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블로우업 모델의 민감도 분석 및 AAR을 고려한 복합 열팽창계수 제안Evaluation of Blow-up Failure and a Sensitivity Analysis of an Existing Model

Authors
김태수황현식노승현류성우조윤호
Issue Date
2020
Publisher
한국도로학회
Keywords
blow-up; buckling; sensitivity analysis; concrete pavement
Citation
한국도로학회논문집, v.22, no.4, pp 19 - 32
Pages
14
Journal Title
한국도로학회논문집
Volume
22
Number
4
Start Page
19
End Page
32
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/51412
ISSN
1738-7159
2287-3678
Abstract
PURPOSES : The objective of this study is to understand blow-up distress and causes in concrete pavement. METHODS : Feasible causes of blow-up and existing models were reviewed based on the literature. Three analytical models were adopted to perform a sensitivity analysis. Input parameters reflected the typical concrete pavement of national expressways. Evaluation of blow-up models was based on the amount of temperature increase and zero stress temperature of the concrete pavement. RESULTS : A review of the literature indicated that the five major causes of blow-up were: increase in temperature and solar radiation, alkaliaggregate reaction (AAR), friction characteristics between the concrete slab and subbase, joint closure (incompressible), and joint freezing. The sensitivity analysis revealed that the coefficient of thermal expansion had the greatest influence on the blow-up safety temperature. CONCLUSIONS : From existing blow-up model results, it could be concluded that the construction of concrete pavement during the winter season was not effective at preventing blow-up. In addition, an equivalent coefficient of thermal expansion that considers slab expansion due to AAR was proposed as a model input parameter for concrete pavement sections damaged by AAR.
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Cho, Yoon-Ho
공과대학 (건설환경플랜트공학)
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