BIM、IR热成像和HFS的组合应用于现有建筑的能量建模,并最大限度地减少通过建筑围护结构的热增益:阿联酋建筑的案例研究

IF 2.1 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Advances in Building Energy Research Pub Date : 2019-12-18 DOI:10.1080/17512549.2019.1703812
Haidar Alhaidary, A. Al-Tamimi, Hashim Al-Wakil
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引用次数: 9

摘要

气候变化推动了建筑节能,迫使工程师开发新的节能建筑,并对旧建筑进行有效改造。本研究提出了一种实用的方法,使用建筑信息模型(BIM) -红外热成像(IRT) -热流传感器(HFS)框架创建现代办公大楼的能源模型,确保相对容易的高精确度。能源模型是在暖通空调系统输入很少的情况下创建的,模拟了现实生活中缺乏信息的场景,随后通过从建筑物自身的电表和与之相连的地区冷水机组中提取的消耗数据进行验证。然后使用校准的模型来研究通过建筑围护结构的各种被动式热增益减少措施,如建筑朝向、遮阳、绝缘水平和窗户性能的影响。通过收益递减规律强调了建筑围护结构节能的局限性,并指出SHGC是节能中最有效的单一热物理窗口性质。从数字上看,更换窗户节省了1.6%的能源,而总共节省了2.77%的能源。该研究侧重于阿拉伯联合酋长国的气候,并进一步评估了一些BIM互操作性挑战。
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The combined use of BIM, IR thermography and HFS for energy modelling of existing buildings and minimising heat gain through the building envelope: a case-study from a UAE building
ABSTRACT Climate change has driven energy conservation into buildings, pressuring engineers into developing newer energy efficient buildings and effectively retrofitting the older ones. This research presents a practical method of creating an energy model of a modern office building using a Building Information Modelling (BIM) – Infra-Red Thermography (IRT) – Heat Flux sensors (HFS) framework that ensures a high level of accuracy with relative ease. The energy model is created with little input of the HVAC system, simulating real-life lack-of-information scenarios, and subsequently verified with consumption data extracted from the building’s own energy metre and the district’s chiller plant it’s connected to. The calibrated model is then used to investigate various passive heat-gain reduction measures through the building envelope such as the effect of the building’s orientation, shading, insulation levels, and window performance. Limitations of conserving energy through the building envelope were highlighted through the law of diminishing returns and the SHGC was pointed out to be the single most effective thermophysical window property in conserving energy. Numerically, the replacement of the windows saved 1.6% compared to the total 2.77% of energy saved. The study focuses on the climate of the United Arab Emirates and furthermore evaluates some BIM interoperability challenges.
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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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