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Evaluation of Urban Spatial Planning Based on Sustainability System Ecology Model
The sustainable urban ecological system is of great significance for building high-quality ecological spaces in cities and realizing regional environmental value innovation. However, there is a lack of systematic evaluation and quantification of ecological sustainable spatial planning indicators today. This study starts from a systematic spatial design strategy and establishes a Sustainable Ecosystem Model (SSEM) to systematically evaluate urban spatial design schemes. Based on the SSEM model, a sustainable spatial planning scheme that conforms to ecological principles and achieves cost reduction and efficiency improvement is constructed. The research process is as follows: firstly, a review of the new features presented by the model framework after its introduction into China; secondly, based on the case of Tianjin Eco-city, an indicator system will be constructed to address the issues; then qualitatively optimize the combination through ecological scenarios; finally, a fixed effects model was used for quantitative detection and evaluation; finally, a sustainable optimization plan for urban spatial ecology was derived. Research results: In the context of rapid urban and community renewal, the problem of ecological development and regional design rebalancing has been solved, reflecting the strategy of model indicators in spatial accessibility and quantitative evaluation. The research conclusion indicates that the combination of SSEM model and fixed effects model provides a technological path and innovative method for the sustainable development of urban ecology. The completeness of ecological resource indicators and the accuracy of quantitative testing in engineering practice have been filled in, reflecting the positive significance of ecological design for urban renewal.
Evaluation of Urban Spatial Planning Based on Sustainability System Ecology Model
The sustainable urban ecological system is of great significance for building high-quality ecological spaces in cities and realizing regional environmental value innovation. However, there is a lack of systematic evaluation and quantification of ecological sustainable spatial planning indicators today. This study starts from a systematic spatial design strategy and establishes a Sustainable Ecosystem Model (SSEM) to systematically evaluate urban spatial design schemes. Based on the SSEM model, a sustainable spatial planning scheme that conforms to ecological principles and achieves cost reduction and efficiency improvement is constructed. The research process is as follows: firstly, a review of the new features presented by the model framework after its introduction into China; secondly, based on the case of Tianjin Eco-city, an indicator system will be constructed to address the issues; then qualitatively optimize the combination through ecological scenarios; finally, a fixed effects model was used for quantitative detection and evaluation; finally, a sustainable optimization plan for urban spatial ecology was derived. Research results: In the context of rapid urban and community renewal, the problem of ecological development and regional design rebalancing has been solved, reflecting the strategy of model indicators in spatial accessibility and quantitative evaluation. The research conclusion indicates that the combination of SSEM model and fixed effects model provides a technological path and innovative method for the sustainable development of urban ecology. The completeness of ecological resource indicators and the accuracy of quantitative testing in engineering practice have been filled in, reflecting the positive significance of ecological design for urban renewal.
Evaluation of Urban Spatial Planning Based on Sustainability System Ecology Model
Advances in Engineering res
Qiu, Yanjun (Herausgeber:in) / Feng, Weimin (Herausgeber:in) / Zhang, Zhiqiang (Herausgeber:in) / Ahmad, Fauziah (Herausgeber:in) / Zhou, Qi (Autor:in) / Gao, Chang-chun (Autor:in)
International Conference on Civil Architecture, Hydropower and Engineering Management ; 2024 ; Kunming, China
31.01.2025
18 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
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