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Building envelope modeling calibration using aerial thermography

机译:建立空中热成像建立信封建模校准

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摘要

Built environments contribute significantly to mitigating climate change. However, existing buildings, which form most urban infrastructures, do not typically meet contemporary stringent energy efficiency standards. They are naturally continuously deteriorating, making them a continuous negative contributor to their surrounding environments, which keeps getting worse. Therefore, there is a need to develop performance diagnosis frameworks and approaches for accurate Building Energy Model (BEM) simulations to develop impactful retrofitting design solutions that could make existing buildings perform closer to current efficiency measures. This paper reports on research that focuses explicitly on calibrating envelopes of existing BEMs using drones equipped with thermography sensors. The study specifically focuses on the automation of on-the-fly envelope U-value estimations and verification of calibrated envelope BEMs. The paper examines a renovated campus building in Boston, MA., representing material degradation, thermal bridging, and insulation failures using thermal imagine. A BEM is then calibrated, and post-renovation metered and modeled wintertime heating energy are compared. Goodness of fit measures showcase BEM performance improvement from 21.8%to 0.9%, which demonstrates the utility of the proposed framework. Further research is recommended to expand the focus on anomalies in the envelope and increase the scope from the building scale to the neighborhood scale.
机译:建筑环境有助于减轻气候变化。然而,现有建筑物,这些建筑物,即大多数城市基础设施,通常不符合当代严格的能效标准。它们自然地持续恶化,使其成为周围环境的持续消极贡献者,这不断变得更糟。因此,需要开发性能诊断框架和方法,以便准确构建能源模型(BEM)模拟,以开发可能使现有建筑物更接近当前效率措施的影响改装设计解决方案。本文有关使用配备热传感器的无人机校准现有BEMS的信封的研究报告。该研究专门侧重于校准信封BEM的现场封装U值估计的自动化和验证。本文审查了马萨诸塞州波士顿的经过翻新的校园大楼。,代表了使用热膜的材料劣化,热桥接和绝缘故障。然后校准BEM,比较改造后的计量和建模的冬季加热能量。拟合措施的良好展示BEM性能改善从21.8%到0.9%,这证明了所提出的框架的效用。建议进一步研究扩大信封中的异常的重点,并将建筑规模的范围增加到邻域比例。

著录项

  • 来源
    《Energy and Buildings 》 |2021年第2期| 110648.1-110648.12| 共12页
  • 作者单位

    Building Technology Program School of Architecture + Planning Massachusetts Institute of Technology 77 Massachusetts Avenue 5-418 Cambridge MA 02139 USA;

    Elementa Engineering 54 W 40th St New York NY 10018 USA;

    High Performance Building Lab School of Architecture College of Design Georgia Institute of Technology 245 4th St NW Atlanta GA 30332 USA;

    MIT Environmental Solutions Initiative Building Technology Program School of Architecture + Planning Massachusetts Institute of Technology 292 Main Street (E38) Cambridge MA 02142 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Building envelope; Building simulation; Built environment; Energy modelling; Infrared imaging; Unmanned Aerial Vehicles (UAVs);

    机译:建筑信封;建筑模拟;建筑环境;能源建模;红外成像;无人驾驶飞行器(无人机);

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