公共空间自适应纺织品的数字混合

K. Gasparini
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引用次数: 2

摘要

近年来,许多建筑和城市表面与环境相互作用,就像不断变化的皮肤,适应环境刺激。纺织技术由于可以产生形状和颜色的变化,因此最适合满足对环境的适应性要求。今天,由于纺织系统和纤维越来越高科技和智能,这是可能的。使这些适应性系统在数字技术中发挥着重要作用,并且在每个设计阶段都是一个重要的多学科方法。本文将纺织品在城市空间设计中的一些发展和应用交织在一起,探讨新兴技术在建筑和城市设计中的可能应用。本分析旨在探讨纺织系统的文化、设计和技术之间的交集,以及参数化设计和嵌入式系统在城市空间设计和改造中的作用。本文的目的是通过基于实践的设计研究来传播适应性纺织系统作为建筑材料的知识。该研究框架了当代设计探索,其中数字设计工具和材料表达是主要的占位符,重点是表面形状和设计实验,探索光,颜色和运动作为设计材料的表现力。本文反思了数字设计应用于城市空间纺织系统的作用,作为一种可能的工具,旨在通过表面原型来增强现有空间。
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Digital Hybridisation in Adaptive Textiles for Public Space
Over recent years, many architectural and urban surfaces interact with the environment like a changing skin, adaptable to environmental stimuli. The textile technology appears to be the most suitable to meet the requirement of adaptability to the environment because it can produce changes in shape and colour. Today, this is a possible thanks to textile systems and fibres that are increasingly hi-tech and smart. To make these adaptable systems is a fundamental role in digital technologies and is an important a multidisciplinary approach in every design phase. This article interweaves some of the developments and applications of textiles in urban space design, exploring the possible applications of emerging technology in architectural and urban design. This analysis aims to explore the intersection between the culture, design and technology of textile systems, as well as the role of parametric design and embedded systems in urban space design and transformation. The aim of this article is to spread knowledge on adaptable textile systems as materials for architecture and to do so through practice-based design research. The study frames the contemporary design explorations, in which digital design tools and material expression are major placeholders, with a focus on surface shapes and design experiments exploring the expressiveness of light, colour and movement as design materials. The article reflects on the role of digital design applied to textile systems for urban space as a possible tool aiming at enhancing existing space by surface prototyping.
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