Study on Multi-Objective Optimization of Sponge Facilities Combination at Urban Block Level: A Residential Complex Case Study in Nanjing, China

Author:

Xie MingkunORCID,Cheng Yuning,Dong ZengchuanORCID

Abstract

Urban block-scale sponge system design needs address how to specify the optimal approach to combine the number of areas and types of sponge facilities for diverse land conditions and sponge system design objectives, while ensuring sponge performance and economic efficiency. With the gradual application of multi-objective optimization algorithms in the design of sponge cities, multi-objective combinatorial problem solving for sponge facilities based on optimization algorithms is more accurate and efficient than traditional design methods based on the designer’s experience. This study utilizes a residential complex in Nanjing as a practical example, selects six types of typical sponge facilities to construct a multi-objective optimization combination model for sponge facilities, and employs the SPEA-2 algorithm to determine the optimal combination of sponge facility types and quantities. Finally, 186,754 combinations of sponge facilities were calculated. For the three sponge objectives of optimal performance and economy for stormwater infiltration and storage, optimal performance and economy for runoff pollution control, and optimal average overall performance for stormwater infiltration, runoff pollution control, and economy, a number of combinations of sponge types and numbers were obtained.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

MDPI AG

Subject

Water Science and Technology,Aquatic Science,Geography, Planning and Development,Biochemistry

Reference41 articles.

1. Hydrological cycle and water resources in a changing world: A review

2. Development and challenges of urban hydrology in a changing environment: I: Hydrological response to urbanization;Zhang;Adv. Water Sci.,2014

3. Uncertainties of urban flood modeling: Influence of parameters for different underlying surfaces

4. Being both Opposite and Complementary: Urban Road Sponge System Practice Based on Digital Technology—Taking Nanjing Tianbao Street Ecological Road as the Example;Cheng;Chin. Landscape Archit.,2017

5. Sponge City — An emerging concept in sustainable water resource management: A scientometric analysis

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