Research on Municipal Water Supply and Drainage Design under the Concept of Sponge City Construction
Abstract
In recent years, urban waterlogging has occurred frequently in some cities in China. The current municipal water supply and drainage system fails to effectively manage and utilize water resources, which not only restricts the sustainable development of modern cities but
also runs counter to the goal of building a resilient sponge city. Therefore, it is of great significance to explore and optimize the municipal
water supply and drainage design plan, which will help to better implement the concept of sponge city construction and promote the urbanization process in China towards a higher - quality direction. In view of this, this paper aims to analyze in detail the specific application
strategies of the sponge city concept in municipal water supply and drainage design, hoping to provide valuable references for research and
practice in related fields.
also runs counter to the goal of building a resilient sponge city. Therefore, it is of great significance to explore and optimize the municipal
water supply and drainage design plan, which will help to better implement the concept of sponge city construction and promote the urbanization process in China towards a higher - quality direction. In view of this, this paper aims to analyze in detail the specific application
strategies of the sponge city concept in municipal water supply and drainage design, hoping to provide valuable references for research and
practice in related fields.
Keywords
Sponge City; Construction Concept; Municipal Water Supply and Drainage Design
Full Text:
PDFReferences
[1] Chen Feifei. Application of the Sponge City Concept in Municipal Water Supply and Drainage Design [J]. Scientific and Technological Information, 2022(17):139 - 141.
[2] Wen Zhili. Research on Urban Drainage Design under the Concept of Sponge City [J]. Urban Architecture Space, 2022(8):213 -
215.
[3] Liu Xin. Analysis of Sponge City Construction and Municipal Water Supply and Drainage Strategies [J]. Future City Design and
Operation, 2022(6):47 - 49.
DOI: https://doi.org/10.18686/utc.v10i4.251
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