利用曲线数建立渗透装置的简单设计方法

Sohyun Choi, H. Jun, Dongyeop Lee, S. Hwang, Jong-Pyo Park
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摘要

随着气候变化的加速,自然灾害的规模和强度都在增加,局地暴雨的频率也在迅速增加。城市流域不透水面积的比例很高。因此,一旦发生暴雨,发生洪水的可能性很大,而且由于人口和物质资源高度集中,有可能造成大规模的破坏。河流改善、污水系统维护和雨水储存装置经常被用来减少洪水的破坏。最近,低影响开发(LID)技术被提出;然而,LID设施的安装规模较小,分布在不同的地点。此外,它们需要许多参数来进行降雨径流分析;因此,这些设施的设计需要太多的人力和时间。在本研究中,我们分析了基于设施规模的降雨径流减少效应,以提出一种更简单、更有效的设计方法。其次,估算每个设施容量对应的曲线数(CN),并分析设施面积比与CN之间的相关性。利用LID设施安装前的CN和设施面积比,推导出与已安装的LID设施具有相同降雨径流减少效果的新CN的关系表达式。因此,我们提出了一种简单的设计方法,使用重新计算的CN,而不直接将LID设施纳入雨水管理模型(SWMM)。
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Development of a Simple Design Method for an Infiltration Facility using Curve Number
As climate change accelerates, the scale and intensity of natural disasters are increasing, and the frequency of localized heavy rains is increasing rapidly. Urban watersheds have a high ratio of impervious areas. So there is a high possibility of flooding in the event of torrential rain, and large-scale damage can occur because the population and material resources are highly concentrated. River improvements, sewerage maintenance, and rainwater storage installations are frequently used to reduce flood damage. More recently, low-impact development (LID) techniques have been proposed; however, LID facilities are installed on a small scale and in various locations. In addition, they require many parameters for a rainfall-runoff analysis; consequently, the design of these facilities require too much manpower and time. In this study, we analyze the rainfall-runoff reduction effect based on the size of a facility to present a simpler, more efficient design method. Next, the curve number (CN) corresponding to the capacity of each facility is estimated and the correlation between the facility’s area ratio and the CN is analyzed. As a result, a relational expression that can calculate the new CN with the same rainfall-runoff reduction effect as the installed LID facility was derived by using the CN before the installation of the LID facility and the facility area ratio. Thus, we present a simple design method using the recalculated CN without directly entering LID facilities into a storm water management model (SWMM).
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