Detection of hidden defects of thermal protection of buildings and determination of some thermal properties of structural building materials by Non-destructive Thermal Imaging method

D. Karpov, M. V. Pavlov, A. G. Gudkov
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Abstract

Objective. The purpose of the work is the practical approbation of a nondestructive thermal imaging method to identify hidden (invisible) defects and qualitative analysis of the thermal protection of a complex of construction objects in the city of Vologda, as well as the study of some physical (thermophysical) indicators (coefficients of thermal conductivity, thermal resistance (thermal insulation) and heat transfer) of structural building material in the form of silicate brick.Method. The fundamental laws of the theory of heat transfer, thermal nondestructive testing, infrared and technical diagnostics, the current domestic regulatory and technical and regulatory documentation, field experiments on real objects and laboratory samples.Result. The results of the practical determination of hidden defects in the thermal shells of the complex of civil and industrial buildings functioning in the urban environment, thermophysical properties (coefficients of thermal conductivity, thermal resistance (thermal insulation), heat transfer) of modern building materials by methods of thermal non-destructive testing are presented. The locations of identified invisible defects of thermal protection of the surveyed construction objects are determined and recommendations for their elimination are proposed. The obtained values of thermophysical characteristics for the studied structural building material are consistent with the data of current regulatory documents.Conclusion. The features of the nondestructive method of infrared thermography in determining the hidden defects of the heatshielding shells of operated buildings of various functional purposes and the complex of thermophysical parameters of modern structural building materials are shown. The demand for thermal imaging during energy and technical surveys of construction objects, their individual structural elements, life support engineering systems, as well as studies on the refinement, quantification and prediction of various thermal properties of building materials and products has been experimentally confirmed.
基于非破坏性热成像技术的建筑热防护隐患检测及部分结构建筑材料热性能测定
目标。本工作的目的是实际认可一种无损热成像方法来识别隐藏(不可见)缺陷和定性分析在沃洛格达市的建筑综合体的热防护,以及研究一些物理(热物理)指标(导热系数,热阻(保温)和传热)的硅酸盐砖形式的结构建筑材料的方法。热传导理论的基本规律,热无损检测,红外和技术诊断,国内现行法规和技术法规文件,实物和实验室样品的现场实验结果。本文介绍了在城市环境中使用的民用和工业建筑综合体的热壳中隐藏缺陷的实际测定结果,以及现代建筑材料的热物理性能(导热系数、热阻(隔热)、传热)的热无损检测方法。确定了已识别的施工对象热防护不可见缺陷的位置,并提出了消除这些缺陷的建议。所得的研究结构建筑材料的热物理特性值与现行规范性文件的数据一致。介绍了红外热像无损检测方法在各种功能用途的运行建筑的隔热壳隐藏缺陷和现代结构建筑材料热物性参数的复杂性方面的特点。在建筑物体的能量和技术调查、其单个结构元素、生命支持工程系统以及建筑材料和产品的各种热性能的细化、量化和预测研究中,对热成像的需求已经得到实验证实。
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