Study and Design Analysis of Hazard Removal and Reinforcement Scheme of a Bridge Diversion Sluice

Author:

Yang Xue1,Liu Hongmei1,Ning Zuojun1,Zhang Heng1,Gong Houjie1,Park SangSook2,Dong Huancheng1,Zhang Dali1,Zhu Hefeng1,Du Xinrong1,Wang Runkai13ORCID

Affiliation:

1. College of Civil Engineering, Kashi University, Kashi 844006, China

2. Department of Environmental Engineering, Sunchon National University, 255 Jungangro, Suncheon, Jeonnam 57922, Republic of Korea

3. School of Chemistry and Chemical Engineering, Shanghai University of Engineering Science, Shanghai 201620, China

Abstract

Most of the existing sluices in China have been in operation for more than 40 years, and the aging problem is becoming increasingly prominent. The selection of reinforcement schemes for sluices in vulnerable conditions is of great significance to the whole project. A reasonable reinforcement scheme can ensure their safe operation and reduce unnecessary resource investment. This study focuses on the diversion gate of a bridge in China that through aging has emerged insufficient capacity of downstream energy dissipation and scour prevention, severe scour of the diversion dike foundation, and insufficient flood control and rescue capacity. Two reinforcement schemes are examined by analyzing the engineering parameters of the bridge diversion sluice and the necessity of engineering construction, namely, raising the flood discharge level and increasing the width of the overflow section. In this study, Super Decisions software was first used to simulate the reinforcement scheme of the bridge diversion sluice, calculate the weight of the factors, and obtain the optimization scheme from the two aforementioned reinforcement schemes, which was based on the analytic network process (ANP), and the related factors affecting the reinforcement scheme of the bridge diversion sluice are determined and evaluated. The relevant calculation and analyses of the optimization scheme are conducted using ANSYS finite-element software. The selection process of reinforcement scheme for such sluices provides a reference for other similar projects.

Funder

Natural Science Foundation of Xinjiang

Publisher

Hindawi Limited

Subject

Civil and Structural Engineering

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