A Two-Stage Investment Decision-Making Model for Urban Rail Transit Drainage Renovation

Author:

Wang Tao1ORCID,Liu Bingsheng12,Liu Shimeng2,Zhang Kuan1,Ma Mingyue3

Affiliation:

1. School of Public Policy and Administration, Chongqing University, Chongqing 400044, China

2. College of Management and Economics, Tianjin University, Tianjin 300072, China

3. Research Institute for Road Safety of the Ministry of Public Security of China, Beijing 100062, China

Abstract

Climate change is the main cause of frequent extreme weather and natural disasters. Therefore, effective climate adaptation strategies for urban rail transit (URT) should be adopted to cope with extreme precipitation events (EPEs). This study proposes a decision-making model based on climate change for drainage renovation, which consists of an optimal renovation sequence model and an optimal investment timing model. This study analyzes the inundation risk of each station and its node importance in the URT network and then uses a multi-attribute decision analysis (MADA) to determine the optimal renovation sequence. This study also uses a real options pricing approach to calculate the value of an option in order to defer the renovation project and determine the optimal investment timing. Then, the Beijing Urban Rail Transit (BURT) is taken as an example to conduct an empirical analysis of the proposed model. Considering the uncertainty of climate change and the complexity of the URT network, the model can obtain the optimal renovation sequence and the investment timing of each station, which is expected to provide a decision-making tool for urban governments to formulate an optimal plan that strengthens the prevention of flooding disasters.

Funder

National Natural Science Foundation of China

Key Projects of Philosophy and Social Sciences Research, Ministry of Education of China

Bayu Scholar Program

Chongqing Talents Program

Fundamental Research Funds for the Central Universities of China

Publisher

MDPI AG

Subject

Information Systems and Management,Computer Networks and Communications,Modeling and Simulation,Control and Systems Engineering,Software

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4. Network design problem for risk reduction in transport system: A models specification;Antonino;Int. J. Transp. Dev. Integr.,2022

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