混凝土办公楼热质量和隔热对能源性能的综合影响

IF 2.1 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Advances in Building Energy Research Pub Date : 2020-07-02 DOI:10.1080/17512549.2018.1547220
Ryan Sharston, S. Murray
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引用次数: 9

摘要

摘要考虑到混凝土在结构和覆层应用中的使用,以及建筑围护结构中隔热材料的能源规范要求,进行了一项调查研究,以确定混凝土的热质量特性和建筑围护结构隔热材料之间的相互作用如何影响建筑能源性能。这项研究通过energy Plus模拟研究了热质量和隔热材料的组合如何影响美国八个气候区的建筑能源使用。测量参数包括混凝土壁厚和隔热层相对于热质量墙的相对位置。建筑能耗是根据年度供暖和制冷能源需求以及总能源使用量来衡量的。本文给出了关于热质量和隔热对办公室使用的潜在好处的结论。结果表明,在寒冷的气候条件下,在混凝土外壳中添加隔热材料,除了单独由热物质提供的好处之外,还提供了显著的其他好处,而在炎热的地区,这些好处更少。这些结果还表明,其他有影响的设计变量,如占用类型,也可以证明不同气候区的热质量和隔热一体化具有更广泛的影响。
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The combined effects of thermal mass and insulation on energy performance in concrete office buildings
ABSTRACT Considering the use of concrete in structural and cladding applications, and energy code requirements for inclusion of thermal insulation in building envelopes, an investigative study was carried out to determine how the interaction between thermal mass properties of concrete and thermal insulation in the building envelope affects the building energy performance. This study examines how the combination of thermal mass and insulation influences building energy use in eight U.S. climate zones through Energy Plus simulation. The measuring parameters include the concrete wall thickness and relative location of thermal insulation with respect to the thermal mass wall. Building energy consumption is measured in terms of annual heating and cooling energy demands, as well as total energy use. The paper presents conclusions about the potential benefits of thermal mass and insulation for office occupancy. The results have shown that in cold climates the addition of thermal insulation to a concrete enclosure provides significant further benefits beyond those provided by thermal mass alone, whereas in hot locations those benefits are fewer. These results also indicate that other influential design variables such as occupancy type could also demonstrate broader implications of the integration of thermal mass and insulation in different climate zones.
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来源期刊
Advances in Building Energy Research
Advances in Building Energy Research CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
4.80
自引率
5.00%
发文量
11
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