College of Airport, Civil Aviation University of China, No. 2898 Jin Bei Road, Dongli District, Tianjin, China E-mail:
Tianjin Lonwin Technology development Co., Ltd, No. 15 Longtan Road, Hedong District, Tianjin, China.
Water Sci Technol. 2020 Mar;81(6):1264-1272. doi: 10.2166/wst.2020.221.
Construction of an airport runway makes the impervious area of the airport high, which leads to the deterioration of the water environment and frequent waterlogging disasters. The selection of sponge airport facilities (e.g., pump, multi-functional storage tanks, green roof) to mitigate airport flooding has been a crucial issue in China. This study aims to develop a conceptual rainwater-runoff simulation model, which can take into account the effects of such facilities of a sponge airport. Taking catchment N1 of Beijing Daxing Airport as a case study, SWMM 5.1 was implemented to develop three sponge airport models (one pump, two pumps, combination of pump and multi-functional storage tanks). A sensitivity analysis was carried out to guarantee the robustness of the developed models. A 1-hour rainfall scenario with a 5-year return period was employed on the three sponge airport models. The results showed that the effect rankings of the control strategies on the water depth, volume and peak inflow of catchment N1 were comparable - combined strategies (combination of pump and multi-functional storage tanks) > one pump and two pumps. The conceptual and hydrological models developed in this study can serve as a simulation tool for implementing a real-time rainwater drainage control system in Beijing Daxing Airport.
机场跑道的建设使得机场不透水面积增加,这导致了水环境恶化和频繁的内涝灾害。在中国,选择海绵机场设施(如泵、多功能储水箱、绿色屋顶)来减轻机场洪水已成为一个关键问题。本研究旨在开发一个概念性雨水径流模拟模型,该模型可以考虑海绵机场设施的影响。以北京大兴机场集水区 N1 为例,使用 SWMM 5.1 开发了三个海绵机场模型(一个泵、两个泵、泵和多功能储水箱的组合)。进行了敏感性分析以保证模型的稳健性。在三个海绵机场模型上采用了 5 年重现期 1 小时降雨情景。结果表明,控制策略对集水区 N1 的水深、水量和峰值流量的影响排序相当——综合策略(泵和多功能储水箱的组合)>一个泵和两个泵。本研究中开发的概念和水文模型可以作为在大兴机场实施实时雨水排水控制系统的模拟工具。