• BIPV Integrated Glass Curtain Wall Facade 4 - 25mm Thickness
  • BIPV Integrated Glass Curtain Wall Facade 4 - 25mm Thickness
  • BIPV Integrated Glass Curtain Wall Facade 4 - 25mm Thickness
BIPV Integrated Glass Curtain Wall Facade 4 - 25mm Thickness

BIPV Integrated Glass Curtain Wall Facade 4 - 25mm Thickness

Product Details:

Place of Origin: Zhejiang, China
Brand Name: FASEC
Certification: ISO9001:2008;CE; 3C

Payment & Shipping Terms:

Minimum Order Quantity: 50sqm
Packaging Details: Pallets Packaing or Packing in Bulk (Seaworthy packings into container or bulk vessel )
Delivery Time: 30 workdays
Payment Terms: L/C,T/T, Western Union
Supply Ability: 600,000 Square Meter per Year
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Detail Information

Glass Thickness: 4-25mm Max Size: 3660mm X 18000mm
Function: Energy Efficient, Heat-insulation, Acoustic Insulation Etc Glass Color: Clear/Blue/Grey/Bronze/Tea/Green/ Or Others
Glass Shape: Flat, Curved Edge Work: C-edge, Flat Edge, Polished Edge Etc
Cavity Filling With: Air Or Argon U Value: 0.6-1.8
Certification: ISO9001,3C,ISO,CE/EN12150,AS/NZS2208,ANSI Thermal Break Aluminum Frame: Available
High Light:

BIPV Glass Curtain Wall Facade

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Integrated Glass Curtain Wall Facade

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Flat Glass Curtain Facade 25mm

Product Description

A BIPV (Building Integrated Photovoltaic) glass curtain wall is a type of building envelope that incorporates photovoltaic cells directly into the glass panels of the curtain wall. The curtain wall system typically consists of thin glass panels with a photovoltaic layer sandwiched between two sheets of glass. The photovoltaic layer is made of thin-film solar cells that generate electricity from sunlight.

 

BIPV glass curtain walls are designed to blend seamlessly into the building's facade, providing a sleek and modern look. The glass panels can be clear, tinted, or even patterned, providing architects with more design options.

 

The electricity generated by the photovoltaic cells can be used to power the building's lighting, HVAC systems, and other electrical loads. Excess electricity can be fed back into the grid, providing a source of renewable energy.

The parameter of bipv glass curtain wall:

1,Glass thickness: BIPV glass curtain walls typically use thin glass panels ranging in thickness from 6 to 12 mm.

2,Photovoltaic layer: The photovoltaic layer is made of thin-film solar cells that are applied to one or both sides of the glass panel. The thickness of the photovoltaic layer can range from a few microns to several hundred microns, depending on the desired energy output.

3,Cell efficiency: The efficiency of the photovoltaic cells is a critical parameter that determines the amount of electricity generated per unit area of the glass panel. Current commercially available cells typically have an efficiency of 10-20%.

4,Transparency: The level of transparency of the glass panels can vary depending on the amount of photovoltaic material and the desired aesthetic. BIPV glass curtain walls can range from fully transparent to opaque.

5,Color and texture: BIPV glass curtain walls can be manufactured with various colors and textures to match the design requirements of the building.

6,Thermal performance: BIPV glass curtain walls can be designed to provide various levels of thermal insulation, depending on the desired energy efficiency of the building.

7,Structural support: BIPV glass curtain walls require a robust structural support system to withstand the weight of the glass panels and the wind loads that they will be subjected to.

 

 

Variety of colors available

Terms condition
Thickness range 2.5mm to 16mm(Standard thickness range:3.2mm and 4.0mm)
Thickness Tolerance 3.2mm±0.20mm4.0mm±0.30mm
Solar Transmittance (3.2mm) more than 93.68%
Iron Content less than 120ppm Fe2O3
Density 2.5 g/cc
Youngs Modulus 73 GPa
Tensile Strength 42 MPa
Expansion Coefficient 9.03x10-6/
Annealing Point 550 centigrade degrees

 

BIPV glass curtain walls also offer several advantages, including:

 

 

 

1,Energy generation: BIPV curtain walls incorporate photovoltaic cells directly into the building envelope, allowing them to generate electricity from sunlight. This can significantly reduce the building's dependence on grid electricity, lowering its carbon footprint and energy costs.

2, Aesthetics: BIPV curtain walls can be designed to blend seamlessly into the building's façade, providing a clean and modern look. They also come in a variety of colors and textures, providing architects with more design options.

3,Noise reduction: BIPV curtain walls can also offer noise reduction benefits, as they can absorb sound waves and reduce noise pollution from outside the building.

4,Increased property value: By incorporating sustainable features like BIPV curtain walls, buildings can increase their property value and attract eco-conscious tenants or buyers.

5,Durability: BIPV curtain walls are designed to withstand harsh weather conditions, making them a durable and long-lasting solution for building envelopes. Overall, BIPV curtain walls offer a versatile and sustainable solution for building envelopes, providing both aesthetic and functional benefits.

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