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超越线性叙事:螺旋式发展视角下的城市公共空间演进

Beyond Linear Narratives: Evolution of Urban Public Space from the Perspective of Spiral Development

作者:丁瑶瑶1,*,卢宝荣2,*
1浙江传媒学院 设计艺术学院 浙江 杭州
2复旦大学生命科学学院 上海
*通信作者:丁瑶瑶;单位:浙江传媒学院 设计艺术学院 浙江 杭州
                   卢宝荣;单位:复旦大学生命科学学院 上海
提交:2025-02-01录用:2025-04-17出版:2025-05-31
空间, 2025, 1(1), 1-7; https://doi.org/10.58244/spatium.263824
课题资助:自筹经费,无利益冲突需要说明
摘 要:
摘要:本文论证了城市公共空间的发展不是简单的线性过程,而是螺旋式上升的复杂过程。提出了从缺乏公共空间、单一性公共空间、多样化公共空间到场景营造的四阶段演进模型,继而对各阶段的主要特征及内在矛盾做了批判性分析,揭示了后续阶段是如何吸收、转化并超越前一阶段的特征。由此引出对当代及未来城市公共空间设计的理论启示,促进了对公共空间“公共性”本质的深入讨论。【更多...】
关键词:城市公共空间;螺旋式演进;公共性
关键词: 城市公共空间;螺旋式演进;公共性

摘要

摘 要:
后疫情时代公众人居健康需求从“规避污染”升级为“主动增益”,因此建筑材料开始由“环保无害”向“健康增益”转型。目前学界对建筑材料的研究多由材料及相关工程学科主导,虽在微观性能层面已取得进展,但在建筑应用情境中仍面临主体错位、协同不足及转化受阻等问题。针对上述困境,本文引入实践共同体理论,从知识生成与协同机制视角出发,构建“建筑学统筹层—学科支撑层—项目运行层”的三层递进式跨学科创新模型,并以持续八年的产学研项目为实证基础,对模型在目标整合、多学科协同及成果转化诸方面的有效性做了扎实验证。研究表明,以建筑学为统筹主体的跨学科协同机制有利于提高健康建筑材料研发的系统性及落地能力,也因此为健康导向建筑材料研究提供了新的理论解释路径及实践框架。
关键词:健康建筑材料;建筑学主导;跨学科创新;实践共同体;三层递进模型
 
Abstract:
In the post pandemic era,the demand for public living health has shifted from"avoiding pollution"to"actively enhancing",so building materials have begun to transform from"environmentally friendly and harmless"to"health enhancing".At present,the research on building materials in academia is mainly led by materials and related engineering disciplines.Although progress has been made in the micro performance level,there are still problems such as subject misalignment,insufficient collaboration,and hindered transformation in the context of building applications.In response to the above difficulties,this article introduces the theory of practical community and constructs a three-layer progressive interdisciplinary innovation model from the perspective of knowledge generation and collaboration mechanism,which includes the"architecture coordination layer,discipline support layer,and project operation layer".Based on eight years of industry university research projects,the effectiveness of the model in target integration,interdisciplinary collaboration,and achievement transformation has been solidly verified.Research has shown that interdisciplinary collaboration mechanisms with architecture as the main body of coordination are beneficial for improving the systematic and practical capabilities of research and development of healthy building materials,and therefore provide new theoretical explanations and practical frameworks for health oriented building material research.
Keywords: Healthy building materials; Architecture-led; Interdisciplinary innovation; Practice community; Three-tier progressive model
 
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参考文献


参考文献 / References: 
  1. Felhösi I.What can nano-chemistry offer to the paint industry[J].Macromolecular Symposia,2002(1).
  2. HincapiéI,Caballero-Guzman A,Hiltbrunner D,et al.Use of engineered nanomaterials in the construction industry with specific emphasis on paints and their flows in construction and demolition waste in Switzerland[J].Journal of Cleaner Production,2015,43:398-406.
  3. LópezAlonso M,DíazSoler B,MartínezRojas M,et al.Management of Occupational Risk Prevention of Nanomaterials Manufactured in Construction Sites in the EU[J].2020,17(24).
  4. 柯博,黄志杰,左美祥,等.纳米SiO₂在喷涂技术中的应用[J].喷涂技术工业,1998(12):29-30.
  5. 蒋贞贞,朱俊任,路媛媛.纳米二氧化钛光催化喷涂技术降解甲醛的研究进展[J].中国喷涂技术,2009,24(12):20-23.
  6. 梁伟欣.功能纳米喷涂技术的研究进展[J].江西建材,2016(10):63-64.
  7. 杨宇,梁精龙,李慧,等.纳米技术在喷涂技术领域的应用[J].热加工工艺,2017,46(18):35-38.
  8. He K,Liu Y,He Y.Photocatalytic Properties of Nano-TiO2 Composite Coatings in Degrading Formaldehyde[J].Nanoscience and Nanotechnology Letters,2019,11.
  9. He K,Liu Y,He Y.Organic-Inorganic Interpenetrating Technology-Based Nano Water-Borne Paint for Steel Structures[J].Nanoscience and Nanotechnology Letters,2019,11(3).
  10. NEUFELD D,FANG Y,WAN Z.Community of Practice Behaviors and Individual Learning Outcomes[Z]//Group Decision and Negotiation.2012.
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