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首页> 外文期刊>Automation in construction >Mapping actual thermal properties to building elements in gbXML-based BIM for reliable building energy performance modeling
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Mapping actual thermal properties to building elements in gbXML-based BIM for reliable building energy performance modeling

机译:在基于gbXML的BIM中将实际热特性映射到建筑元素,以进行可靠的建筑能效建模

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摘要

The ability to import building geometric and construction thermal data from building information models (BIM) has significant potential to reduce the time and uncertainty in building energy modeling process. In today's BIM-based energy modeling practice, thermal properties are mainly derived from generic building construction types in BIM. However, for energy modeling of existing buildings, such assumptions are often inaccurate as they do not account for diminishing thermal resistances of building materials instigated by their deteriorations. To improve the reliability of BIM-based energy modeling, we present a system, together with new methods for automated association and updating of actual thermal property measurements with BIM elements in gbXML schema. By leveraging collections of digital and thermal images and based on environmental measurements, our system first produces a 3D thermal model for the building under inspection and then derives the actual thermal resistances of the building assemblies at the level of 3D vertexes. By associating these measurements with their corresponding elements in gbXML, thermal properties of the BIM elements are automatically updated. Our experiments in real-world residential and instructional buildings show how actual thermal properties can be automatically associated with BIM elements and updated in gbXML The proposed method shortens the gap between architectural information in BIM and the actual data needed for energy performance simulation, and enables reliable BIM-based energy analysis for retro-commissioning, continuous commissioning, and retrofit.
机译:从建筑信息模型(BIM)导入建筑几何和建筑热数据的能力具有极大的潜力,可以减少建筑能源建模过程中的时间和不确定性。在当今基于BIM的能源建模实践中,热属性主要来自BIM中的常规建筑构造类型。但是,对于现有建筑物的能量模型,这样的假设通常是不准确的,因为它们并不能说明由其劣化引起的建筑材料热阻的降低。为了提高基于BIM的能源建模的可靠性,我们提出了一个系统以及新的方法,用于自动关联和更新gbXML架构中BIM元素的实际热属性测量值。通过利用数字和热图像的集合并基于环境测量,我们的系统首先为被检查的建筑物生成3D热模型,然后在3D顶点水平上得出建筑物组件的实际热阻。通过将这些测量值与其在gbXML中的相应元素相关联,可以自动更新BIM元素的热特性。我们在现实世界的住宅和教学建筑中进行的实验表明,如何将实际的热属性与BIM元素自动关联并在gbXML中进行更新。所提出的方法缩短了BIM中的建筑信息与能源性能模拟所需的实际数据之间的差距,并实现了可靠的可靠性。基于BIM的能源分析,可用于重新调试,连续调试和翻新。

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