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[Re]Scaling Urbanism: Fostering Low-Tech, Digitally Fabricated, and Transient Structures Through Innovation in Local Renewable Material

机译:[Re]扩展城市主义:通过本地可再生材料的创新来培育低技术,数字化和瞬态结构

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摘要

This dissertation presumes that innovation in design and sustainable building practices can alleviate environmental and socio-economic issues within cities. Exploration of small-scale design and intelligent systems reveals a connection between local resources and new technologies that advance yesterday's way of building. The study focuses on the challenges of a vulnerable island community, addressing Hawaii's major housing crisis and the effects of impending climate change. Isolation and a global market has encouraged dependency on imports and deterred the state from achieving sustainability.;At the intersection of localized materials and global technologies, this project argues a simple and practical solution. Through a series of case study investigations and applied research on innovative design strategies, it establishes the framework for an alternative building model of less permanent and more process-based structures. Rescaling Urbanism reveals the potential for a system that can challenge the existing methods of Hawaii's building industry. The project embraces the use of local material with new technologies in digital fabrication to create a streamlined approach for building sustainably in Hawaii.;To compliment new statewide green initiatives, we must learn to embrace the use of vernacular materials, renewable energies, and closed-loop systems. Hawaii's surplus of invasive tree species bears the potential for local renewable building materials. This study examines the use of lumber from the highly invasive albizia tree as a building material through application of wood engineering. By reconceptualizing the tree from invasive to useful, a problem becomes a viable solution to Hawaii's housing deficit and outsourced building industry.;[graphic omitted].;This project integrates the design and construction process by proposing a structure that is composed almost entirely of albizia and digitally fabricated from computer numerically control, or CNC routing. Engineered wood is a resource-light material that supports rapid on-site construction. CNC routing is being increasingly utilized with engineered wood to streamline the entire building process. Merging these two principles enables fabrication of sustainably sourced, high-precision, and easy to assemble building components. The outcome reveals a process that can radically lessen the threshold of scale, cost, and construction time.
机译:本文假设设计创新和可持续建筑实践可以减轻城市内部的环境和社会经济问题。对小型设计和智能系统的探索揭示了本地资源与推动昨天建筑方式发展的新技术之间的联系。这项研究着眼于一个脆弱的岛屿社区所面临的挑战,以应对夏威夷的重大住房危机以及即将到来的气候变化的影响。隔离和全球市场鼓励了对进口的依赖,并阻止了国家实现可持续性。在本地化材料与全球技术的交汇处,该项目提出了一种简单实用的解决方案。通过一系列案例研究和对创新设计策略的应用研究,它建立了永久性较低,基于过程的结构的替代建筑模型的框架。重新定标的城市主义揭示了一种可以挑战夏威夷建筑业现有方法的系统的潜力。该项目包括在数字制造中使用本地材料和新技术,以创建简化的方法来实现夏威夷的可持续建筑。循环系统。夏威夷大量的入侵树种为当地可再生建筑材料提供了潜力。这项研究研究了通过木材工程的应用,将高度侵入性的苦参树的木材用作建筑材料。通过将树的概念从侵入性转变为实用,问题成为解决夏威夷房屋短缺和建筑业外包的可行解决方案。并通过计算机数控或CNC路线进行数字制作。人造木材是一种资源轻的材料,可支持快速的现场施工。 CNC路线越来越多地与工程木材一起使用,以简化整个建筑过程。结合这两个原理,可以制造可持续来源,高精度且易于组装的建筑部件。结果表明,可以从根本上减少规模,成本和施工时间的门槛的过程。

著录项

  • 作者

    Valenti, Joseph J.;

  • 作者单位

    University of Hawai'i at Manoa.;

  • 授予单位 University of Hawai'i at Manoa.;
  • 学科 Architecture.;Climate change.;Architectural engineering.;Sustainability.
  • 学位 D.Arch.
  • 年度 2016
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:46:29

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