摘要
结合工程应用,针对多机组、高扬程离心泵站的特点,将主副厂房及进水池结合布置,下部结构与主厂房形成整体结构,既便于维护管理,又节省投资、充分利用空间。针对下部结构跨度大、体积大、受力复杂的特点,在设计中采取多种措施,包括采用补偿收缩混凝土、基岩与底板间设隔离层、增设外防水层、出水管与边墙采用柔性连接、机座与底板整体浇注、采用先进计算理论指导配筋。
In accordance with the characteristics of muhi-units and high-lift pump station and the application to the actual project, the main pumping house and the auxiliary pumping house are arranged in combination with the intake pond, and then the understructure is integrated with the main pump house; with which the working space is fully used with convenient management and investment saving. In the design, the construction measures such as application of shrinkage-compensating concrete, arrangement of spacing layer between the foundation rock and the bottom stab, adding outside waterproof layer, flexible connection between outlet pipe with side-wall, integerated concrete placement of pump seat with bottom slab and design of reinforcement with application of advanced calculation theory are used according to the characteristics of lager span, larger volume and complex loading conditions of the understructure.
出处
《水利水电技术》
CSCD
北大核心
2007年第9期52-54,共3页
Water Resources and Hydropower Engineering
关键词
多机组
高扬程离心泵站
厂房布置
优化设计
multi-units
high-lift centrifugal pump station
optimized layout
optimized design