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Flood Resilient and Sustainable Urban Regeneration Using the Example of an Industrial Compound Conversion in Seoul, South Korea

机译:利用韩国首尔工业复合转换的例子,洪水弹性和可持续的城市再生

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摘要

The objective of this study was to illustrate the urban flood resilience and sustainability improvement potential by integration of decentralized water management systems in sustainable urban regeneration projects. This paper discusses sustainable and resilient urban regeneration potentials using the example of an industrial compound (ICs) conversion in Seoul, South Korea. Urban flood vulnerability has been a concern globally due to land use changes, limited capacity of existing stormwater management infrastructures and the effects of climate change. Due to their comparably low building density, ICs can effectively contribute to the separation and decentralized retention and infiltration of stormwater. However, no sustainable and resilient conversion examples of ICs have been realized in Seoul so far. After identification of a representative IC, its exemplary sustainable conversion with implementation of decentralized water management infrastructures were designed. The rainwater collection, retention and infiltration system was dimensioned in order to create a stormwater discharge-free property. The qualitative and quantitative analysis of the improvement potentials before and after the conversion unveiled that this conversion contributes also to the improvement of the neighborhoods' sustainability, spatial quality and resilience to disasters. The research results are transferable to other urban ICs and are a good practice example for sustainable and resilient regeneration of existing urban districts.
机译:本研究的目的是通过在可持续城市再生项目中融入分散的水管理系统,说明城市洪水恢复力和可持续发展潜力。本文讨论了使用韩国首尔的工业化合物(ICS)转换的例子进行了可持续和有弹性的城市再生潜力。由于土地利用变化,现有的雨水管理基础设施的有限和气候变化影响,城市洪水脆弱性一直是全球担忧。由于它们相当低的建筑密度,IC可以有效地有助于分离和分散的雨水渗透。然而,到目前为止,首尔没有实现IC的可持续和有弹性转换例。在识别代表IC之后,设计了与分散水管理基础设施实施的示范性可持续转换。雨水收集,保留和渗透系统尺寸为旨在产生无雨水的排放性。转换前后改善潜力的定性和定量分析推出这一转型也促进了社区的可持续性,空间质量和灾害抵御灾害的贡献。研究结果可转移到其他城市IC,是现有城市地区可持续和弹性再生的良好实践示例。

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