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Assessment of concrete macrocrack depth using infrared thermography

Authors
Bae, JaehoonJang, ArumPark, Min JaeLee, JonghoonJu, Young K.
Issue Date
25-5월-2022
Publisher
TECHNO-PRESS
Keywords
AI; Concrete macrocrack; machine learning; infrared thermography; UAV
Citation
STEEL AND COMPOSITE STRUCTURES, v.43, no.4, pp.501 - 509
Indexed
SCIE
SCOPUS
Journal Title
STEEL AND COMPOSITE STRUCTURES
Volume
43
Number
4
Start Page
501
End Page
509
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/143045
DOI
10.12989/scs.2022.43.4.501
ISSN
1229-9367
Abstract
Cracks are common defects in concrete structures. Thus far, crack inspection has been manually performed using the contact inspection method. This manpower-dependent method inevitably increases the cost and work hours. Various non contact studies have been conducted to overcome such difficulties. However, previous studies have focused on developing a methodology for non-contact inspection or local quantitative detection of crack width or length on concrete surfaces. However, crack depth can affect the safety of concrete structures. In particular, although macrocrack depth is structurally fatal, it is difficult to find it with the existing method. Therefore, an experimental investigation based on non-contact infrared thermography and multivariate machine learning was performed in this study to estimate the hidden macrocrack depth. To consider practical applications for inspection, an experiment was conducted that considered the simulated piloting of an unmanned aerial vehicle equipped with infrared thermography equipment. The crack depths (10???60 mm) were comparatively evaluated using linear regression, gradient boosting, and random forest (AI regression methods).
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공과대학 (건축사회환경공학부)
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