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  • The roof adopts a 5,935-square-meter solar photovoltaic curtain wall power generation system, with 2,362 solar curtain walls in the shape of fish scales. The total photovoltaic power generation capacity is about 485.7KW, and the annual average power generation is 370,900 degrees. The ground radiation cooling and heating system improves thermal comfort while reducing operating energy consumption. The project greening adopts rainwater reuse and water-saving irrigation systems to meet the water consumption for indoor and outdoor greening irrigation, road washing and landscape water replenishment for 72 hours.
  • Leveraging the inherent technical and application advantages of cadmium telluride thin-film solar cells, TERLI has strategically positioned itself in the BIPV sector. To date, we have successfully developed eight major categories and over 50 types of BIPV building materials, including solar curtain walls, solar roof tiles, solar bricks and solar glass railings. These products are adaptable to various building applications, providing true alternatives to traditional construction materials and effectively reducing building energy consumption and carbon emissions.
  • In this competition, the solar residences of the eight university teams showcased innovative applications of cadmium telluride (CdTe) photovoltaic (PV) power generation building materials. Various architectural photovoltaic integrated applications, such as solar glass sunrooms, solar curtain walls, solar glass railings, solar skylights, solar sunshades, solar roof tiles and Building Integrated Photovoltaics (BIPV) integrated roofs, were observed in these solar homes. Each team demonstrated profound wisdom by designing solar residences that are both functional and comfortable, presenting a fresh perspective on solar energy technology.
  • Solar facades are a great solution, let alone energy generation, it provides plenty advantages: facade insulation, façade and balcony glazing, additional thermal properties, noise reduction (8-12 decibels of reduced traffic noise can be expected from balcony glazing). Solar facade modules can also be integrated to existing building facades, modernizing them and turning them energy efficient.
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