【24h】

Convergence of architectural, visual and climate data

机译:建筑,视觉和气候数据的融合

获取原文

摘要

The relationship between buildings and image, both static and moving, has occupied a significant role throughout architectural history. Current innovations in materials research, digital technology and lighting are strengthening this connection as a vital idea permeating image arts and built spaces. The objective of this paper is to expand the intersection of architecture and image within the context of climate change. As the recent kinetic art and media facades as well as the author's own prototypes highlight, this emergent practice promotes climate conscious interactive systems and sustainable illumination that are integrated into building surfaces. While responding to changes in environmental variables and illuminating the building with renewable energy sources, this alternative approach also emphasizes developing a social and environmental narrative for the use of media facades, challenging the current application for mainly commercial advertising. The author's own climate responsive prototypes reveal the methodological experimentation with weather elements of snow, rain, light and wind. The three-tiered display of collected climactic information lead to integration of various technologies to make the elements visible, harvest and generate energy from their kinetic movement. This paper will present conclusions drawn from the previous experimentation, as well as a new direction to eliminate additional light pollution while integrating architectural and climate visualization with the sustainable media facade technology in built environments.
机译:在整个建筑历史中,建筑物和图像之间的关系(静态的和移动的)都起着重要的作用。材料研究,数字技术和照明方面的最新创新正在加强这种联系,这是贯穿影像艺术和建筑空间的重要思想。本文的目的是在气候变化的背景下扩大建筑与图像的交集。正如最近的动力学艺术和媒体外观以及作者自己的原型所强调的那样,这种新兴实践促进了将气候意识的交互系统和可持续照明集成到建筑表面中。在对环境变量的变化做出响应并用可再生能源为建筑物照明的同时,这种替代方法还强调了开发媒体立面使用的社会和环境叙事,对目前主要用于商业广告的应用提出了挑战。作者自己的气候响应原型揭示了使用雪,雨,光和风的天气要素进行的方法学实验。收集的高潮信息的三层显示导致各种技术的整合,以使元素可见,从其运动中获取能量并产生能量。本文将介绍从先前的实验得出的结论,以及在将建筑和气候可视化与​​建筑环境中的可持续媒体外观技术相集成的同时消除额外的光污染的新方向。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号