spluttering selective coating

26.  Coating

27.   Single-target   AL-N/AL or Three-target AL/N-Cu-SS

28. Water Tank

29.  Capacity

30.   80L ~ 500L for hot water storage tank

31.  Inner tank

32.   Food-grade stainless steel SUS304-2B / SUS316

33.  Insulation

34.   High-density polyurethane foam with 70~80 hour heat preservation

35.  Tank shell

36.   Food-grade   stainless steel SUS304-2B

37. Bracket

38.  Shaped strong   aluminum alloy structure adaptable for flat or slope roof

39. Accessories

40.  Anti-aging silicon seals, Dustproof seals, Air-vent cap, Stainless screws

41. Auxiliary   Devices

42.  Assistant tankIntelligent controllerElectrical heaterMagnesium   anodes

43. Tilt Angle

44.  25 ~ 50°

45. Water Output

46.  45 - 95°C

47. Hail Resistance

48.  Φ25mm diameter

49. Model Number

50. Solar Vacuum Tube

51. Tank 

52. Liter

53. System

54. Liter

55. Container Loading Qty /sets

56. Size /mm

57. Qty /pcs

58. 20GP

59. 40GP

60. 40HQ

61. VNS-58SA12-100

62. Φ58*1800

63. 12

64. 100

65. 132

66. 58

67. 119

68. 140

69. VNS-58SA15-130

70. 15

71. 130

72. 170

73. 54

74. 108

75. 131

76. VNS-58SA18-150

77. 18

78. 150

79. 198

80. 43

81. 86

82. 105

83. VNS-58SA20-170

84. 20

85. 170

86. 223

87. 40

88. 80

89. 97

VNS-58SA24-200

24

200

263

35

70

85

VNS-58SA30-250

30

250

329

28

56

68

VNS-58SA36-300

36

300

395

23

47

57

  

Product Show

Pressurized Heat Pipe Solar Water Heater System New Designed

Pressurized Heat Pipe Solar Water Heater System New Designed

Pressurized Heat Pipe Solar Water Heater System New Designed

  

Our Services

1.  OEM service

2. Warranty: 5 years

3. Considerable after sale service

Color steel Compact pressure Thermal solar heater

FAQ:

1.    What’s the delivery time?

10 days after receiving deposit.

2.    How long is the warranty?

5 years for whole system, 1 year for accessory

3.    What’s your production capacity?

6000sets/month

4.    What’s the MOQ?

1 set.

5.    What’s your payment term?

Container: 30% T/T in advance for deposit, 70% T/T before shipment for fist order.

70% T/T after seeing copy of B/L from second order

Sample: 100% T/T in advance

Other choices: L/C at sight.

6.    What certifications do you have?

CE, SOLAR KEYMARK, SRCC and etc.


Q: Can solar collectors be used in cold climates?
Yes, solar collectors can be used in cold climates. While the efficiency of solar collectors may decrease in colder temperatures, advancements in technology allow for the use of solar collectors even in harsh winter conditions. Additionally, proper insulation and design can help maximize their performance in cold climates.
Q: Can solar collectors be used for heating roadways?
Yes, solar collectors can be used for heating roadways. Solar thermal technology, such as solar panels or pipes filled with a heat transfer fluid, can capture the sun's energy and transfer it to heat the roadway. This can help prevent ice formation, improve road conditions in cold climates, and reduce the need for traditional de-icing methods.
Q: Can solar collectors be used in areas with limited access to regulatory frameworks?
Yes, solar collectors can be used in areas with limited access to regulatory frameworks. The installation and use of solar collectors do not necessarily depend on strict regulatory frameworks. These systems can be installed and operated in remote or off-grid locations without the need for extensive government regulations. However, it is important to ensure proper safety measures and compliance with any applicable local regulations to ensure the efficient and secure operation of solar collectors.
Q: Can solar collectors be used in areas with limited access to maintenance services?
Yes, solar collectors can be used in areas with limited access to maintenance services. Solar collectors are known for their low maintenance requirements due to their simple design and reliable technology. They have few moving parts and are built to withstand various environmental conditions. Additionally, regular maintenance tasks such as cleaning the panels can be performed by locals without specialized knowledge or equipment. Therefore, solar collectors can be a suitable and sustainable energy solution in remote areas with limited access to maintenance services.
Q: How much energy can a solar collector produce?
The amount of energy a solar collector can produce depends on various factors such as the size and efficiency of the collector, the amount of sunlight available, and the specific technology used. On average, a solar collector can produce anywhere from a few hundred to several thousand kilowatt-hours of energy per year.
Q: How do solar collectors affect property value?
Solar collectors can positively impact property value by reducing energy costs, increasing energy efficiency, and promoting sustainability. Additionally, properties equipped with solar collectors often appeal to environmentally conscious buyers, potentially attracting a larger pool of interested buyers and increasing market demand.
Q: How long does it take for a solar collector to reach optimal temperature?
The time it takes for a solar collector to reach optimal temperature can vary depending on factors such as the size and type of collector, the amount of sunlight available, and the temperature of the surroundings. Generally, it can take anywhere from 30 minutes to a couple of hours for a solar collector to reach its optimal temperature.
Q: Can solar collectors be used in satellites?
Yes, solar collectors can be used in satellites. Satellites often use solar panels or solar arrays to capture sunlight and convert it into electricity, which is essential for powering various systems and instruments on board. These solar collectors are designed to efficiently harness solar energy in the space environment and provide a reliable source of power for satellites during their mission.
Q: Can solar collectors be used for powering vehicles?
Yes, solar collectors can be used for powering vehicles. Solar panels can convert sunlight directly into electricity, which can be used to power electric vehicles or charge their batteries. This technology, known as solar-powered transportation, is being increasingly adopted as a sustainable solution to reduce reliance on fossil fuels and lower vehicle emissions.
Q: Do solar collectors require direct sunlight to work effectively?
Solar collectors do not necessarily require direct sunlight to work effectively. While direct sunlight is ideal for optimal performance, solar collectors can still generate electricity or heat even on cloudy or overcast days. The efficiency of solar collectors may be slightly reduced in these conditions, but they can still harness the diffuse sunlight and convert it into usable energy. Additionally, some advanced solar collector technologies, such as concentrator photovoltaic systems, are designed to concentrate and intensify sunlight, allowing them to work more effectively even in indirect or low-light conditions. Overall, while direct sunlight is preferable, solar collectors can still function and produce energy in various lighting conditions.

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