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Thermography Approaches for Building Defect Detection

机译:用于建筑物缺陷检测的热成像方法

摘要

Thermography is one technology, which can be used to detect thermally significant defects in buildings and is traditionally performed using a walk-through methodology. Yet because of limitations such as transient climatic changes, there is a key performance gap between image capture and interpretation. There are however new methodologies currently available, which actively address some of these limitations. By better understanding alternative methodologies, the performance gap can be reduced. This thesis contrasts three thermography methodologies (Walk-through, time-lapse and pass-by) to learn how they deal with limitations and address specific building defects and thermal performance issues. For each approach, practical methodologies were developed and used on laboratory experiments (hot plate) and real dwelling case studies. For the real building studies, 133 dwellings located in Devon and Cornwall (South West England) were studied; this sample represents a broad spectrum of construction types and building ages.Experiments testing these three methodologies found individual strengths and weaknesses for each approach. Whilst traditional thermography can detect multiple defects, characterisation is not always easy to achieve due to the effects of transient changes, which are largely ignored under this methodology. Time-lapse thermography allows the observation of transient changes from which more accurate assessment of defect behaviour can be gained. This is due to improved differentiation between environmental conditions (such as cloud cover and clear sky reflections), actual material thermal behaviour and construction defects. However time-lapse thermography is slow, complex and normally only observes one view. Walk-past thermography is a much faster methodology, inspecting up to 50 dwellings per survey session. Yet this methodology misses many potential defects due to low spatial resolutions, single (external only) elevation inspection and ignoring transient climate and material changes.The implications of these results for building surveying practice clearly indicate that for an improved defect characterisation of difficult to interpret defects such as moisture ingress, thermographers should make use of time-lapse thermography. A review of methodology practicalities illustrates how the need for improved characterisation can be balanced against time and resources when deciding upon the most suitable approach.In order to help building managers and thermographers to decide on the most suitable thermography approach, two strategies have been developed. The first combines different thermography methodologies into a phased inspection program, where spatial and temporal resolution increase with each subsequent thermography inspection. The second provides a decision-making framework to help select the most appropriate thermography methodology for a given scenario or defect.
机译:热成像是一种技术,可用于检测建筑物中的热显着缺陷,并且传统上使用走查法进行。但是由于诸如短暂的气候变化之类的限制,在图像捕获和解释之间存在关键的性能差距。但是,目前有新的方法论可以有效解决这些局限性。通过更好地理解替代方法,可以缩小性能差距。本文对比了三种热成像方法学(穿越,延时和通过),以了解它们如何应对局限性并解决特定的建筑缺陷和热性能问题。对于每种方法,都开发了实用的方法,并用于实验室实验(热板)和实际居住案例研究。为了进行实际的建筑研究,研究了位于德文郡和康沃尔郡(英格兰西南部)的133套住所。该样本代表了广泛的建筑类型和建筑年龄。测试这三种方法的实验发现了每种方法的优缺点。尽管传统的热成像技术可以检测出多个缺陷,但由于瞬态变化的影响,表征并不总是很容易实现,而这种方法在很大程度上忽略了这种变化。延时热像仪可以观察瞬态变化,从而可以更准确地评估缺陷行为。这是由于改善了环境条件(例如云层和晴朗的天空反射),实际材料的热行为和施工缺陷之间的区别。但是,延时热成像技术缓慢,复杂并且通常只能观察到一个视图。过去的热​​成像技术是一种更快的方法,每个调查会话最多可检查50栋住宅。然而,由于空间分辨率低,仅进行一次(仅外部)高程检查并忽略了短暂的气候和物质变化,该方法错过了许多潜在的缺陷。这些结果对建筑测量实践的影响清楚地表明,对于难以解释的缺陷,改进的缺陷表征如水分进入,热成像人员应利用延时热成像技术。对方法学实用性的回顾表明,在决定最合适的方法时,如何在时间和资源上平衡改进表征的需求。为了帮助建筑管理人员和热成像仪师确定最合适的热成像方法,已开发了两种策略。第一种方法将不同的热成像方法学组合成一个阶段性的检查程序,在此程序中,空间和时间分辨率随随后的每次热成像检查而增加。第二个提供了一个决策框架,可以帮助针对给定的方案或缺陷选择最合适的热成像方法。

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    Fox Matthew William;

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  • 年度 2016
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