ASSA Models and Gis Integration in the Determination of Flooding Point in Different Return Periods

F. Rezayi, A. Bahremand, V. B. Shaikh, M. Dasturani, M. Tajbakhsh
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Abstract

Abstract The quantitative and qualitative management of urban runoff is a very complicated, and the importance of it is added every day. Regardless of the economic and social impacts, water engineers always need to know how to respond to a city’s drainage system against different climatic conditions. In this research, the combination of ASSA and GIS models in the returns periods of 2, 5, 10, 50 years were used to determine the flooding points in the 9th district of Mashhad municipality. First, the watershed boundaries, canals and nodes maps was extracted from the GIS environment. Then, the ASSA model was simulated for a one hour design for a different return period; the outputs of the model were analyzed in the GIS software environment. The results showed that with increasing rainfall return period, 2806 nodes in underground and superficial networks of 114, 178 and 226 nodes were flooded and inundation during the return periods of 2, 5, 50, 10 years, respectively. Field surveys, existing elevation digital maps of the urban runoff network and simulations have shown that the main cause of inundation is the small size of the cross section of the duct, as well as the low slope in some parts of the network. Adaptation of the results of the simulation of rainfall-induced waterlogging in the study area with what happens every year confirms indicates the correctness of the simulations of the model. Moreover, simulation results of the model also showed that there is a good agreement between the simulated results and the measurement.
ASSA模型与Gis集成在不同回归期洪水点确定中的应用
城市径流的定量和定性管理是一个非常复杂的问题,其重要性日益增加。无论经济和社会影响如何,水利工程师总是需要知道如何应对不同气候条件下城市排水系统的变化。本研究采用ASSA与GIS模型在2、5、10、50年的回归期相结合的方法,确定了马什哈德市9区洪涝点。首先,从GIS环境中提取流域边界、运河和节点图;然后,对不同回归周期下1小时设计的ASSA模型进行了模拟;在GIS软件环境下对模型的输出结果进行了分析。结果表明:随着降水回归期的增加,在2年、5年、50年和10年的回归期,地下网和地表网分别有114、178和226个节点的2806个节点被淹没和淹没;现场调查、现有城市径流网高程数字图和模拟结果表明,洪水泛滥的主要原因是管道截面尺寸小,以及网络部分地区的低坡度。将研究区降雨内涝模拟结果与每年发生的情况进行拟合,证实了模型模拟的正确性。此外,该模型的仿真结果也表明,仿真结果与实测结果吻合较好。
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