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面向全地表径流的科创园区“建筑-景观”协同改造设计研究——以苏州金枫产业园为例
李哲,成玉宁*,陈菲菲,韩笑,赵锴彧
0
作者简介:
摘要:
基于低影响开发(LID)理念,采用建成环境径流系统科学组织与技术集成的研究视角,认为建筑表面与景观场地共同构成了建成环境地表系统,统筹建筑顶面、侧立面及景观下垫面的一体化径流系统设计是当代科创园区更新改造的重要内容,并对改善局部地段生态环境、集约利用水资源等方面具有重要意义。以中小型科创园区为研究对象,提出了全地表生态径流理念下“建筑-环境”协同改造的设计观念;以苏州金枫产业园改造设计为例,进行了包含建筑改造和园区景观更新的一体化地表生态径流协同设计。总结了地表生态径流设计方法在科创园区建筑及其景观设计中的应用策略与设计要点,探讨了后续研究的思路与方向,为充实当代低影响开发设计方法与技术模式提供相关依据与研究结论。
关键词:  风景园林  全地表径流  低影响开发  科创园区  协同设计  金枫产业园
DOI:
基金项目:
On the Collaborative Reconstruction Design of "Building-Landscape" in Science Park Facing Whole Surface Runoff: A Case Study of Jinfeng Industrial Park, Suzhou
LI Zhe,CHENG Yuning,CHEN Feifei,HAN Xiao,ZHAO Kaiyu
Abstract:
Based on the concept of low-impact development (LID), the paper takes the perspective of the scientific organization and technology integration of the built-in environmental runoff system. It is believed that the built-up environmental surface system is consisted of the building surface and the landscape site. And the top, side building facade and the landscape of the building are coordinated. The integration of the runoff system of the environment is an important part of the renovation and reconstruction of the contemporary science park, and it is of great significance to improve the ecological environment of local areas and to use water resources intensively. The paper takes the small and medium-sized science park as the research object and puts forward the concept of "building and environment" collaborative reconstruction under the concept of the whole surface ecological runoff. Taking the reconstruction design of Jinfeng Industrial Park in Suzhou as an example, it carries out the reconstruction of the building and the park landscape. Collaborative reconstruction design is used in the integrated surface ecological runoff of the environment. The paper summarizes the strategies and design points of the methods of the surface ecological runoff design which will be used in office buildings and their site design. The paper also discusses the directions of subsequent research. It provides relevant basis and conclusions for enriching the methods of contemporary low-impact development design and technical models.
Key words:  landscape architecture  whole surface runoff  low impact development (LID)  science park  collaborative design  Jinfeng Industrial Park

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