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Heat-insulating and energy-saving glass curtain wall structure
The invention discloses a heat-insulating and energy-saving glass curtain wall structure, and relates to the technical field of glass curtain walls. The device comprises a plurality of supporting vertical pipes which are arranged in a horizontal array mode, horizontal insertion pipes are constructed at the upper ends and the lower ends of the supporting vertical pipes correspondingly, and bearing transverse pipes communicating with the supporting vertical pipes are slidably connected between every two opposite horizontal insertion pipes in a sleeving mode; the number of the glass plates is multiple, every two glass plates are oppositely arranged between the two bearing transverse pipes, and a circulation cavity communicating with the bearing transverse pipes is formed between the two glass plates. A traditional heat insulation effect can be achieved by arranging the inner glass curtain wall, the combination of the glass plates, the supporting vertical pipes and the supporting transverse pipes is arranged on the outer side of the inner glass curtain wall, water can be injected into a circulation cavity between the glass plates, heat is brought out of the glass plates through flowing of water flow, and therefore the additional heat dissipation effect is achieved; the indoor temperature is further reduced, and the energy-saving effect is improved.
本申请公开了隔热节能玻璃幕墙结构,涉及玻璃幕墙技术领域。本申请包括:支撑竖管,数量为多个且沿水平阵列设置,所述支撑竖管的上下两端均构造有水平插管,所述水平插管两两相对之间滑动套接有与支撑竖管相连通的承载横管;玻璃板,数量为多个,所述玻璃板两两相对设置在两个承载横管之间,两个所述玻璃板之间构造有与承载横管相连通的流通腔。本申请通过设置内玻璃幕墙可以起到传统的隔热作用,而在其外侧设置玻璃板与支撑竖管以及支撑横管的组合,可以将水注入到玻璃板之间的流通腔内,利用水流的流动将热量带出玻璃板,以此来起到额外的散热效果,进一步降低室内温度,提高节能效果。
Heat-insulating and energy-saving glass curtain wall structure
The invention discloses a heat-insulating and energy-saving glass curtain wall structure, and relates to the technical field of glass curtain walls. The device comprises a plurality of supporting vertical pipes which are arranged in a horizontal array mode, horizontal insertion pipes are constructed at the upper ends and the lower ends of the supporting vertical pipes correspondingly, and bearing transverse pipes communicating with the supporting vertical pipes are slidably connected between every two opposite horizontal insertion pipes in a sleeving mode; the number of the glass plates is multiple, every two glass plates are oppositely arranged between the two bearing transverse pipes, and a circulation cavity communicating with the bearing transverse pipes is formed between the two glass plates. A traditional heat insulation effect can be achieved by arranging the inner glass curtain wall, the combination of the glass plates, the supporting vertical pipes and the supporting transverse pipes is arranged on the outer side of the inner glass curtain wall, water can be injected into a circulation cavity between the glass plates, heat is brought out of the glass plates through flowing of water flow, and therefore the additional heat dissipation effect is achieved; the indoor temperature is further reduced, and the energy-saving effect is improved.
本申请公开了隔热节能玻璃幕墙结构,涉及玻璃幕墙技术领域。本申请包括:支撑竖管,数量为多个且沿水平阵列设置,所述支撑竖管的上下两端均构造有水平插管,所述水平插管两两相对之间滑动套接有与支撑竖管相连通的承载横管;玻璃板,数量为多个,所述玻璃板两两相对设置在两个承载横管之间,两个所述玻璃板之间构造有与承载横管相连通的流通腔。本申请通过设置内玻璃幕墙可以起到传统的隔热作用,而在其外侧设置玻璃板与支撑竖管以及支撑横管的组合,可以将水注入到玻璃板之间的流通腔内,利用水流的流动将热量带出玻璃板,以此来起到额外的散热效果,进一步降低室内温度,提高节能效果。
Heat-insulating and energy-saving glass curtain wall structure
隔热节能玻璃幕墙结构
TANG FAN (author) / LUO RENMI (author) / WANG LU (author) / ZHANG CHANGKE (author) / LI GANG (author) / LIU JIANJUN (author) / LIU JING (author)
2024-07-19
Patent
Electronic Resource
Chinese
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