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Improving the feasibility of building deconstruction and adaptability

机译:提高建筑解构和适应性的可行性

摘要

Design for Adaptability and Deconstruction (DfAD) is an emerging trend in the construction industry that focuses on the end-of-life aspect of buildings. It is based on the concept that the life of a building or building component ends because it is unable to adapt to change. With proper implementation, DfAD is an important tool to achieve sustainable design for buildings, as it ideally may form a closed materials loop for construction materials by optimizing the amount of materials salvaged at the end of a building's useful life through deconstruction. This thesis focuses on ways to improve the feasibility of deconstruction and material savings, primarily through DfAD. By implementing DfAD principles and guidelines, designing with reusable materials, and planning and implementing a project effectively, the current practical and economic barriers to deconstruction may be mitigated. This thesis presents the essential considerations for deconstruction and materials salvage and presents potential policies to improve its viability. Three case studies present the applications of DfAD approaches and the lessons learned from common challenges associated with deconstruction.
机译:适应性和解构性设计(DfAD)是建筑业中的一种新兴趋势,其重点是建筑物的使用寿命。它基于以下概念:建筑物或建筑物组件的寿命因无法适应变化而终止。通过适当的实施,DfAD是实现建筑物可持续设计的重要工具,因为它理想地可以通过优化通过解构而在建筑物使用寿命结束时回收的材料数量来形成建筑材料的封闭材料循环。本文主要研究主要通过DfAD提高解构和节省材料可行性的方法。通过实施DfAD原则和指南,使用可重复使用的材料进行设计以及有效地计划和实施项目,可以消除当前破坏性建筑的实际和经济障碍。本文提出了破坏性建筑和材料抢救的基本考虑,并提出了改善其生存能力的潜在政策。三个案例研究介绍了DfAD方法的应用以及与解构相关的常见挑战的经验教训。

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