木材元素的再利用过程,以优化后续生命周期的剩余性能

IF 0.4 N/A ARCHITECTURE
Stefania De Gregorio
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引用次数: 0

摘要

木质元素的再利用是一种可持续的操作,它充分利用了材料的灰色能量。目前,选择性拆除的结构木材主要用于非结构功能,由于缺乏标准和具体规定,其性能降低。事实上,用于定义木材结构特征的视觉分级并没有评估从组件的先前生命周期中获得的信息。在本文中,从瓦伦西亚社区的选择性拆除中抽取矩形木材元素的样本,将视觉强度分级立法指定的结构值与实验分析确定的实际阻力值进行比较,以验证其合规性。验证结果表明,目测分级法不能优化木材构件的再利用性能。因此,本文的研究目的是寻找一种结构木制构件的再利用工艺,以提高其剩余性能。与目前的视觉分级相比,确定的过程引入了额外的步骤,其中包括考虑根据以前生命周期中产生的最严重缺陷和信息评估的有效重用方式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reuse process for timber elements to optimise residual performances in subsequent life cycles
The reuse of wooden elements is a sustainable operation, which makes the best use of the material’s grey energy. Currently, structural timber from selective demolition is mainly used for non-structural functions, with a lowering of its performance, due to the lack of standard and specific regulation. In fact, the visual grading used to define the structural characteristics of wood does not evaluate information deriving from the previous life cycles of the component. In the paper, taking samples of rectangular timber elements from selective demolitions made in the Valencian Community, the structural values that are assigned by visual strength grading legislation were compared with the real resistance values identified by experimental analysis to verify their compliance. The verification showed that the visual grading is not able to optimize the performance of the timber element in its reuse. Therefore, the purpose of the research, illustrated in the paper, is to find a reuse process for structural wooden elements to enhance residual performances. The identified process introduces additional steps compared in the current visual grading, that include a consideration of the effective modalities of reuse evaluated according to the worst defects and information arising from previous life cycles.
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来源期刊
CiteScore
1.10
自引率
12.50%
发文量
9
审稿时长
20 weeks
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