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INNOVATIVE APPROACH TO SUSTAINABLE MATERIAL SOURCING AND ITS IMPACT ON BUILDING PERFORMANCE

机译:可持续材料采购的创新方法及其对建筑业绩的影响

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In this paper, a novel use of building materials and their impact on the building performance and its climatic adaptability is explored, based on a complex case study of a unique low energy sustainable building project. In particular, an innovative use of sycamore and its suitability as a structural and constructional timber has been investigated and reported, given that the current codes of practice deem that is not appropriate for structural applications due to its durability. A research method of in-situ longitudinal study has been adopted, concentrating on the monitoring and assessment of its structural performance and conditions in which it might deteriorate. On the component level, the research reports on the methods and standards of sycamore grading and classification, service classes, resistance to decay, impact of the moisture movement and results of its laboratory and in situ testing. On the system level, the climatic adaptability of the building as a whole has been analysed via dynamic performance simulation and compared to the in situ measurements. This was important in order to develop a holistic building performance monitoring strategy, but in particular, to understand the impact of building microclimate on the sycamore frame and hempcrete components of the external load-bearing wall. So far research has concluded that sycamore can be used as structural and constructional material in building design, but due attention has to be paid to construction detailing and provision of a breathable, low humidity environment with an effective resistance to decay and insect attack. This includes measures that ensure a low equilibrium moisture content conditions, effective ventilation provision and appropriate service class uses. It is important to state however, given the single site locality of sycamore sourcing, that results can only be interpreted in the context of the given case study, i.e. they cannot be extrapolated to broader geographical extents.
机译:本文基于独特的低能源可持续建筑项目的复杂案例研究,探讨了建筑材料的新颖利用及其对建筑绩效的影响及其对建筑绩效的影响及其气候适应性。特别是,鉴于目前的实践守则认为由于其耐用性而不适用于结构应用的目前的实践代码,已经研究并报告了梧桐的创新使用及其适用性。采用了一种原位纵向研究的研究方法,专注于监测和评估其结构性能和条件可能会恶化。在组成级,研究报告了梧桐分级和分类,服务课程,耐腐蚀性,腐烂,水分运动的影响以及其实验室和原位测试的影响。在系统水平上,通过动态性能模拟分析了整个建筑物的气候适应性,并与原位测量相比。这是为了制定整体建筑绩效监测策略,但特别是了解建筑微气候对外部承载墙的梧桐框架和胚胎部件的影响。到目前为止,研究已经得出结论,梧桐可以用作建筑设计中的结构和结构材料,但必须支付施工细节和提供透气,低湿度环境,具有有效的抗衰减和昆虫攻击。这包括确保低平衡含水量条件,有效通风提供和适当的服务级别使用的措施。然而,鉴于Sycamore采购的单个网站局部地区,该结果只能在给定案例研究的背景下解释,即它们不能推断到更广泛的地域范围内。

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