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BIM- and IoT-based virtual reality tool for real-time thermal comfort assessment in building enclosures

机译:基于BIM和IOT的虚拟现实工具,用于建筑外壳中的实时热舒适评估

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摘要

Despite their vast potential for delivering rich and intuitive visualizations of live building monitoring data, digital twins have been rarely studied in the context of thermal comfort. To narrow this gap, this study investigates the synergistic benefits of Building Information Modeling (BIM), the Internet of Things (IoT) and Virtual Reality (VR) for developing an immersive VR application for real-time monitoring of thermal comfort conditions. A system architecture was proposed for live calculation of the PMV/PPD indices based on ASHRAE standard 55 and enrichment of BIM-based representations of building spaces in VR environments with live IoTenabled monitoring data. Openly available software tools were used to make the geometric and sensory data accessible within a VR application and calculate the PMV/PPD indices. Using a semi-automated method, raw thermal images streaming from a cost-effective non-intrusive sensor were processed on an affordable edge computing device to enable near real-time calculation of Mean Radiant Temperature (MRT). A prototype of the system was implemented and used in a series of experiments where a dynamic thermal environment was created in a mechanically conditioned space. The results support the consistency between the system's output and the actual thermal sensations observed under various conditions.
机译:尽管其巨大的潜力来提供丰富和直观的现场建筑监测数据的可视化,但在热舒适性的背景下很少研究数字双胞胎。为了缩小这种差距,本研究调查了建筑信息建模(BIM),事物互联网和虚拟现实(VR)的协同效益,用于开发沉浸式VR应用,以进行热舒适条件的实时监测。提出了一种系统架构,用于基于ASHRAE标准55的PMV / PPD指数的实时计算,并在具有Live IoTenabled监视数据的VR环境中的建筑空间的基于BIM的表示。公开可用的软件工具用于使VR应用程序中可访问的几何和感官数据,并计算PMV / PPD指标。使用半自动方法,在经济实惠的边缘计算装置上处理从经济高效的非侵入式传感器流的原始热图像,以实现平均辐射温度(MRT)的近实时计算。实施系统的原型,并用于一系列实验,其中在机械条件空间中产生动态热环境。结果支持系统的输出与各种条件下观察到的实际热敏之间的一致性。

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