Journal of Geoscience and Environment Protection

Volume 5, Issue 12 (December 2017)

ISSN Print: 2327-4336   ISSN Online: 2327-4344

Google-based Impact Factor: 0.72  Citations  

Assessment of Climate Technology Demands in Chinese Sponge City

HTML  XML Download Download as PDF (Size: 958KB)  PP. 102-116  
DOI: 10.4236/gep.2017.512008    1,180 Downloads   3,063 Views  Citations

ABSTRACT

Sponge city is a development pattern used to realize natural accumulation, natural infiltration and natural purification of rainwater through urban planning and construction management. Sponge city technology is widely used as the critical approaches in natural rainwater management and it is one of the best techniques to adapt climate change events in modern cities. In the paper, we firstly reviewed background information of sponge city construction and the development, key technologies, and economic benefit analysis of stormwater management in foreign countries. Then, we analyzed the technology gap between China and developed countries in two aspects (planning design method and Low Impact Development (LID) project design). Then, we pointed out the main obstacles in sponge city technology transfer and proposed to improve the basic data sharing system and strengthen the economic return system. On the basis of sponge city planning theory and sponge city technologies, taking Shenzhen as an example, we analyzed the ideas and plans of sponge city construction in rainy areas and completed the assessment of current climate technology demands in Chinese sponge city. The study provides the basis for the improvements in sponge city construction and adaptation to climate change.

Share and Cite:

Ma, Z. , Hu, J. , Feng, P. , Gao, Q. , Qu, S. , Song, W. and Liu, J. (2017) Assessment of Climate Technology Demands in Chinese Sponge City. Journal of Geoscience and Environment Protection, 5, 102-116. doi: 10.4236/gep.2017.512008.

Cited by

[1] A review of the progress in Chinese Sponge City programme: Challenges and opportunities for urban stormwater management
Water Supply, 2022
[2] Comparison of runoff from low-impact development measures in arid and humid cities
Proceedings of the …, 2022
[3] The fluctuation of groundwater level under the background of Sponge City Construction in the pilot area in Tianjin, China
Arabian Journal of Geosciences, 2022
[4] An Integrated Conceptual Model Towards Sustainable Rural Water Management Based Remote Sensing and Machine Learning
2022
[5] 透水滤芯渗井技术及其在城市海绵化改造应用研究
水利水电技术, 2021
[6] Research on establishment of the region flood protection standard-a case of watershed of Dajiaxi, Taiwan
2021
[7] Water saving potential and economic viability assessment of rainwater harvesting system for four different climatic regions in China
2021
[8] Sustainable urbanism in China
2021
[9] Research on constructing sponge city indicator and decision evaluation model with fuzzy multiple criteria method
2020
[10] A new emission trading with bounded rational countries: a network game approach
2020
[11] Sponge City Practice in China: A Review of Construction, Assessment, Operational and Maintenance
2020
[12] Intelligent use of natural resources and sustainability in civil construction
2019
[13] Uso inteligente de recursos naturais e sustentabilidade na construção civil
2019
[14] Programa intermunicipal: contributo para o planeamento integrado da Bacia Hidrográfica do Rio Jamor
2019
[15] Implementation of a specific urban water management-Sponge City
Science of The Total Environment, 2018
[16] Quantum phase transition in the spherical mean-field plus quadrupole-quadrupole and pairing model in a single- shell
Physical Review C, 2016

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.