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A rainwater control optimization design approach for airports based on a self-organizing feature map neural network model

机译:基于自组织特征图神经网络模型的机场雨水控制优化设计方法

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To address the problems of high overflow rate of pipe network inspection well and low drainage efficiency, a rainwater control optimization design approach based on a self-organizing feature map neural network model (SOFM) was proposed in this paper. These problems are caused by low precision parameter design in various rainwater control measures such as the diameter of the rainwater pipe network and the green roof area ratio. This system is to be combined with the newly built rainwater pipe control optimization design project of China International Airport in Daxing District of Beijing, China. Through the optimization adjustment of the pipe network parameters such as the diameter of the rainwater pipe network, the slope of the pipeline, and the green infrastructure (GI) parameters such as the sinking green area and the green roof area, reasonable control of airport rainfall and the construction of sustainable drainage systems can be achieved. This research indicates that compared with the result of the drainage design under the initial value of the parameter, the green roof model and the conceptual model of the mesoscale sustainable drainage system, in the case of a hundred-year torrential rainstorm, the overflow rate of pipe network inspection wells has reduced by 36% to 67.5%, the efficiency of drainage has increased by 26.3% to 61.7%, which achieves the requirements for reasonable control of airport rainwater and building a sponge airport and a sustainable drainage system.
机译:为了解决管道网络检查井的高溢流率的问题,并在本文中提出了一种基于自组织特征图神经网络模型(SOFM)的雨水控制优化设计方法。这些问题是由各种雨水控制措施中的低精密参数设计引起的,例如雨水管网直径和绿色屋顶面积比。该系统将与中国北京大兴区的新建雨水管控制优化设计项目相结合。通过诸如雨水管网直径的管网参数的优化调整,管道的斜率,以及绿色基础设施(GI)参数,如下沉的绿色区域和绿色屋顶区域,合理地控制机场降雨并且可以实现可持续排水系统的构造。该研究表明,与参数,绿色屋顶模型和Mescle可持续排水系统的初始值下的排水设计的结果相比,在百年暴雨的情况下,溢出率管道网络检测井已经减少了36%至67.5%,引流效率增加了26.3%至61.7%,这实现了机场雨水合理控制的要求和建设海绵机场和可持续排水系统。

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