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A comprehensive experimental approach for the validation of quantitative infrared thermography in the evaluation of building thermal transmittance

机译:定量红外热成像验证建筑传热性能的综合实验方法

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摘要

Quantitative thermography is now mostly accepted as a reliable method to measure energy performance of existing buildings, in particular the thermal transmittance U-values of opaque elements. Some researches have been conducted in this field, each presenting a different procedure verified by the application on simple case studies. Anyway, a comprehensive approach, based on a parametric analysis of walls with different typologies and exposure, but same boundary conditions, is still missing. This study proposes a systematic approach to the problem, based on a three years research activity carried on an experimental building where timber (light) and brick (heavy) structures were tested simultaneously with Infrared Thermovision Technique (ITT), also equipped with heat flow meter (HFM) sensors and a nearby meteo station. Standard deviation of U-values measured with ITT is given as well as absolute deviation against values calculated following international standards and measured with HFM method. Parameters having high significance for the achievement of good results compared to the expected U-values are assessed through a sensitivity analysis. Influence of weather conditions during the survey are also considered and a repeatable procedure is finally set up. The findings presented in the study show that the method gives good results for heavy constructions, while further studies are still needed for light and super-insulated walls.
机译:如今,定量热成像技术已成为公认的测量现有建筑物能源性能的可靠方法,尤其是不透明元素的热透射率U值。在该领域中已经进行了一些研究,每个研究都提出了通过简单案例研究中的应用程序验证的不同过程。无论如何,仍然缺少基于对具有不同类型和暴露,但边界条件相同的墙进行参数分析的综合方法。这项研究提出了一个针对该问题的系统方法,该研究是基于三年的研究活动进行的,该研究活动是对一栋实验建筑进行的,该建筑使用红外热像仪技术(ITT)同时配备了热流量计,对木材(轻型)和砖头(重型)结构进行了测试。 (HFM)传感器和附近的气象站。给出了使用ITT测量的U值的标准偏差,以及相对于根据国际标准计算并使用HFM方法测量的值的绝对偏差。与敏感性U值相比,对于达到良好结果具有重要意义的参数通过敏感性分析进行评估。还考虑了调查期间天气条件的影响,并最终建立了可重复的程序。研究中提出的发现表明,该方法对重型建筑具有良好的效果,而对于轻质和超绝热墙,仍需要进一步的研究。

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