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首页> 外文期刊>Revue de Metallurgie: Cahiers d'Informations Techniques >Thermal performance of lightweight steel-framed construction systems
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Thermal performance of lightweight steel-framed construction systems

机译:轻型钢框架建筑系统的热性能

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摘要

Lightweight steel-framed (LSF) structural elements in building construction provide a way of increasing building sustainability. These structural elements present great potential for recycling and reuse, allowing the conservation of natural resources and the environment. When compared with other materials, these construction components also provide other advantages: reduced weight with simultaneous high mechanical strength; easier prefabrication, allowing modular elements and higher quality control; shorter periods for assembling the building on-site; no dimensional variations caused by moisture; and low cost. The high thermal conductivity of steel could be a drawback, leading to thermal bridges if not well designed and executed. In the case of LSF components (e.g. walls and slabs) it is necessary to take special care with the elements' design optimisation, with it being essential to use continuous thermal insulation. The building envelope thermal performance is crucial to provide good thermal behaviour and energy efficiency, allowing a reduction of operational energy. In this paper, the LSF construction system is analysed in order to show its main advantages and drawbacks. The assessment of embodied and operational energy is essential to perform a life cycle analysis. The reduction of both energies' consumption is crucial to increase the sustainability label. Special focus will be given to the mitigation strategies of operational energy in LSF construction.
机译:建筑结构中的轻钢结构(LSF)结构元素提供了一种提高建筑可持续性的方法。这些结构元素具有巨大的回收和再利用潜力,可以保护自然资源和环境。与其他材料相比,这些建筑部件还具有其他优点:重量减轻,同时具有较高的机械强度;预制更容易,允许模块化元素和更高的质量控制;在现场组装建筑物的时间较短;没有水分引起的尺寸变化;且价格低廉。钢的高导热性可能是一个缺点,如果设计和执行不当,则会导致热桥。对于LSF组件(例如墙壁和楼板),必须特别注意优化元素的设计,必须使用连续的绝热材料。建筑围护结构的热性能对于提供良好的热性能和能效,从而降低运行能量至关重要。本文分析了LSF构建系统,以显示其主要优点和缺点。评估内含和运行能量对于执行生命周期分析至关重要。减少两种能源的消耗对于增加可持续性标签至关重要。 LSF建设中的运营能源缓解策略将得到特别关注。

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