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Impact of structural design solutions on the energy and thermal performance of an Australian office building

机译:结构设计解决方案对澳大利亚办公楼的能量和热性能的影响

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Concrete is a heavyweight construction material whose high thermal mass could increase the thermal storage capacity of a building envelope and in turn affect indoor thermal comfort. Selecting an appropriate method for concrete construction and form could also affect the total energy performance and thermal comfort of a building, a fact that is often overlooked by structural engineers. This study presents the results of energy simulations of the potential impact that concrete construction forms, in particular two slab types, and structural materials have on the energy consumption of archetypal commercial office buildings in five major Australia cities (Sydney, Melbourne, Canberra, Brisbane and Darwin). This study has three stages: 1) a structural analysis of two slab types (Flat and Waffle slab); 2) the selection of two types of structural concrete (conventional Normal weight concrete and novel Ultra-lightweight concrete); 3) a comparative analysis to quantify the magnitude of the change in predicted annual energy consumption due to changes in the form of construction and the type of structural concrete. The energy simulation results showed that the thermal energy performance of the building was influenced by structural materials and slab types. It is shown that the thermal capacity of the concrete construction forms can be utilized to shift thermal loads, reduce peak demand and reduce operational energy consumption. The selection of an appropriate concrete type was more important in terms of energy performance in the coldest (Melbourne and Canberra) and hottest (Darwin) climate zones of this study. (C) 2017 Elsevier Ltd. All rights reserved.
机译:混凝土是一种重量级的建筑材料,其高热质量会增加建筑物围护结构的蓄热能力,进而影响室内的热舒适性。为混凝土结构和形式选择合适的方法也可能会影响建筑物的总能量性能和热舒适性,这一事实通常被结构工程师忽略。这项研究提出了能量模拟的结果,这些能量模拟的结果是混凝土结构形式(尤其是两种平板类型)和结构材料对澳大利亚五个主要城市(悉尼,墨尔本,堪培拉,布里斯班和澳大利亚)原型商业办公楼能耗的潜在影响。达尔文)。这项研究分为三个阶段:1)对两种类型的平板(平板和华夫格平板)进行结构分析; 2)选择两种类型的结构混凝土(常规的普通重量混凝土和新型超轻质混凝土); 3)进行比较分析,以量化由于建筑形式和结构混凝土类型的变化而导致的预计年度能耗的变化幅度。能量模拟结果表明,建筑物的热能性能受结构材料和楼板类型的影响。结果表明,混凝土建筑模板的热容量可用于转移热负荷,减少峰值需求并减少运营能耗。就本研究中最冷的(墨尔本和堪培拉)和最热的(达尔文)气候区的能源性能而言,选择合适的混凝土类型更为重要。 (C)2017 Elsevier Ltd.保留所有权利。

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