Curtain Wall of the Ningbo Zhenhai Cultural and Technological Innovation Center
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Product Description
Project Name: [Ningbo Zhenhai Cultural and Technological Innovation Center Curtain Wall]
City of residence: Zhenhai, Ningbo, Zhejiang Province
Building Type: [Science and Innovation Center]
Completion Date [ 2026 Year】
BIPV Form [Facade Curtain Wall]
Power‑generating glass: Gaoming cadmium telluride power‑generating glass (【Light transmittance 20%,5mm Ultra-white tempered glass +1.52mm PVB + 3.2mm CdTe + 1.52mm PVB + 5mm low-E + 12A + 6mm Ultra-white tempered photovoltaic glass
Installed capacity【 354kWp 】
Application area【 2947 ㎡】
Annual power generation【 35 Ten thousand kWh/ Year】(approximately 300 Household annual electricity consumption)
Carbon reduction【 280 tCO ₂ / Year】
Key technical points: [low-light gain, facade color consistency]
Product Parameters
Keywords:
Perovskite
Cadmium telluride photovoltaic glass
Crystalline Silicon Power Generation Glass
Cadmium telluride photovoltaic glass
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Cadmium telluride photovoltaic glass
Cadmium telluride power-generating glass is an innovative building material that combines the transparent beauty of glass with the energy conversion capability of solar cells. This technology transforms every building into a potential power station, achieving seamless integration of renewable energy. The power-generating glass not only provides clean electricity but also enhances the aesthetics of buildings. It can be customized for use in building curtain walls, windows, roofs, and other areas, allowing the power-generating glass to perfectly integrate with the architecture.
Crystalline Silicon Power Generation Glass
(GB55015) Photovoltaic modules should last more than 25 years. The glass of double-glass modules has high wear resistance, and the insulation of the glass is superior to that of backsheet modules, which can fully meet higher electrical system voltages. The performance is 21% higher than ordinary modules, superior to photovoltaic power station materials. Warranty period: Complies with building codes and photovoltaic power station requirements. Mechanical safety performance: Shot and ball drop tests comply with GB15763.3-2009 "Safety Laminated Glass for Buildings". Physical performance: Wind resistance, bending resistance, and simulated rain tests comply with GB/T36584-2018 "Test Methods for Roof Tiles".
Cadmium telluride photovoltaic glass
Cadmium telluride power-generating glass is an innovative building material that combines the transparent beauty of glass with the energy conversion capability of solar cells. This technology transforms every building into a potential power station, achieving seamless integration of renewable energy. The power-generating glass not only provides clean electricity but also enhances the aesthetics of buildings. It can be customized for use in building curtain walls, windows, roofs, and other areas, allowing the power-generating glass to perfectly integrate with the architecture.
Cadmium telluride photovoltaic glass
Cadmium telluride power-generating glass is an innovative building material that combines the transparent beauty of glass with the energy conversion capability of solar cells. This technology transforms every building into a potential power station, achieving seamless integration of renewable energy. The power-generating glass not only provides clean electricity but also enhances the aesthetics of buildings. It can be customized for use in building curtain walls, windows, roofs, and other areas, allowing the power-generating glass to perfectly integrate with the architecture.
Cadmium telluride photovoltaic glass
Cadmium telluride power-generating glass is an innovative building material that combines the transparent beauty of glass with the energy conversion capability of solar cells. This technology transforms every building into a potential power station, achieving seamless integration of renewable energy. The power-generating glass not only provides clean electricity but also enhances the aesthetics of buildings. It can be customized for use in building curtain walls, windows, roofs, and other areas, allowing the power-generating glass to perfectly integrate with the architecture.