A new approach for sensitivity analysis of the StormWater Management Model applied in an airport

Author:

Peng Jing12,Zhao Hucheng1,Luo Zihang1,Ouyang Jie1,Yu Lei3

Affiliation:

1. a School of Transportation Science and Engineering, Civil Aviation University of China, Tianjin 300300, China

2. b Research Centre for Environment and Sustainable Development of Civil Aviation Administration of China, Civil Aviation University of China, Tianjin 300300, China

3. c Tianjin Lonwin Technology Development Co., Ltd, No. 15 Longtan Road, Hedong District, Tianjin, China

Abstract

Abstract Sensitivity analysis of urban flood model parameters is important for efficient and accurate flood simulation. In order to explore the problems of large sampling parameters and nonlinear correlation between input and output variables, this paper proposed a new correlation analysis approach. The type, strength, and the order of sensitive parameters to the four outputs are analyzed using the proposed approach. The results show that the R values of Manning-N are biggest, its distribution is linear in heat maps, and the Manning-N has a strong linear correlation with Average Depth, Hour of Maximum Flooding, and Time to Peak. For Average Depth, the second sensitive parameter is Conductivity. For Hour of Maximum Flooding, the second and third more sensitive parameters are Conductivity and N-perv; however, there are certain nonlinear correlations from heat maps. For Total Inflow, the R values of each parameter are between 0.021 and 0.534. Most sensitive parameters are none; however, the more sensitive parameters are Conductivity, N-perv, and initial deficit. For Time to Peak, the second and third more sensitive parameters are N-perv and N-Imperv; however, there are certain non-linear correlations from heat maps. The results can provide theoretical guidance for application and parameter calibration of SWMM in airport.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference21 articles.

1. Calculation Standards for Rainwater Runoff in Tianjin: DB/T 29-236-2016. Tianjin Urban and Rural Construction Committee. (in Chinese).

2. Global sensitivity analysis of SWMM parameters based on Sobol method;Li;China Water Wastewater,2020

3. Sensitivity Analysis for Urban Drainage Modeling Using Mutual Information

4. A novel spatial optimization approach for the cost-effectiveness improvement of LID practices based on SWMM-FTC

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