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Sponge city rainwater recovery system construction technology
The invention belongs to the technical field of sponge city construction, particularly relates to a sponge city rainwater recovery system construction technology, and provides the following scheme aiming at the problems that an existing sponge city is poor in waterproof performance, the direct solar temperature is high, the heat preservation and heat insulation performance cannot be optimized, and the sustainable development performance cannot be met. The method comprises the following steps that S1, a greening layer is laid on the ground; the greening layer is provided with a concave depth, and the gradient ratio of the concave depth is 1: 3; s2, an overflow well is arranged on the greening layer; s3, arranging an energy dissipation sedimentation tank on the side of the greening layer; s4, arranging a cover plate above the energy dissipation sedimentation tank; and S5, arranging a rainwater down pipe on the outer wall of the ground, and extending the rainwater down pipe to the lower part of the cover plate. The waterproof performance of the sponge city is improved, the heat insulation performance is optimized, and the sustainable development performance is improved.
本发明属于海绵城市施工技术领域,尤其是一种海绵城市雨水回收系统施工工艺,针对现有的海绵城市防水性能差,直射的太阳温度较高,不能优化保温隔热性能,不满足持续发展性能的问题,现提出如下方案,其包括以下步骤:S1:在地面铺设绿化层;绿化层上设置有下凹深度,下凹深度的坡度比为1:3;S2:在绿化层上设置有溢流井;S3:在绿化层的边侧设置消能沉淀池;S4:在消能沉淀池的上方设置盖板,S5:在地面的外墙设置雨落水管,将雨落水管延伸至盖板的下方。本发明提高海绵城市防水性能,优化保温隔热性能,提高持续发展性能。
Sponge city rainwater recovery system construction technology
The invention belongs to the technical field of sponge city construction, particularly relates to a sponge city rainwater recovery system construction technology, and provides the following scheme aiming at the problems that an existing sponge city is poor in waterproof performance, the direct solar temperature is high, the heat preservation and heat insulation performance cannot be optimized, and the sustainable development performance cannot be met. The method comprises the following steps that S1, a greening layer is laid on the ground; the greening layer is provided with a concave depth, and the gradient ratio of the concave depth is 1: 3; s2, an overflow well is arranged on the greening layer; s3, arranging an energy dissipation sedimentation tank on the side of the greening layer; s4, arranging a cover plate above the energy dissipation sedimentation tank; and S5, arranging a rainwater down pipe on the outer wall of the ground, and extending the rainwater down pipe to the lower part of the cover plate. The waterproof performance of the sponge city is improved, the heat insulation performance is optimized, and the sustainable development performance is improved.
本发明属于海绵城市施工技术领域,尤其是一种海绵城市雨水回收系统施工工艺,针对现有的海绵城市防水性能差,直射的太阳温度较高,不能优化保温隔热性能,不满足持续发展性能的问题,现提出如下方案,其包括以下步骤:S1:在地面铺设绿化层;绿化层上设置有下凹深度,下凹深度的坡度比为1:3;S2:在绿化层上设置有溢流井;S3:在绿化层的边侧设置消能沉淀池;S4:在消能沉淀池的上方设置盖板,S5:在地面的外墙设置雨落水管,将雨落水管延伸至盖板的下方。本发明提高海绵城市防水性能,优化保温隔热性能,提高持续发展性能。
Sponge city rainwater recovery system construction technology
海绵城市雨水回收系统施工工艺
CHEN DIHE (Autor:in) / QIAN YULONG (Autor:in) / XIAO CHENGYONG (Autor:in) / LONG YUN (Autor:in) / FENG YANHUA (Autor:in) / QIAN YANG (Autor:in) / QIU WEIWU (Autor:in) / ZHONG BIAO (Autor:in) / MA JIANYONG (Autor:in) / XIE XINYI (Autor:in)
02.08.2022
Patent
Elektronische Ressource
Chinesisch
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