A platform for research: civil engineering, architecture and urbanism
Irrigation system for sloping roof soil-covered building
The invention relates to an irrigation system for a sloping roof soil-covered building, which comprises a self-precipitation filtering capillary floor drain, a water storage tank, a water supply system, a monitoring system, a control system and a management platform, a broken stone hardcore and a soil-covered surface are sequentially laid on a sloping roof panel, and the self-precipitation filtering capillary floor drain is arranged at the lower part of the sloping roof panel; the water storage tank is installed in a cavity between the inclined roof panel and the structural horizontal floor slab, and the self-precipitation filtering capillary floor drain and the water storage tank are communicated through a drainage pipeline. The water supply system comprises a water pump and a drip irrigation guide pipe, the drip irrigation guide pipe is buried in the soil covering surface, and the water pump is communicated with the water storage tank and the drip irrigation guide pipe; the monitoring system comprises a first monitoring module mounted on the soil covering surface and a second monitoring module mounted on the water storage tank, and data detected by the first monitoring module and the second monitoring module are transmitted to the management platform; the input end of the control system is in signal connection with the management platform, and the output end is in signal connection with the water pump and the water storage tank. According to the invention, intelligent irrigation of the sloping roof soil-covered building can be realized.
本发明涉及一种斜屋面覆土建筑的浇灌系统,包括自沉淀过滤毛细地漏、储水箱、供水系统、监测系统、控制系统及管理平台,斜屋面板上依次铺设有碎石垫层和覆土面,自沉淀过滤毛细地漏安装于斜屋面板的低处;储水箱安装于斜屋面板与结构水平楼板之间的空腔内,采用排水管道连通自沉淀过滤毛细地漏和储水箱;供水系统包括水泵和滴灌导管,滴灌导管埋设于覆土面内,水泵与储水箱连通,并与滴灌导管连通;监测系统包括安装于覆土面的第一监测模块和安装于储水箱上的第二监测模块,第一、第二监测模块检测的数据传输至管理平台;控制系统的输入端与管理平台信号连接,输出端与水泵以及储水箱信号连接。本发明能够实现斜屋面覆土建筑的智能浇灌。
Irrigation system for sloping roof soil-covered building
The invention relates to an irrigation system for a sloping roof soil-covered building, which comprises a self-precipitation filtering capillary floor drain, a water storage tank, a water supply system, a monitoring system, a control system and a management platform, a broken stone hardcore and a soil-covered surface are sequentially laid on a sloping roof panel, and the self-precipitation filtering capillary floor drain is arranged at the lower part of the sloping roof panel; the water storage tank is installed in a cavity between the inclined roof panel and the structural horizontal floor slab, and the self-precipitation filtering capillary floor drain and the water storage tank are communicated through a drainage pipeline. The water supply system comprises a water pump and a drip irrigation guide pipe, the drip irrigation guide pipe is buried in the soil covering surface, and the water pump is communicated with the water storage tank and the drip irrigation guide pipe; the monitoring system comprises a first monitoring module mounted on the soil covering surface and a second monitoring module mounted on the water storage tank, and data detected by the first monitoring module and the second monitoring module are transmitted to the management platform; the input end of the control system is in signal connection with the management platform, and the output end is in signal connection with the water pump and the water storage tank. According to the invention, intelligent irrigation of the sloping roof soil-covered building can be realized.
本发明涉及一种斜屋面覆土建筑的浇灌系统,包括自沉淀过滤毛细地漏、储水箱、供水系统、监测系统、控制系统及管理平台,斜屋面板上依次铺设有碎石垫层和覆土面,自沉淀过滤毛细地漏安装于斜屋面板的低处;储水箱安装于斜屋面板与结构水平楼板之间的空腔内,采用排水管道连通自沉淀过滤毛细地漏和储水箱;供水系统包括水泵和滴灌导管,滴灌导管埋设于覆土面内,水泵与储水箱连通,并与滴灌导管连通;监测系统包括安装于覆土面的第一监测模块和安装于储水箱上的第二监测模块,第一、第二监测模块检测的数据传输至管理平台;控制系统的输入端与管理平台信号连接,输出端与水泵以及储水箱信号连接。本发明能够实现斜屋面覆土建筑的智能浇灌。
Irrigation system for sloping roof soil-covered building
一种斜屋面覆土建筑的浇灌系统
ZHOU ZHENQUAN (author) / WANG ZIRUI (author) / WANG RUNZE (author) / CHEN ZHIHAO (author) / YUAN JIAMIN (author)
2023-03-21
Patent
Electronic Resource
Chinese